Carboxylesterase polypeptides for kinetic resolution.

Engineered carboxylesterases with targeted amino acid substitutions improve industrial process efficiency and reduce toxicity by enhancing chiral conversion capabilities, addressing the limitations of wild-type enzymes in pharmaceutical production.

JP7747337B2Active Publication Date: 2025-10-01CODEXIS INC
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Patent Information

Application Number
JP2022561488
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2020-04-10
Filing Date
2021-04-06
Publication Date
2025-10-01
Estimated Expiration
2041-04-06

AI Technical Summary

Technical Problem

Naturally occurring wild-type carboxylesterases are not optimized for efficient chiral conversion under industrial process conditions, leading to inefficient and potentially toxic production of pharmaceutical compounds and intermediates.

Method used

Engineered carboxylesterases with specific amino acid substitutions, achieving at least 80% to 99% sequence identity to SEQ ID NO:2, are developed to enhance their non-native properties for improved hydrolysis reactions.

Benefits of technology

The engineered carboxylesterases facilitate efficient and less toxic production of pharmaceutical compounds and intermediates by enabling kinetic resolution of racemic substrates, reducing the need for toxic reagents and waste products.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides engineered carboxylesterase enzymes having improved properties compared to naturally occurring wild-type carboxylesterase enzymes, as well as polynucleotides encoding the engineered carboxylesterase enzymes, host cells capable of expressing the engineered carboxylesterase enzymes, and methods of using the engineered carboxylesterase enzymes in hydrolysis reactions. The present invention also provides engineered carboxylesterases comprising a polypeptide sequence selected from the even-numbered sequences of SEQ ID NOS: 4-536.
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Description

[Technical Field]

[0001] This application claims priority to U.S. Provisional Patent Application No. 63 / 008,061, filed April 10, 2020, which is incorporated herein by reference in its entirety for all purposes. Reference to a sequence listing, table, or computer program

[0002] The Sequence Listing, which was submitted contemporaneously herewith under 37 CFR § 1.821 in computer readable form (CRF) via EFS-Web under the file name CX2-206WO1_ST25.txt, is incorporated herein by reference. The electronic copy of the Sequence Listing has a file size of 800 kilobytes and was created on April 5, 2021. FIELD OF THE INVENTION

[0003] The present invention provides engineered carboxylesterases (EC 3.1.1) having improved non-native properties compared to naturally occurring wild-type (WT) carboxylesterase enzymes, as well as polynucleotides encoding the engineered carboxylesterase enzymes, host cells capable of expressing the engineered carboxylesterase enzymes, and methods of applying the engineered carboxylesterase enzymes to hydrolysis reactions. [Background technology]

[0004] Background of the Invention Carboxylesterases and lipases are capable of a variety of reactions that may be useful for the efficient production of pharmaceutical compounds and intermediates under industrial process conditions. Enzyme function and substrate range are often adaptive, as it has been observed that enzyme active sites can catalyze several different chemical reactions via one or more amino acid mutations (see Rauwerdink and Kazluaskas, ACS Cat., 5: 6153-6176

[2015] ).

[0005] For example, lipases have found industrial-scale application for the hydrolysis of fatty acid esters and have also been used for the amidation of esters (Seem Faber, Biotransformations in Organic Chemistry, In Special Techniques, Springer-Verlag, New York, NY,

[2011] ; and Kalkote, et al., Asian J. Biochem., 2: 279-283

[2007] ). Like lipases, carboxylesterases can act as hydrolases for desired transformations, including the conversion of racemic ester substrates to the corresponding chiral acids.

[0006] Industrial process conditions often utilize reagents and produce waste products that can be highly toxic. Removal of waste products from reaction mixtures can also be a laborious and expensive process. On the other hand, enzymatic conversions can remove several steps from chemical synthesis processes, obviating the need for toxic reagents and generating correspondingly fewer waste products. Enzymes can also enable kinetic resolution of racemic substrates to produce chiral products with enantiomeric excess. However, naturally occurring wild-type enzymes may not be optimized for efficient chiral conversion under industrial process conditions. Therefore, carboxylesterases with improved properties are desired to enable efficient and less toxic production of pharmaceutical compounds and intermediates under industrial process conditions. [Prior art documents] [Non-patent literature]

[0006] [Non-Patent Document 1] Rauwerdink and Kazluaskas, ACS Cat., 5: 6153-6176

[2015] [Non-patent document 2] Seem Faber, Biotransformations in Organic Chemistry, In Special Techniques, Springer-Verlag, New York, NY,

[2011] [Non-patent document 2] Kalkote, et al., Asian J. Biochem., 2: 279-283

[2007] Summary of the Invention [Means for solving the problem]

[0007] Summary of the Invention The present invention provides engineered carboxylesterases (EC 3.1.1) having improved non-native properties compared to naturally occurring wild-type (WT) carboxylesterase enzymes, as well as polynucleotides encoding the engineered carboxylesterase enzymes, host cells capable of expressing the engineered carboxylesterase enzymes, and methods of applying the engineered carboxylesterase enzymes to hydrolysis reactions.

[0008] The present invention provides engineered carboxylesterases or functional fragments thereof comprising a polypeptide sequence having at least 80%, 85%, 86%, 87%, 88%, 89%, 90%, 91%, 92%, 93%, 94%, 95%, 96%, 97%, 98%, or 99% or more sequence identity to SEQ ID NO:2, and comprising at least one substitution or set of substitutions within those polypeptide sequences, wherein the amino acid positions of the polypeptide sequences are numbered with reference to SEQ ID NO:2. In some embodiments, at least one substitution or set of substitutions in a polypeptide sequence is selected from the group consisting of: 3 / 4 / 6 / 9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229, 3 / 6 / 9 / 10 / 70 / 99, 3 / 8 / 9 / 10 / 11 / 13 / 70 / 82 / 107 / 229, 3 / 8 / 9 / 10 / 11 / 13 / 70 / 107, 3 / 8 / 9 / 10 / 11 / 70, 3 / 8 / 9 / 10 / 11 / 70 / 229, 3 / 8 / 9 / 10 / 13 / 70 / 82 / 107, 3 / 8 / 9 / 10 / 13 / 70 / 82 / 229, 3 / 8 / 9 / 10 / 70 / 82, 3 / 8 / 9 / 10 / 70 / 82 / 229, 3 / 8 / 9 / 10 / 70 / 229, 3 / 9 / 10 / 11 / 13 / 82, 3 / 9 / 10 / 11 / 70 / 82 / 107, 3 / 9 / 10 / 11 / 70 / 229, 3 / 9 / 10 / 70 / 82, 3 / 9 / 11, 3 / 9 / 11 / 70 / 82 / 180, 4 / 6 / 8 / 9 / 10 / 11 / 38 / 70 / 82 / 180 / 186 / 200 / 214 / 229, 4 / 6 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 6 / 9 / 10 / 11 / 38 / 70 / 82 / 180 / 186 / 200 / 214, 4 / 6 / 9 / 10 / 70 / 82 / 229, 4 / 8 / 9 / 10 / 11 / 13 / 70 / 82 / 107 / 229, 4 / 8 / 9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 8 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 186 / 200 / 214 / 229, 4 / 8 / 9 / 10 / 11 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 8 / 9 / 10 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229,4 / 9 / 10 / 11 / 36 / 65 / 70 / 82 / 180 / 186 / 200 / 214、4 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214、4 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214 / 229、4 / 9 / 10 / 11 / 70 / 82 / 180 / 200 / 214、6 / 8 / 9 / 10 / 38 / 70 / 82 / 180 / 200 / 214、6 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214 / 229、6 / 9 / 10 / 38 / 70 / 82 / 180 / 186 / 200 / 214 / 229、6 / 9 / 10 / 70 / 82 / 180 / 186 / 200 / 214 / 229、8 / 9 / 10、8 / 9 / 10 / 11 / 13 / 70、8 / 9 / 10 / 11 / 13 / 70 / 82、8 / 9 / 10 / 11 / 13 / 70 / 82 / 107 / 229、8 / 9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214、8 / 9 / 10 / 11 / 38 / 70 / 82 / 180 / 200 / 214 / 229、8 / 9 / 10 / 11 / 43 / 70 / 82 / 180 / 200 / 214、8 / 9 / 10 / 11 / 70、8 / 9 / 10 / 11 / 70 / 82 / 107 / 229、8 / 9 / 10 / 11 / 70 / 229、8 / 9 / 10 / 70、8 / 9 / 10 / 70 / 82 / 229、9 / 10、9 / 10 / 11 / 12 / 49 / 51 / 70 / 73 / 82 / 180 / 200 / 225、9 / 10 / 11 / 12 / 49 / 70 / 73 / 82 / 180、9 / 10 / 11 / 12 / 51 / 54 / 70 / 73 / 82 / 108 / 148 / 180 / 225、9 / 10 / 11 / 12 / 51 / 54 / 70 / 73 / 82 / 110 / 180、9 / 10 / 11 / 12 / 51 / 54 / 70 / 73 / 82 / 148 / 180 / 225、9 / 10 / 11 / 12 / 51 / 70 / 73 / 82 / 148 / 180、9 / 10 / 11 / 12 / 51 / 70 / 73 / 82 / 148 / 180 / 200 / 225、9 / 10 / 11 / 12 / 51 / 70 / 73 / 110 / 148 / 180、9 / 10 / 11 / 17 / 49 / 70 / 82 / 180 / 200、9 / 10 / 11 / 17 / 49 / 70 / 82 / 180 / 219、9 / 10 / 11 / 17 / 51 / 54 / 70 / 82 / 148 / 180 / 200、9 / 10 / 11 / 17 / 51 / 54 / 70 / 82 / 180、9 / 10 / 11 / 17 / 70 / 73 / 82 / 87 / 180 / 219、9 / 10 / 11 / 17 / 70 / 82 / 148 / 180 / 219、9 / 10 / 11 / 35 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 36 / 38 / 65 / 70 / 82 / 180 / 200 / 214 / 229、9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229、9 / 10 / 11 / 36 / 70 / 82 / 180 / 196 / 214、9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214 / 229、9 / 10 / 11 / 38 / 70 / 82 / 180 / 186 / 200 / 214、9 / 10 / 11 / 40 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 49 / 51 / 54 / 70 / 82 / 87 / 108 / 110 / 148 / 180 / 219、9 / 10 / 11 / 49 / 51 / 54 / 70 / 82 / 87 / 108 / 180、9 / 10 / 11 / 49 / 51 / 54 / 70 / 82 / 110 / 148 / 180、9 / 10 / 11 / 49 / 51 / 70 / 82 / 108 / 110 / 148 / 180、9 / 10 / 11 / 49 / 54 / 70 / 82 / 87 / 148 / 180、9 / 10 / 11 / 49 / 70 / 82 / 87 / 108 / 110 / 180 / 200、9 / 10 / 11 / 49 / 70 / 82 / 87 / 180、9 / 10 / 11 / 49 / 70 / 82 / 110 / 148 / 180 / 225、9 / 10 / 11 / 51 / 54 / 70 / 73 / 82 / 108 / 110 / 180、9 / 10 / 11 / 51 / 54 / 70 / 73 / 82 / 108 / 180 / 200 / 225、9 / 10 / 11 / 51 / 54 / 70 / 73 / 82 / 110 / 148 / 180、9 / 10 / 11 / 51 / 54 / 70 / 82 / 148 / 180、9 / 10 / 11 / 51 / 70 / 82 / 110 / 180 / 192 / 219、9 / 10 / 11 / 54 / 70 / 82 / 87 / 108 / 180、9 / 10 / 11 / 54 / 70 / 82 / 87 / 180 / 192、9 / 10 / 11 / 54 / 70 / 82 / 148 / 180 / 200、9 / 10 / 11 / 54 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 70、9 / 10 / 11 / 70 / 71 / 82 / 180 / 200 / 214、9 / 10 / 11 / 70 / 73 / 82 / 87 / 110 / 180、9 / 10 / 11 / 70 / 73 / 82 / 108 / 148 / 180、9 / 10 / 11 / 70 / 73 / 82 / 148 / 180、9 / 10 / 11 / 70 / 73 / 82 / 148 / 180 / 192 / 200、9 / 10 / 11 / 70 / 73 / 82 / 180 / 200 / 214、9 / 10 / 11 / 70 / 82、9 / 10 / 11 / 70 / 82 / 87 / 110 / 180 / 219、9 / 10 / 11 / 70 / 82 / 100 / 180 / 200 / 214、9 / 10 / 11 / 70 / 82 / 107、9 / 10 / 11 / 70 / 82 / 108 / 180 / 200 / 214、9 / 10 / 11 / 70 / 82 / 148 / 180、9 / 10 / 11 / 70 / 82 / 148 / 180 / 200 / 214、9 / 10 / 11 / 70 / 82 / 180、9 / 10 / 11 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 70 / 87 / 180 / 200 / 214、9 / 10 / 11 / 70 / 107、9 / 10 / 12 / 49 / 51 / 54 / 70 / 82 / 108 / 148 / 180 / 225、9 / 10 / 12 / 51 / 54 / 70 / 180 / 225、9 / 10 / 12 / 51 / 70 / 73 / 82 / 148 / 180 / 200、9 / 10 / 12 / 70 / 82 / 148 / 180 / 225、9 / 10 / 12 / 70 / 82 / 180 / 200 / 214、9 / 10 / 13 / 70、9 / 10 / 13 / 70 / 82、9 / 10 / 13 / 70 / 229、9 / 10 / 13 / 207、9 / 10 / 17、9 / 10 / 17 / 49 / 51 / 54 / 70 / 73 / 82 / 108 / 110 / 148 / 180 / 192 / 200 / 219、9 / 10 / 17 / 49 / 51 / 54 / 70 / 82 / 87 / 180 / 219、9 / 10 / 17 / 49 / 70 / 82 / 148 / 180、9 / 10 / 17 / 51 / 54 / 70 / 82 / 87 / 108 / 110 / 180 / 200、9 / 10 / 17 / 51 / 70 / 73 / 82 / 87 / 108 / 110 / 148 / 180 / 219、9 / 10 / 17 / 54 / 70 / 73 / 82 / 87 / 108 / 110 / 148 / 180 / 200、9 / 10 / 17 / 54 / 70 / 73 / 82 / 108 / 110 / 148 / 180、9 / 10 / 17 / 54 / 70 / 82 / 87 / 108 / 110 / 180、9 / 10 / 17 / 70 / 73 / 82 / 87 / 180 / 219、9 / 10 / 17 / 70 / 73 / 82 / 108 / 110 / 148 / 180 / 200、9 / 10 / 17 / 70 / 82 / 87 / 148 / 180、9 / 10 / 17 / 70 / 82 / 87 / 148 / 180 / 192 / 219、9 / 10 / 17 / 70 / 82 / 108 / 148 / 180、9 / 10 / 17 / 70 / 82 / 110 / 148 / 180、9 / 10 / 17 / 70 / 82 / 110 / 148 / 180 / 200、9 / 10 / 17 / 70 / 82 / 180 / 200 / 214、9 / 10 / 17 / 70 / 104 / 160 / 165、9 / 10 / 17 / 70 / 139 / 160 / 165、9 / 10 / 26、9 / 10 / 29 / 70、9 / 10 / 36 / 70 / 82 / 180 / 200 / 214、9 / 10 / 37、9 / 10 / 38 / 70 / 82 / 180 / 200 / 214、9 / 10 / 39、9 / 10 / 39 / 186、9 / 10 / 41、9 / 10 / 45 / 70、9 / 10 / 49 / 51 / 54 / 70 / 73 / 82 / 108 / 110 / 148 / 180 / 192、9 / 10 / 49 / 51 / 54 / 70 / 73 / 82 / 148 / 180、9 / 10 / 49 / 51 / 54 / 70 / 82 / 108 / 110 / 148 / 180 / 225、9 / 10 / 49 / 51 / 54 / 70 / 82 / 110 / 148 / 180、9 / 10 / 49 / 51 / 54 / 70 / 82 / 110 / 180、9 / 10 / 49 / 51 / 54 / 70 / 82 / 148 / 180、9 / 10 / 49 / 51 / 54 / 70 / 82 / 148 / 180 / 192、9 / 10 / 49 / 51 / 70 / 82 / 108 / 148 / 180 / 219、9 / 10 / 49 / 51 / 70 / 82 / 110 / 148 / 180、9 / 10 / 49 / 51 / 70 / 82 / 180 / 225、9 / 10 / 49 / 54 / 70 / 73 / 82 / 87 / 110 / 180、9 / 10 / 49 / 54 / 70 / 82 / 87 / 110 / 180、9 / 10 / 49 / 54 / 70 / 82 / 108 / 148 / 180 / 225、9 / 10 / 49 / 70 / 73 / 82 / 87 / 108 / 148 / 180、9 / 10 / 49 / 70 / 73 / 82 / 108 / 110 / 148 / 180 / 225、9 / 10 / 49 / 70 / 82 / 87 / 148 / 180、9 / 10 / 49 / 70 / 82 / 110 / 180 / 219、9 / 10 / 51 / 54 / 70 / 73 / 82 / 108 / 180、9 / 10 / 51 / 54 / 70 / 73 / 82 / 110 / 148 / 180、9 / 10 / 51 / 54 / 70 / 73 / 82 / 110 / 180、9 / 10 / 51 / 54 / 70 / 73 / 82 / 180 / 219、9 / 10 / 51 / 54 / 70 / 73 / 82 / 180 / 225、9 / 10 / 51 / 54 / 70 / 82 / 87 / 180、9 / 10 / 51 / 54 / 70 / 82 / 148 / 180、9 / 10 / 51 / 54 / 70 / 82 / 180、9 / 10 / 51 / 54 / 70 / 82 / 180 / 200、9 / 10 / 51 / 70 / 82 / 108 / 180、9 / 10 / 51 / 70 / 82 / 110 / 180 / 200、9 / 10 / 51 / 70 / 82 / 180 / 219、9 / 10 / 54 / 70 / 73 / 82 / 108 / 148 / 180 / 192、9 / 10 / 54 / 70 / 82 / 87 / 108 / 180 / 200、9 / 10 / 54 / 70 / 82 / 180、9 / 10 / 62、9 / 10 / 70、9 / 10 / 70 / 73 / 82 / 87 / 108 / 110 / 180、9 / 10 / 70、 / 73 / 82 / 87 / 180 / 192 / 219, 9 / 10 / 70 / 73 / 82 / 87 / 180 / 200, 9 / 10 / 70 / 73 / 82 / 108 / 110 / 148 / 180, 9 / 10 / 70 / 73 / 82 / 108 / 110 / 180 / 200 / 219, 9 / 10 / 70 / 73 / 8 2 / 108 / 148 / 180, 9 / 10 / 70 / 73 / 82 / 108 / 148 / 180 / 192, 9 / 10 / 70 / 73 / 82 / 108 / 148 / 180 / 192 / 219, 9 / 10 / 70 / 73 / 82 / 108 / 180, 9 / 10 / 70 / 73 / 82 / 148 / 180, 9 / 10 / 70 / 73 / 82 / 148 / 180 / 200, 9 / 10 / 70 / 73 / 82 / 180 / 192, 9 / 10 / 70 / 73 / 82 / 180 / 192 / 219, 9 / 10 / 70 / 82, 9 / 10 / 70 / 82 / 87 / 108 / 110 / 148 / 180 / 192 / 219, 9 / 10 / 70 / 82 / 87 / 108 / 110 / 180, 9 / 10 / 70 / 82 / 87 / 108 / 110 / 180 / 192, 9 / 10 / 70 / 82 / 87 / 180, 9 / 10 / 70 / 82 / 107, 9 / 10 / 70 / 82 / 107 / 229, 9 / 10 / 70 / 82 / 108 / 110 / 180 / 219, 9 / 10 / 70 / 82 / 108 / 180, 9 / 10 / 70 / 82 / 110 / 148 / 180, 9 / 10 / 70 / 82 / 110 / 180 / 219, 9 / 10 / 70 / 82 / 148 / 180, 9 / 10 / 70 / 82 / 148 / 180 / 200, 9 / 10 / 70 / 82 / 148 / 180 / 200 / 219, 9 / 10 / 70 / 82 / 180, 9 / 10 / 70 / 82 / 180 / 192 / 219, 9 / 10 / 70 / 82 / 180 / 200 / 214, 9 / 10 / 70 / 82 / 229, 9 / 10 / 70 / 92, 9 / 10 / 70 / 99, 9 / 10 / 7 and wherein the amino acid positions of the polypeptide sequence are comprised at a position selected from: 0 / 99 / 229, 9 / 10 / 70 / 107 / 229, 9 / 10 / 70 / 156, 9 / 10 / 70 / 165, 9 / 10 / 70 / 229, 9 / 10 / 88, 9 / 10 / 90, 9 / 10 / 96, 9 / 10 / 107, 9 / 10 / 110, 9 / 10 / 111, 9 / 10 / 112, 9 / 10 / 133, 9 / 10 / 178, 9 / 10 / 185, 9 / 10 / 186, 9 / 10 / 196, 9 / 10 / 211, 9 / 10 / 226, 11 / 24, 11 / 24 / 219, and 11 / 36 / 206 / 208.In some additional embodiments, at least one substitution or set of substitutions in the polypeptide sequence is selected from the group consisting of 3R / 4R / 6P / 9C / 10I / 11I / 36N / 38Y / 70W / 82Q / 180L / 200A / 214W / 229M, 3R / 6P / 9C / 10I / 70W / 99R, 3R / 8G / 9C / 10I / 11T / 13E / 70W / 82Q / 107F / 229M, 3R / 8G / 9C / 10I / 11T / 13E / 70W / 107F, 3R / 8G / 9C / 10I / 11T / 70W, 3R / 8G / 9C / 10I / 11T / 70W / 229M, 3R / 8G / 9C / 10I / 13E / 70W / 82Q / 107F, 3R / 8G / 9C / 10I / 13E / 70W / 82Q / 229M, 3R / 8G / 9C / 10I / 70W / 82Q, 3R / 8G / 9C / 10I / 70W / 82Q / 229M, 3R / 8G / 9C / 10I / 70W / 229M, 3R / 9C / 10I / 11I / 13E / 82Q, 3R / 9C / 10I / 11T / 70W / 82Q / 107F, 3R / 9C / 10I / 11T / 70W / 229M, 3R / 9C / 10I / 70W / 82Q, 3R / 9C / 11I, 3R / 9C / 11I / 70W / 82Q / 180L, 4R / 6P / 8G / 9C / 10I / 11T / 38Y / 70W / 82Q / 180L / 186F / 200A / 214W / 229M, 4R / 6P / 9C / 10I / 11I / 36N / 70W / 82Q / 180L / 200A / 214W / 229M, 4R / 6P / 9C / 10I / 11I / 38Y / 70W / 82Q / 180L / 186F / 200A / 214W, 4R / 6P / 9C / 10I / 70W / 82Q / 229M, 4R / 8G / 9C / 10I / 11T / 13E / 70W / 82Q / 107F / 229M, 4R / 8G / 9C / 10 I / 11T / 36N / 38Y / 70W / 82Q / 180L / 200A / 214W / 229M, 4R / 8G / 9C / 10I / 11T / 3 6N / 70W / 82Q / 180L / 186F / 200A / 214W / 229M, 4R / 8G / 9C / 10I / 11T / 70W / 82Q / 180L / 200A / 214W / 229M, 4R / 8G / 9C / 10I / 36N / 38Y / 70W / 82Q / 180L / 200A / 214W / 229M, 4R / 9C / 10I / 11I / 36N / 38Y / 70W / 82Q / 180L / 200A / 214W / 229M,<h2 style=";text-align:left;direction:ltr">4R / 9C / 10I / 11T / 36N / 65I / 70W / 82Q / 180L / 186F / 200A / 214W、4R / 9C / 10I / 11T / 36N / 70W / 82Q / 180L / 200A / 214W、4R / 9C / 10I / 11T / 36N / 70W / 82Q / 180 L / 200A / 214W / 229M、4R / 9C / 10I / 11T / 70W / 82Q / 180L / 200A / 214W、6P / 8G / 9C / 10I / 38Y / 70W / 82Q / 180L / 200A / 214W、6P / 9C / 10I / 11T / 36N / 70W / 82Q / 180L / 200A / 214W / 229M、6P / 9C / 10I / 38Y / 70W / 82Q / 180L / 186F / 200A / 214 W / 229M、6P / 9C / 10I / 70W / 82Q / 180L / 186F / 200A / 214W / 229M、8A / 9C / 10I、 8G / 9C / 10I / 11T / 13E / 70W、8G / 9C / 10I / 11T / 13E / 70W / 82Q、8G / 9C / 10I / 11 T / 13E / 70W / 82Q / 107F / 229M、8G / 9C / 10I / 11T / 36N / 38Y / 70W / 82Q / 180L / 20 0A / 214W、8G / 9C / 10I / 11T / 38Y / 70W / 82Q / 180L / 200A / 214W / 229M、8G / 9C / 10I / 11T / 43I / 70W / 82Q / 180L / 200A / 214W、8G / 9C / 10I / 11T / 70W、8G / 9C / 1 0I / 11T / 70W / 82Q / 107F / 229M、8G / 9C / 10I / 11T / 70W / 229M、8G / 9C / 10I / 70W、8G / 9C / 10I / 70W / 82Q / 229M、9A / 10I / 70W / 82Q / 180L / 200A / 214W、9C / 10I 、9C / 10I / 11E / 12P / 51D / 70W / 73M / 110M / 148L / 180L、9C / 10I / 11E / 17C / 70 W / 82Q / 148L / 180L / 219H、9C / 10I / 11E / 17H / 51D / 54S / 70W / 82Q / 180L、9C / 10I / 11E / 17H / 70W / 73M / 82Q / 87P / 180L / 219H、9C / 10I / 11E / 17V / 49S / 70W / 82Q / 180L / 200H、9C / 10I / 11E / 49S / 51D / 54S / 70W / 82A / 110M / 148L / 180L、9C / 10I / 11E / 49S / 51D / 54S / 70W / 82Q / 87P / 108H / 110M / 148L / 180L / 219H、9C / 10I / 11E / 49S / 51D / 54S / 70W / 82Q / 87P / 108H / 180L、9C / 10I / 11E / 49S / 51D / 70W / 82Q / 108H / 110M / 148L / 180L、9C / 10I / 11E / 49S / 54S / 70W / 82Q / 87P / 148L / 180L、9C / 10I / 11E / 49S / 70W / 82Q / 87P / 108H / 110M / 180L / 200H、9C / 10I / 11E / 49S / 70W / 82Q / 87P / 180L、9C / 10I / 11E / 49S / 70W / 82Q / 110M / 148L / 180L / 225S、9C / 10I / 11E / 51D / 54S / 70W / 82Q / 148L / 180L、9C / 10I / 11E / 54S / 70W / 82Q / 87P / 180L / 192M、9C / 10I / 11E / 54S / 70W / 82Q / 148L / 180L / 200H、9C / 10I / 11E / 70W / 73L / 82Q / 108H / 148L / 180L、9C / 10I / 11E / 70W / 73L / 82Q / 148L / 180L、9C / 10I / 11E / 70W / 73M / 82Q / 87P / 110M / 180L、9C / 10I / 11E / 70W / 73M / 82Q / 148L / 180L、9C / 10I / 11E / 70W / 73M / 82Q / 148L / 180L / 192M / 200H、9C / 10I / 11E / 70W / 82Q / 87P / 110M / 180L / 219H、9C / 10I / 11E / 70W / 82Q / 148L / 180L、9C / 10I / 11E / 70W / 82Q / 180L、9C / 10I / 11E / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11G / 17C / 49S / 70W / 82Q / 180L / 219H、9C / 10I / 11G / 17V / 51D / 54S / 70W / 82Q / 148L / 180L / 200H、9C / 10I / 11G / 51D / 54S / 70W / 73L / 82Q / 108H / 110M / 180L、9C / 10I / 11G / 51D / 70W / 82Q / 110M / 180L / 192M / 219H、9C / 10I / 11G / 54S / 70W / 82Q / 87P / 108H / 180L、9C / 10I / 11G / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 35G / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 35Q / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 35S / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 36I / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 36N / 38Y / 65I / 70W / 82Q / 180L / 200A / 214W / 229M、9C / 10I / 11I / 36N / 38Y / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 36N / 38Y / 70W / 82Q / 180L / 200A / 214W / 229M、9C / 10I / 11I / 36N / 70W / 82Q / 180L / 196E / 214W、9C / 10I / 11I / 36S / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 40V / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 54D / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 54P / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 54S / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 70V / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 70W、9C / 10I / 11I / 70W / 71H / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 70W / 71R / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 70W / 73L / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 70W / 73M / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 70W / 73R / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 70W / 82A / 180L / 200A / 214W、9C / 10I / 11I / 70W / 82Q / 100S / 180L / 200A / 214W、9C / 10I / 11I / 70W / 82Q / 108R / 180L / 200A / 214W、9C / 10I / 11I / 70W / 82Q / 148L / 180L / 200A / 214W、9C / 10I / 11I / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 70W / 87V / 180L / 200A / 214W、9C / 10I / 11T / 36N / 38Y / 70W / 82Q / 180L / 200A / 214W / 229M、9C / 10I / 11T / 36N / 70W / 82Q / 180L / 200A / 214W / 229M、9C / 10I / 11T / 38Y / 70W / 82Q / 180L / 186F / 200A / 214W、9C / 10I / 11T / 70W、9C / 10I / 11T / 70W / 82Q、9C / 10I / 11T / 70W / 82Q / 107F、9C / 10I / 11T / 70W / 107F、9C / 10I / 12P / 49S / 51D / 54S / 70W、 / 82Q / 108H / 148L / 180L / 225S、9C / 10I / 12P / 51D / 70W / 73L / 82Q / 148L / 180L / 200H、9C / 10I / 12P / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 12V / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 13E / 70W、9C / 10I / 13E / 70W / 82Q、9C / 10I / 13E / 70W / 229M、9C / 10I / 13E / 207Q、9C / 10I / 17A / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 17C / 51D / 54S / 70W / 82Q / 87P / 108H / 110M / 180L / 200H、9C / 10I / 17C / 70W / 73L / 82Q / 108H / 110M / 148L / 180L / 200H、9C / 10I / 17C / 70W / 82Q / 87P / 148L / 180L / 192M / 219H、9C / 10I / 17C / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 17H / 49S / 51D / 54S / 70W / 73M / 82Q / 108H / 110M / 148L / 180L / 192M / 200H / 219H、9C / 10I / 17H / 54S / 70W / 82Q / 87P / 108H / 110M / 180L、9C / 10I / 17H / 70W / 82Q / 110M / 148L / 180L、9C / 10I / 17H / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 17Q / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 17S / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 17V / 49S / 51D / 54S / 70W / 82Q / 87P / 180L / 219H、9C / 10I / 17V / 49S / 70W / 82Q / 148L / 180L、9C / 10I / 17V / 51D / 70W / 73M / 82Q / 87P / 108H / 110M / 148L / 180L / 219H、9C / 10I / 17V / 54S / 70W / 73L / 82Q / 87P / 108H / 110M / 148L / 180L / 200H、9C / 10I / 17V / 54S / 70W / 73L / 82Q / 108H / 110M / 148L / 180L、9C / 10I / 17V / 70W / 73M / 82Q / 87P / 180L / 219H、9C / 10I / 17V / 70W / 82Q / 87P / 148L / 180L、9C / 10I / 17V / 70W / 82Q / 108H / 148L / 180L、9C / 10I / 17V / 70W / 82Q / 110M / 148L / 180L / 200H、9C / 10I / 17V / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 17V / 70W / 104M / 160E / 165Q、9C / 10I / 17V / 70W / 139H / 160G / 165Q、9C / 10I / 17W、9C / 10I / 26G、9C / 10I / 26T、9C / 10I / 29G / 70W、9C / 10I / 36N / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 37P、9C / 10I / 38Y / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 39A / 186T、9C / 10I / 39W、9C / 10I / 41F、9C / 10I / 41G、9C / 10I / 41S、9C / 10I / 45R / 70W、9C / 10I / 45T / 70W、9C / 10I / 49S / 51D / 54S / 70W / 73M / 82Q / 148L / 180L、9C / 10I / 49S / 51D / 54S / 70W / 82G / 108H / 110M / 148L / 180L / 225S、9C / 10I / 49S / 51D / 54S / 70W / 82Q / 110M / 148L / 180L、9C / 10I / 49S / 51D / 54S / 70W / 82Q / 110M / 180L、9C / 10I / 49S / 51D / 54S / 70W / 82Q / 148L / 180L、9C / 10I / 49S / 51D / 54S / 70W / 82Q / 148L / 180L / 192M、9C / 10I / 49S / 51D / 70W / 82Q / 108H / 148L / 180L / 219H、9C / 10I / 49S / 51D / 70W / 82Q / 110M / 148L / 180L、9C / 10I / 49S / 51D / 70W / 82Q / 180L / 225S、9C / 10I / 49S / 54S / 70W / 73L / 82Q / 87P / 110M / 180L、9C / 10I / 49S / 54S / 70W / 82Q / 87P / 110M / 180L、9C / 10I / 49S / 54S / 70W / 82Q / 108H / 148L / 180L / 225S、9C / 10I / 49S / 70W / 73L / 82G / 108H / 110M / 148L / 180L / 225S、9C / 10I / 49S / 70W / 73L / 82Q / 87P / 108H / 148L / 180L、9C / 10I / 49S / 70W / 82Q / 87P / 148L / 180L、9C / 10I / 49S / 70W / 82Q / 110M / 180L / 219H、9C / 10I / 51D / 54S / 70W / 73L / 82Q / 108H / 180L、9C / 10I / 51D / 54S / 70W / 73L / 82Q / 110M / 148L / 180L、9C / 10I / 51D / 54S / 70W / 73M / 82Q / 110M / 180L、9C / 10I / 51D / 54S / 70W / 73M / 82Q / 180L / 219H、9C / 10I / 51D / 54S / 70W / 73M / 82Q / 180L / 225S、9C / 10I / 51D / 54S / 70W / 82Q / 87P / 180L、9C / 10I / 51D / 54S / 70W / 82Q / 148L / 180L、9C / 10I / 51D / 54S / 70W / 82Q / 180L、9C / 10I / 51D / 54S / 70W / 82Q / 180L / 200H、9C / 10I / 51D / 70W / 82Q / 108H / 180L、9C / 10I / 51D / 70W / 82Q / 110M / 180L / 200H、9C / 10I / 51D / 70W / 82Q / 180L / 219H、9C / 10I / 54S / 70W / 73M / 82Q / 108H / 148L / 180L / 192M、9C / 10I / 54S / 70W / 82G / 180L、9C / 10I / 54S / 70W / 82Q / 87P / 108H / 180L / 200H、9C / 10I / 54S / 70W / 82Q / 180L、9C / 10I / 62G、9C / 10I / 70R、9C / 10I / 70W、9C / 10I / 70W / 73L / 82Q / 87P / 108H / 110M / 180L、9C / 10I / 70W / 73L / 82Q / 108H / 148L / 180L、9C / 10I / 70W / 73L / 82Q / 108H / 148L / 180L / 192M、9C / 10I / 70W / 73L / 82Q / 108H / 180L、9C / 10I / 70W / 73L / 82Q / 148L / 180L / 200H、9C / 10I / 70W / 73L / 82Q / 180L / 192M、9C / 10I / 70W / 73L / 82Q / 180L / 192M / 219H、9C / 10I / 70W / 73M / 82Q / 87P / 180L / 192M / 219H、9C / 10I / 70W / 73M / 82Q / 87P / 180L / 200H、9C / 10I / 70W / 73M / 82Q / 108H / 110M / 180L / 200H / 219H、9C / 10I / 70W / 73M / 82Q / 108H / 148L / 180L、9C / 10I / 70W / 73M / 82Q / 108H / 148L / 180L / 192M / 219H、9C / 10I / 70W / 73M / 82Q / 148L / 180L、9C / 10I / 70W / 82Q、9C / 10I / 70W / 82Q / 87P / 108H / 110M / 148L / 180L / 192M / 219H、9C / 10I / 70W / 82Q / 87P / 108H / 110M / 180L、9C / 10I / 70W / 82Q / 87P / 108H / 110M / 180L / 192M、9C / 10I / 70W / 82Q / 87P / 180L、9C / 10I / 70W / 82Q / 107F、9C / 10I / 70W / 82Q / 107F / 229M、9C / 10I / 70W / 82Q / 108H / 110M / 180L / 219H、9C / 10I / 70W / 82Q / 108H / 180L、9C / 10I / 70W / 82Q / 110M / 148L / 180L、9C / 10I / 70W / 82Q / 110M / 180L / 219H、9C / 10I / 70W / 82Q / 148L / 180L、9C / 10I / 70W / 82Q / 148L / 180L / 200H、9C / 10I / 70W / 82Q / 148L / 180L / 200H / 219H、9C / 10I / 70W / 82Q / 180L、9C / 10I / 70W / 82Q / 180L / 192M / 219H、9C / 10I / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 70W / 82Q / 229M、9C / 10I / 70W / 92R、9C / 10I / 70W / 99R、9C / 10I / 70W / 99R / 229M、9C / 10I / 70W / 107F / 229M、9C / 10I / 70W / 156E、9C / 10I / 70W / 165Q、9C / 10I / 70W / 229M、9C / 10I / 88G、9C / 10I / 90S、9C / 10I / 96F、9C / 10I / 107F、9C / 10I / 110V、9C / 10I / 111M、9C / 10I / 112G、9C / 10I / 133E、9C / 10I / 133W、9C / 10I / 178E、9C / 10I / 185E、9C / 10I / 186Q、9C / 10I / 196Q、9C / 10I / 196R、9C / 10I / 196S、9C / 10I / 211E、9C / 10I / 226E、9C / 10I / 226W、9R / 10I / 11E / 12P / 51D / 54S / 70W / 73L / 82Q / 110M / 180L、9R / 10I / 11E / 12P / 51D / 70W / 73M / 82Q / 148L / 180L / 200H / 225S, 9R / 10I / 11E / 12S / 51D / 54S / 70W / 73M / 82Q / 148L / 180L / 225S, 9R / 10I / 54S / 70W / 82Q / 180L, 9R / 10I / 70W / 82Q / 180L / 200A / 214W, 9T / 10I / 11E / 12N / 4 9S / 70W / 73M / 82Q / 180L, 9T / 10I / 11E / 12P / 51D / 70W / 73L / 82Q / 148L / 180L, 9T / 10I / 11G / 12S / 49S / 51D / 7 0W / 73M / 82Q / 180L / 200H / 225S, 9T / 10I / 11G / 51D / 54S / 70W / 73L / 82Q / 108H / 180L / 200H / 225S, 9T / 10I / 11 G / 51D / 54S / 70W / 73L / 82Q / 110M / 148L / 180L, 9T / 10I / 11R / 12P / 51D / 54S / 70W / 73L / 82Q / 108H / 148L / 180 L / 225S, 9T / 10I / 12P / 70W / 82A / 148L / 180L / 225S, 9T / 10I / 12S / 51D / 54S / 70W / 180L / 225S, 9T / 10I / 49S / 5 and 11L / 36S / 206F / 208A, and the amino acid positions of the polypeptide sequence are numbered with reference to SEQ ID NO:2. In some further embodiments, at least one substitution or set of substitutions in the polypeptide sequence is selected from the group consisting of S3R / P4R / T6P / W9C / M10I / M11I / D36N / S38Y / N70W / V82Q / P180L / T200A / V214W / T229M, S3R / T6P / W9C / M10I / N70W / V99R, S3R / R8G / W9C / M10I / M11T / D13E / N70W / V82Q / A107F / T229M, S3R / R8G / W9C / M10I / M11T / D13E / N70W / A107F, S3R / R8G / W9C / M10I / M11T / N70W, S3R / R8G / W9C / M10I / M11T / N70W / T229M,<h2 style=";text-align:left;direction:ltr">S3R / R8G / W9C / M10I / D13E / N70W / V82Q / A107F、S3R / R8G / W9C / M10I / D13E / N70W / V82Q / T229M、S3R / R8G / W9C / M10I / N70W / V82Q、S3R / R8G / W9C / M10I / N70W / V82Q / T229M、S3R / R8G / W9C / M10I / N70W / T229M、S3R / W9C / M10I / M11I / D13E / V82Q、S3R / W9C / M10I / M11T / N70W / V82Q / A107F、S3R、<h2 style=";text-align:left;direction:ltr"> <h2 style=";text-align:left;direction:ltr"> <h2 style=";text-align:left;direction:ltr"> <h2 style=";text-align:left;direction:ltr"> / W9C / M10I / M11T / N70W / T229M、S3R / W9C / M10I / N70W / V82Q、S3R / W9C / M11I、S3R / W9C / M11I / N70W / V82Q / P180L、P4R / T6P / R8G / W9C / M10I / M11T / S38Y / N70 W / V82Q / P180L / A186F / T200A / V214W / T229M、P4R / T6P / W9C / M10I / M11I / D36 N / N70W / V82Q / P180L / T200A / V214W / T229M、P4R / T6P / W9C / M10I / M11I / S38Y / N70W / V82Q / P180L / A186F / T200A / V214W、P4R / T6P / W9C / M10I / N70W / V82Q / T 229M、P4R / R8G / W9C / M10I / M11T / D13E / N70W / V82Q / A107F / T229M、P4R / R8G / W 9C / M10I / M11T / D36N / S38Y / N70W / V82Q / P180L / T200A / V214W / T229M、P4R / R 8G / W9C / M10I / M11T / D36N / N70W / V82Q / P180L / A186F / T200A / V214W / T229M、P 4R / R8G / W9C / M10I / M11T / N70W / V82Q / P180L / T200A / V214W / T229M、P4R / R8G / W9C / M10I / D36N / S38Y / N70W / V82Q / P180L / T200A / V214W / T229M、P4R / W9C / M 10I / M11I / D36N / S38Y / N70W / V82Q / P180L / T200A / V214W / T229M、P4R / W9C / M 10I / M11T / D36N / R65I / N70W / V82Q / P180L / A186F / T200A / V214W、P4R / W9C / M1 0I / M11T / D36N / N70W / V82Q / P180L / T200A / V214W、P4R / W9C / M10I / M11T / D36 N / N70W / V82Q / P180L / T200A / V214W / T229M、P4R / W9C / M10I / M11T / N70W / V82Q / P180L / T200A / V214W、T6P / R8G / W9C / M10I / S38Y / N70W / V82Q / P180L / T200A / V214W、T6P / W9C / M10I / M11T / D36N / N70W / V82Q / P180L / T200A / V214W / T229M、T6P / W9C / M10I / S38Y / N70W / V82Q / P180L / A186F / T200A / V214W / T229M、T6P / W9C / M10I / N70W / V82Q / P180L / A186F / T200A / V214W / T229M、R8A / W9C / M10I、R8G / W9C / M10I / M11T / D13E / N70W、R8G / W9C / M10I / M11T / D13E / N70W / V82Q、R8G / W9C / M10I / M11T / D13E / N70W / V82Q / A107F / T229M、R8G / W9C / M10I / M11T / D36N / S38Y / N70W / V82Q / P180L / T200A / V214W、R8G / W9C / M10I / M11T / S38Y / N70W / V82Q / P180L / T200A / V214W / T229M、R8G / W9C / M10I / M11T / M43I / N70W / V82Q / P180L / T200A / V214W、R8G / W9C / M10I / M11T / N70W、R8G / W9C / M10I / M11T / N70W / V82Q / A107F / T229M、R8G / W9C / M10I / M11T / N70W / T229M、R8G / W9C / M10I / N70W、R8G / W9C / M10I / N70W / V82Q / T229M、W9A / M10I / N70W / V82Q / P180L / T200A / V214W、W9C / M10I、W9C / M10I / M11E / L12P / Q51D / N70W / V73M / Q110M / M148L / P180L、W9C / M10I / M11E / R17C / N70W / V82Q / M148L / P180L / A219H、W9C / M10I / M11E / R17H / Q51D / A54S / N70W / V82Q / P180L、W9C / M10I / M11E / R17H / N70W / V73M / V82Q / A87P / P180L / A219H、W9C / M10I / M11E / R17V / R49S / N70W / V82Q / P180L / T200H、W9C / M10I / M11E / R49S / Q51D / A54S / N70W / V82A / Q110M / M148L / P180L、W9C / M10I / M11E / R49S / Q51D / A54S / N70W / V82Q / A87P / N108H / Q110M / M148L / P180L / A219H、W9C / M10I / M11E / R49S / Q51D / A54S / N70W / V82Q / A87P / N108H / P180L、W9C / M10I / M11E / R49S / Q51D / N70W / V82Q / N108H / Q110M / M148L / P180L、W9C / M10I / M11E / R49S / A54S / N70W / V82Q / A87P / M148L / P180L、W9C / M10I / M11E / R49S / N70W / V82Q / A87P / N108H / Q110M / P180L / T200H、W9C / M10I / M11E / R49S / N70W / V82Q / A87P / P180L、W9C / M10I / M11E / R49S / N70W / V82Q / Q110M / M148L / P180L / Q225S、W9C / M10I / M11E / Q51D / A54S / N70W / V82Q / M148L / P180L、W9C / M10I / M11E / A54S / N70W / V82Q / A87P / P180L / Q192M、W9C / M10I / M11E / A54S / N70W / V82Q / M148L / P180L / T200H、W9C / M10I / M11E / N70W / V73L / V82Q / N108H / M148L / P180L、W9C / M10I / M11E / N70W / V73L / V82Q / M148L / P180L、W9C / M10I / M11E / N70W / V73M / V82Q / A87P / Q110M / P180L、W9C / M10I / M11E / N70W / V73M / V82Q / M148L / P180L、W9C / M10I / M11E / N70W / V73M / V82Q / M148L / P180L / Q192M / T200H、W9C / M10I / M11E / N70W / V82Q / A87P / Q110M / P180L / A219H、W9C / M10I / M11E / N70W / V82Q / M148L / P180L、W9C / M10I / M11E / N70W / V82Q / P180L、W9C / M10I / M11E / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11G / R17C / R49S / N70W / V82Q / P180L / A219H、W9C / M10I / M11G / R17V / Q51D / A54S / N70W / V82Q / M148L / P180L / T200H、W9C / M10I / M11G / Q51D / A54S / N70W / V73L / V82Q / N108H / Q110M / P180L、W9C / M10I / M11G / Q51D / N70W / V82Q / Q110M / P180L / Q192M / A219H、W9C / M10I / M11G / A54S / N70W / V82Q / A87P / N108H / P180L、W9C / M10I / M11G / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / A35G / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / A35Q / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / A35S / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / D36I / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / D36N / S38Y / R65I / N70W / V82Q / P180L / T200A / V214W / T229M、W9C / M10I / M11I / D36N / S38Y / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / D36N / S38Y / N70W / V82Q / P180L / T200A / V214W / T229M、W9C / M10I / M11I / D36N / N70W / V82Q / P180L / A196E / V214W、W9C / M10I / M11I / D36S / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / F40V / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / A54D / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / A54P / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / A54S / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / N70V / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / N70W、W9C / M10I / M11I / N70W / N71H / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / N70W / N71R / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / N70W / V73L / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / N70W / V73M / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / N70W / V73R / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / N70W / V82A / P180L / T200A / V214W、W9C / M10I / M11I / N70W / V82Q / A100S / P180L / T200A / V214W、W9C / M10I / M11I / N70W / V82Q / N108R / P180L / T200A / V214W、W9C / M10I / M11I / N70W / V82Q / M148L / P180L / T200A / V214W、W9C / M10I / M11I / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / N70W / A87V / P180L / T200A / V214W、W9C / M10I / M11T / D36N / S38Y / N70W / V82Q / P180L / T200A / V214W / T229M、W9C / M10I / M11T / D36N / N70W / V82Q / P180L / T200A / V214W / T229M、W9C / M10I / M11T / S38Y / N70W / V82Q / P180L / A186F / T200A / V214W、W9C / M10I / M11T / N70W、W9C / M10I / M11T / N70W / V82Q、W9C / M10I / M11T / N70W / V82Q / A107F、W9C / M10I / M11T / N70W / A107F、W9C / M10I / L12P / R49S / Q51D / A54S / N70W / V82Q / N108H / M148L / P180L / Q225S、W9C / M10I / L12P / Q51D / N70W / V73L / V82Q / M148L / P180L / T200H、W9C / M10I / L12P / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / L12V / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / D13E / N70W、W9C / M10I / D13E / N70W / V82Q、W9C / M10I / D13E / N70W / T229M、W9C / M10I / D13E / P207Q、W9C / M10I / R17A / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / R17C / Q51D / A54S / N70W / V82Q / A87P / N108H / Q110M / P180L / T200H、W9C / M10I / R17C / N70W / V73L / V82Q / N108H / Q110M / M148L / P180L / T200H、W9C / M10I / R17C / N70W / V82Q / A87P / M148L / P180L / Q192M / A219H、W9C / M10I / R17C / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / R17H、 / R49S / Q51D / A54S / N70W / V73M / V82Q / N108H / Q110M / M148L / P180L / Q192M / T200H / A219H、W9C / M10I / R17H / A54S / N70W / V82Q / A87P / N108H / Q110M / P180L、W9C / M10I / R17H / N70W / V82Q / Q110M / M148L / P180L、W9C / M10I / R17H / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / R17Q / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / R17S / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / R17V / R49S / Q51D / A54S / N70W / V82Q / A87P / P180L / A219H、W9C / M10I / R17V / R49S / N70W / V82Q / M148L / P180L、W9C / M10I / R17V / Q51D / N70W / V73M / V82Q / A87P / N108H / Q110M / M148L / P180L / A219H、W9C / M10I / R17V / A54S / N70W / V73L / V82Q / A87P / N108H / Q110M / M148L / P180L / T200H、W9C / M10I / R17V / A54S / N70W / V73L / V82Q / N108H / Q110M / M148L / P180L、W9C / M10I / R17V / N70W / V73M / V82Q / A87P / P180L / A219H、W9C / M10I / R17V / N70W / V82Q / A87P / M148L / P180L、W9C / M10I / R17V / N70W / V82Q / N108H / M148L / P180L、W9C / M10I / R17V / N70W / V82Q / Q110M / M148L / P180L / T200H、W9C / M10I / R17V / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / R17V / N70W / A104M / S160E / G165Q、W9C / M10I / R17V / N70W / R139H / S160G / G165Q、W9C / M10I / R17W、W9C / M10I / A26G、W9C / M10I / A26T、W9C / M10I / W29G / N70W、W9C / M10I / D36N / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / G37P、W9C / M10I / S38Y / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / D39A / A186T、W9C / M10I / D39W、W9C / M10I / A41F、W9C / M10I / A41G、W9C / M10I / A41S、W9C / M10I / P45R / N70W、W9C / M10I / P45T / N70W、W9C / M10I / R49S / Q51D / A54S / N70W / V73M / V82Q / M148L / P180L、W9C / M10I / R49S / Q51D / A54S / N70W / V82G / N108H / Q110M / M148L / P180L / Q225S、W9C / M10I / R49S / Q51D / A54S / N70W / V82Q / Q110M / M148L / P180L、W9C / M10I / R49S / Q51D / A54S / N70W / V82Q / Q110M / P180L、W9C / M10I / R49S / Q51D / A54S / N70W / V82Q / M148L / P180L、W9C / M10I / R49S / Q51D / A54S / N70W / V82Q / M148L / P180L / Q192M、W9C / M10I / R49S / Q51D / N70W / V82Q / N108H / M148L / P180L / A219H、W9C / M10I / R49S / Q51D / N70W / V82Q / Q110M / M148L / P180L、W9C / M10I / R49S / Q51D / N70W / V82Q / P180L / Q225S、W9C / M10I / R49S / A54S / N70W / V73L / V82Q / A87P / Q110M / P180L、W9C / M10I / R49S / A54S / N70W / V82Q / A87P / Q110M / P180L、W9C / M10I / R49S / A54S / N70W / V82Q / N108H / M148L / P180L / Q225S、W9C / M10I / R49S / N70W / V73L / V82G / N108H / Q110M / M148L / P180L / Q225S、W9C / M10I / R49S / N70W / V73L / V82Q / A87P / N108H / M148L / P180L、W9C / M10I / R49S / N70W / V82Q / A87P / M148L / P180L、W9C / M10I / R49S / N70W / V82Q / Q110M / P180L / A219H、W9C / M10I / Q51D / A54S / N70W / V73L / V82Q / N108H / P180L、W9C / M10I / Q51D / A54S / N70W / V73L / V82Q / Q110M / M148L / P180L、W9C / M10I / Q51D / A54S / N70W / V73M / V82Q / Q110M / P180L、W9C / M10I / Q51D / A54S / N70W / V73M / V82Q / P180L / A219H、W9C / M10I / Q51D / A54S / N70W / V73M / V82Q / P180L / Q225S、W9C / M10I / Q51D / A54S / N70W / V82Q / A87P / P180L、W9C / M10I / Q51D / A54S / N70W / V82Q / M148L / P180L、W9C / M10I / Q51D / A54S / N70W / V82Q / P180L、W9C / M10I / Q51D / A54S / N70W / V82Q / P180L / T200H、W9C / M10I / Q51D / N70W / V82Q / N108H / P180L、W9C / M10I / Q51D / N70W / V82Q / Q110M / P180L / T200H、W9C / M10I / Q51D / N70W / V82Q / P180L / A219H、W9C / M10I / A54S / N70W / V73M / V82Q / N108H / M148L / P180L / Q192M、W9C / M10I / A54S / N70W / V82G / P180L、W9C / M10I / A54S / N70W / V82Q / A87P / N108H / P180L / T200H、W9C / M10I / A54S / N70W / V82Q / P180L、W9C / M10I / A62G、W9C / M10I / N70R、W9C / M10I / N70W、W9C / M10I / N70W / V73L / V82Q / A87P / N108H / Q110M / P180L、W9C / M10I / N70W / V73L / V82Q / N108H / M148L / P180L、W9C / M10I / N70W / V73L / V82Q / N108H / M148L / P180L / Q192M、W9C / M10I / N70W / V73L / V82Q / N108H / P180L、W9C / M10I / N70W / V73L / V82Q / M148L / P180L / T200H、W9C / M10I / N70W / V73L / V82Q / P180L / Q192M、W9C / M10I / N70W / V73L / V82Q / P180L / Q192M / A219H、W9C / M10I / N70W / V73M / V82Q / A87P / P180L / Q192M / A219H、W9C / M10I / N70W / V73M / V82Q / A87P / P180L / T200H、W9C / M10I / N70W / V73M / V82Q / N108H / Q110M / P180L / T200H / A219H、W9C / M10I / N70W / V73M / V82Q / N108H / M148L / P180L、W9C / M10I / N70W / V73M / V82Q / N108H / M148L / P180L / Q192M / A219H、W9C / M10I / N70W / V73M / V82Q / M148L / P180L、W9C / M10I / N70W / V82Q、W9C / M10I / N70W / V82Q / A87P / N108H / Q110M / M148L / P180L / Q192M / A219H、W9C / M10I / N70W / V82Q / A87P / N108H / Q110M / P180L、W9C / M10I / N70W / V82Q / A87P / N108H / Q110M / P180L / Q192M、W9C / M10I / N70W / V82Q / A87P / P180L、W9C / M10I / N70W / V82Q / A107F、W9C / M10I / N70W / V82Q / A107F / T229M、W9C / M10I / N70W / V82Q / N108H / Q110M / P180L / A219H、W9C / M10I / N70W / V82Q / N108H / P180L、W9C / M10I / N70W / V82Q / Q110M / M148L / P180L、W9C / M10I / N70W / V82Q / Q110M / P180L / A219H、W9C / M10I / N70W / V82Q / M148L / P180L、W9C / M10I / N70W / V82Q / M148L / P180L / T200H、W9C / M10I / N70W / V82Q / M148L / P180L / T200H / A219H、W9C / M10I / N70W / V82Q / P180L、W9C / M10I / N70W / V82Q / P180L / Q192M / A219H、W9C / M10I / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / N70W / V82Q / T229M、W9C / M10I / N70W / K92R、W9C / M10I / N70W / V99R、W9C / M10I / N70W / V99R / T229M、W9C / M10I / N70W / A107F / T229M、W9C / M10I / N70W / A156E、W9C / M10I / N70W / G165Q、W9C / M10I / N70W / T229M、W9C / M10I / Q88G、W9C / M10I / A90S、W9C / M10I / A96F、W9C / M10I / A107F、W9C / M10I / Q110V、W9C / M10I / A111M、W9C / M10I / R112G、W9C / M10I / A133E、W9C / M10I / A133W、W9C / M10I / A178E、W9C / M10I / R185E、W9C / M10I / A186Q、W9C / M10I / A196Q、W9C / M10I / A196R、W9C / M10I / A196S、W9C / M10I / Q211E、W9C / M10I / A226E、W9C / M10I / A226W、W9R / M10I / M11E / L12P / Q51D / A54S / N70W / V73L / V82Q / Q110M / P180L、W9R / M10I / M11E / L12P / Q51D / N70W / V73M / V82Q / M148L / P180L / T200H / Q225S、W9R / M10I / M11E / L12S / Q51D / A54S / N70W / V73M / V82Q / M148L / P180L / Q225S、W9R / M10I / A54S / N70W / V82Q / P180L、W9R / M10I / N70W / V82Q / P180L / T200A / V214W、W9T / M10I / M11E / L12N / R49S / N70W / V73M / V82Q / P180L、W9T / M10I / M11E / L12P / Q51D / N70W / V73L / V82Q / M148L / P180L、W9T / M10I / M11G / L12S / R49S / Q51D / N70W / V73M / V82Q / P180L / T200H / Q225S、W9T / M10I / M11G / Q51D / A54S / N70W / V73L / V82Q / N108H / P180L / T200H / Q225S、W9T / M10I / M11G / Q51D / A54S / N70W / V73L / V82Q / Q110M / M148L / P180L、W9T / M10I / M11R / L12P / Q51D / A54S / N70W / V73L / V82Q / N108H / M148L / P180L / Q225S、W9T / M10I / L12P / N70W / V82A / M148L / P180L / Q225S、W9T / M10I / L12S / Q51D / A54S / N70W / P180L / Q225S, W9T / M10I / R49S / Q51D / A54S / N70W / V73M / V82Q / N108H / Q110M / M148L / P180L / Q192M, W9T / M10I / N70W / V73L / V82Q / N108H / Q110M / M148L / P180L, M11L / Q24T, M11L / Q24T / A219D, and M11L / D36S / Y206F / M208, A, and the amino acid positions of the polypeptide sequence are numbered with reference to SEQ ID NO:2.

[0009] The present invention also provides engineered carboxylesterases or functional fragments thereof comprising a polypeptide sequence having at least 80%, 85%, 86%, 87%, 88%, 89%, 90%, 91%, 92%, 93%, 94%, 95%, 96%, 97%, 98%, 99% or more sequence identity to SEQ ID NO:82, and comprising at least one substitution or set of substitutions within those polypeptide sequences, wherein the amino acid positions of the polypeptide sequences are numbered with reference to SEQ ID NO:82.

[0010] The present invention also provides an engineered carboxylesterase or functional fragment thereof comprising a polypeptide sequence having at least 80%, 85%, 86%, 87%, 88%, 89%, 90%, 91%, 92%, 93%, 94%, 95%, 96%, 97%, 98%, or 99% sequence identity to SEQ ID NO:268, wherein the polypeptide sequence comprises at least one substitution or set of substitutions, and wherein the amino acid positions of the polypeptide sequence are numbered with reference to SEQ ID NO:268.

[0011] The present invention also provides an engineered carboxylesterase comprising a polypeptide sequence having at least 80%, 85%, 86%, 87%, 88%, 89%, 90%, 91%, 92%, 93%, 94%, 95%, 96%, 97%, 98%, or 99% sequence identity to SEQ ID NO:536, or a functional fragment thereof, wherein the polypeptide sequence comprises at least one substitution or set of substitutions, and wherein the amino acid positions of the polypeptide sequence are numbered with reference to SEQ ID NO:536.

[0012] The present invention also provides engineered carboxylesterases comprising a polypeptide sequence having at least 80%, 85%, 86%, 87%, 88%, 89%, 90%, 91%, 92%, 93%, 94%, 95%, 96%, 97%, 98%, or 99% sequence identity to a sequence selected from the even-numbered sequences of SEQ ID NOs: 2-536, or a functional fragment thereof, wherein the polypeptide sequence comprises at least one substitution or set of substitutions, and wherein the amino acid positions of the polypeptide sequence are numbered with reference to a sequence selected from the even-numbered sequences of SEQ ID NOs: 2-536.

[0013] The present invention also provides engineered carboxylesterases comprising a polypeptide sequence selected from the even numbered sequences of SEQ ID NOs: 4-536.

[0014] The present invention further provides engineered carboxylesterases that exhibit at least one improved property compared to the wild-type Xanthomonas campestris carboxylesterase of SEQ ID NO: 2. In some embodiments, the improved property is selected from improved hydrolytic activity, kinetic resolution, solvent tolerance, thermostability, pH stability, regiostereoselectivity, stereoselectivity, enantioselectivity, substrate range, and / or reduced substrate or product inhibition, and reduced toxicity to a bacterial host cell producing the engineered carboxylesterase.

[0015] The present invention further provides polynucleotide sequences encoding the engineered carboxylesterases provided herein, wherein the polynucleotide sequence is operably linked to a regulatory sequence. In some additional embodiments, the polynucleotide sequence is codon optimized.

[0016] The present invention also provides expression vectors comprising at least one polynucleotide sequence encoding an engineered carboxylesterase provided herein. In addition, the present invention provides host cells comprising at least one expression vector provided herein. In some embodiments, the present invention also provides host cells comprising at least one polynucleotide sequence encoding at least one engineered carboxylesterase provided herein.

[0017] The present invention also provides methods for producing an engineered carboxylesterase in a host cell, the method comprising culturing a host cell comprising an expression vector comprising at least one polynucleotide encoding at least one engineered carboxylesterase under suitable conditions such that the at least one engineered carboxylesterase is produced. In some embodiments, the method further comprises recovering the at least one engineered carboxylesterase from the culture and / or the host cell. In some additional embodiments, the method further comprises purifying the at least one engineered carboxylesterase. DETAILED DESCRIPTION OF THE INVENTION

[0018] Description of the invention The present invention provides engineered carboxylesterases (EC 3.1.1) having improved non-native properties compared to naturally occurring wild-type (WT) carboxylesterase enzymes, as well as polynucleotides encoding the engineered carboxylesterase enzymes, host cells capable of expressing the engineered carboxylesterase enzymes, and methods of applying the engineered carboxylesterase enzymes to hydrolysis reactions. definition

[0019] In reference to the present invention, unless specifically defined otherwise, the technical and scientific terms used in the description herein have the meanings commonly understood by those skilled in the art. Accordingly, the following terms are intended to have the following meanings: All U.S. patents and published U.S. patent applications mentioned herein, including all sequences disclosed within such patents and patent applications, are expressly incorporated herein by reference. Unless otherwise indicated, the practice of the present invention involves conventional techniques commonly used in molecular biology, fermentation, microbiology, and related fields, which are well known to those skilled in the art. Unless otherwise defined herein, all technical and scientific terms used herein have the same meanings as commonly understood by those skilled in the art to which this invention belongs. Although any methods and materials similar or equivalent to those described herein can be used in the practice or testing of the present invention, preferred methods and materials are described. Indeed, it is intended that the present invention is not limited to the specific methodology, protocols, and reagents described herein, as these may vary depending on the context in which they are used. The headings provided herein are not limitations of the various aspects or embodiments of the present invention.

[0020] Nonetheless, to facilitate understanding of the present invention, certain terms are defined below. Numerical ranges are inclusive of the numbers defining the range. Thus, every numerical range disclosed herein is intended to encompass every narrower numerical range that falls within such broader numerical range, as if such narrower numerical ranges were all expressly written herein. Every maximum (or minimum) numerical limitation disclosed herein is also intended to include every lower (or higher) numerical limitation, as if such lower (or higher) numerical limitations were expressly written herein.

[0021] As used herein, the term "comprising" and its cognates are used in their inclusive sense (i.e., equivalent to the term "including" and its corresponding cognates).

[0022] As used in this specification and the appended claims, the singular forms "a," "an," and "the" include plural referents unless the context clearly dictates otherwise. So, for example, reference to a "host cell" includes a plurality of such host cells.

[0023] Unless otherwise indicated, nucleic acids are written left to right in 5' to 3' orientation; amino acid sequences are written left to right in amino to carboxy orientation, respectively.

[0024] The headings provided herein are not limitations of the various aspects or embodiments of the invention that can be made by reference to the specification as a whole. Accordingly, the terms defined below are more fully defined by reference to the specification as a whole.

[0025] As used herein, a "carboxylesterase" is defined as an enzyme that naturally possesses catalytic activity for the hydrolysis of carboxy esters, resulting in the formation of organic acids and alcohols.

[0026] As used herein, "amidation" or amide synthesis refers to the process of creating an amide bond, resulting in a carboxamide (organic amide).

[0027] As used herein, the terms "protein," "polypeptide," and "peptide" are used interchangeably herein to refer to a polymer of at least two amino acids covalently linked by an amide bond, regardless of length or post-translational modification (e.g., glycosylation, phosphorylation, lipidation, myristoylation, ubiquitination, etc.). Included within this definition are D- and L-amino acids, and mixtures of D- and L-amino acids.

[0028] As used herein, "polynucleotide" and "nucleic acid" refer to two or more nucleotides covalently linked together. A polynucleotide may be composed entirely of ribonucleosides (i.e., RNA), entirely of 2'-deoxyribonucleotides (i.e., DNA), or a mixture of ribonucleosides and 2'-deoxyribonucleosides. Nucleosides are typically linked together via standard phosphodiester linkages; a polynucleotide may contain one or more non-standard linkages. A polynucleotide may be single-stranded or double-stranded, or may contain both single- and double-stranded regions. A polynucleotide is also typically composed of naturally occurring encoded nucleobases (i.e., adenine, guanine, uracil, thymine, and cytosine), but may contain one or more modified and / or synthetic nucleobases (e.g., inosine, xanthine, hypoxanthine, etc.). In one embodiment of the present invention, such modified or synthetic nucleobases are coding nucleobases.

[0029] As used herein, "coding sequence" refers to a portion of a nucleic acid (eg, a gene) that encodes the amino acid sequence of a protein.

[0030] As used herein, "naturally occurring," "wild-type," and "WT" refer to forms found in nature. For example, a naturally occurring or wild-type polypeptide or polynucleotide sequence is a sequence present in an organism that can be isolated from a natural source and has not been intentionally modified by human manipulation.

[0031] As used herein, "non-naturally occurring" or "engineered" or "recombinant," when used herein with respect to (e.g., a cell, nucleic acid, or polypeptide), refers to a material that has been modified in a manner that would not otherwise occur in nature, or that has been produced and / or derived from synthetic material and / or by manipulation using recombinant techniques, but is identical to, or corresponds to, the natural or native form of the material. Non-limiting examples include, among others, recombinant cells that express genes not found within the native (non-recombinant) form of the cell, or that express native genes that are otherwise expressed at different levels.

[0032] As used herein, "percentage of sequence identity," "percent identity," and "percent identical" refer to a comparison between polynucleotide or polypeptide sequences and are determined by comparing two optimally aligned sequences over a comparison window, where the portion of the polynucleotide or polypeptide sequence in the comparison window may contain additions or deletions (i.e., gaps) compared to the reference sequence for optimal alignment of the two sequences. The percentage is calculated by determining the number of positions where the same nucleic acid base or amino acid residue is present in both sequences, or aligned with gaps to obtain the number of positions where the nucleic acid base or amino acid residue is matched, dividing the number of matched positions by the total number of positions in the comparison window, and multiplying the result by 100 to obtain the percentage of sequence identity. Optimal alignment and determination of percent sequence identity are performed using the BLAST and BLAST 2.0 algorithms (see, e.g., Altschul et al., J. Mol. Biol. 215: 403-410

[1990] ; and Altschul, et al., Nucleic Acids Res. 3389-3402

[1977] ). Software for performing BLAST analyses is publicly available through the website of the National Center for Biotechnology Information.

[0033] Briefly, BLAST analysis involves first identifying high-scoring sequence pairs (HSPs) by identifying short word lengths in the query sequence that, when aligned with words of the same length in a database sequence, match or meet some positive threshold score T. T is referred to as the neighborhood word score threshold (Altschul, et al., supra). These initial neighborhood word hits act as seeds to initiate searches to find longer HSPs containing them. The word hits are then extended in both directions along each sequence for as far as the cumulative alignment score can be increased. For nucleotide sequences, cumulative scores are calculated using the parameters M (reward score for a pair of matching residues; always >0) and N (penalty score for mismatching residues; always <0). For amino acid sequences, cumulative scores are calculated using a scoring matrix. Extension of word hits in each direction is stopped when the cumulative alignment score drops by the amount X from its maximum achieved value, when the cumulative score becomes 0 or less due to the accumulation of one or more negative-scoring residue alignments, or when the end of either sequence is reached. The BLAST algorithm parameters W, T, and X determine the sensitivity and speed of the alignment. The BLASTN program (for nucleotide sequences) uses as defaults a word length (W) of 11, an expectation (E) of 10, M=5, N=-4, and a comparison of both strands. For amino acid sequences, the BLASTP program uses as defaults a word length (W) of 3, an expectation (E) of 10, and the BLOSUM62 scoring matrix (see, e.g., Henikoff and Henikoff, Proc Natl Acad Sci USA 89:10915

[1989] ).

[0034] Many other algorithms that function similarly to BLAST in providing percent identity for two sequences are available and known in the art. Optimal alignment of sequences for comparison can be performed using any suitable method known in the art (e.g., by the local homology algorithm of Smith and Waterman, Adv. Appl. Math. 2:482

[1981] ; by the homology alignment algorithm of Needleman and Wunsch, J. Mol. Biol. 48:443

[1970] ; by the search for similarity method of Pearson and Lipman, Proc. Natl. Acad. Sci. USA 85:2444

[1988] ; and / or by computer-controlled implementations of these algorithms (GAP, BESTFIT, FASTA, and TFASTA in the GCG Wisconsin Software package) or by visual inspection using methods commonly known in the art. Additionally, sequence alignments and determination of percent sequence identity can be performed using the BESTFIT or GAP programs in the GCG Wisconsin Software package (Accelrys, Madison Wis.) using the default parameters provided.

[0035] As used herein, a "reference sequence" refers to a defined sequence that is compared to another sequence. A reference sequence may be a subset of a larger sequence, such as a segment of a full-length gene or polypeptide sequence. Generally, a reference sequence is at least 20 nucleotides or amino acid residues in length, at least 25 residues in length, at least 50 residues in length, or the full length of a nucleic acid or polypeptide. Because two polynucleotides or polypeptides may each contain (1) similar sequences (i.e., portions of the complete sequence) between the two sequences and (2) additional sequences that differ between the two sequences, sequence comparison between two (or more) polynucleotides or polypeptides is typically performed by comparing the sequences of the two polynucleotides over a comparison window to identify and compare local regions of sequence similarity. The term "reference sequence" is not intended to be limited to wild-type sequences but may include engineered or modified sequences. For example, in some embodiments, a "reference sequence" may be a previously engineered or modified amino acid sequence.

[0036] As used herein, a "comparison window" refers to a conceptual segment of at least about 20 contiguous nucleotide positions or amino acid residues, where a sequence can be compared to a reference sequence of at least 20 contiguous nucleotides or amino acids, and the portion of the sequence in the comparison window can contain 20 percent or less additions or deletions (i.e., gaps) compared to the reference sequence (no additions or deletions) for optimal alignment of the two sequences. The comparison window can be longer than 20 contiguous residues, optionally including windows of 30, 40, 50, 100, or longer.

[0037] As used herein, "corresponding to," "with reference to," or "compared to," when used in the context of numbering a given amino acid sequence or polynucleotide sequence, refers to the numbering of residues in a specified reference sequence when the given amino acid sequence or polynucleotide sequence is compared to the reference sequence. In other words, residue numbers or residue positions in a given polymer are designated with respect to the reference sequence rather than by the actual numbered position of the residue within the given amino acid sequence or polynucleotide sequence. For example, a given amino acid sequence, such as the amino acid sequence of an engineered carboxylesterase, can be aligned to a reference sequence by introducing gaps to optimize residue matching between the two sequences. In these cases, although gaps exist, the numbering of residues in a given amino acid sequence or polynucleotide sequence is done with respect to the reference sequence to which it is aligned. As used herein, references to residue positions, e.g., "Xn," as further described below, should be interpreted as references to "residues corresponding to" unless specifically indicated otherwise. So, for example, "X94" refers to any amino acid at position 94 of a polypeptide sequence (eg, SEQ ID NO: 2, 4, 10, 26, or 42).

[0038] As used herein, "stereoselectivity" refers to the preferential formation of one stereoisomer over another or set of stereoisomers in a chemical or enzymatic reaction. Stereoselectivity can be partial, where the formation of one stereoisomer is preferred over another, or it can be complete, where only one stereoisomer is formed. When the stereoisomers are enantiomers, stereoselectivity is referred to as enantioselectivity, which is the proportion (typically reported as a percentage) of one enantiomer in the sum of both enantiomers. Alternatively, it is commonly reported in the art as the enantiomeric excess (ee), calculated from them according to the formula [major enantiomer - minor enantiomer] / [major enantiomer + minor enantiomer] (typically as a percentage). When the stereoisomers are diastereoisomers, the stereoselectivity is referred to as diastereoselectivity, which is the proportion (typically reported as a percentage) of one diastereomer in a mixture of two diastereomers, or is commonly reported as diastereomeric excess (de). Enantiomeric excess and diastereomeric excess are types of stereoisomeric excess. It should also be understood that stereoselectivity is not limited to a single stereoisomer, but can be described for a set of stereoisomers.

[0039] As used herein, "enantiospecificity" or "E value" refers to the preferential conversion of one stereoisomer over another in a chemical or enzymatic reaction, while ee refers to the enantiomeric purity of a compound. In kinetic resolution, the E value is independent of the substrate and enzyme concentrations and is determined by the equation ln[(1-ee)] as described in Enzyme Microbio Technol, 1997, 21:559-571. s ) / (1+ee s / ee p )] / ln[(1+ee s ) / (1+ee s / ee p ) can be determined from the %ee of the substrate and the %ee of the product.

[0040] As used herein, "highly stereoselective" or "highly enantioselective" refers to a chemical or enzymatic reaction that can convert a substrate into its corresponding chiral acid product in at least about 75% stereoisomeric excess.

[0041] As used herein, "increased enzyme activity" and "increased activity" refer to an improvement in the properties of an engineered enzyme, which can be expressed as an increase in specific activity (e.g., product produced / time / weight of protein) or an increase in the percent conversion of substrate to product (e.g., percent conversion of a starting amount of substrate to product in a specific time using a specific amount of carboxylesterase) compared to a reference enzyme. Exemplary methods for determining enzyme activity are provided in the Examples. Any property related to enzyme activity, including classical enzyme properties such as Km, Vmax, or kcat, may be affected, and changes thereto can result in increased enzyme activity. Carboxylesterase activity can be measured by any one of the standard assays used to measure carboxylesterases, such as changes in substrate or product concentration. Comparisons of enzyme activity are performed using a defined preparation of enzyme, a defined assay under set conditions, and one or more defined substrates, as described in further detail herein. Generally, when enzymes in cell lysates are compared, not only are the number of cells and the amount of protein assayed determined, but the same expression system and the same host cells are used to minimize variation in the amount of enzyme produced by the host cells and present in the lysates.

[0042] As used herein, "conversion" refers to the enzymatic conversion of a substrate to the corresponding product.

[0043] As used herein, "percent conversion" refers to the percent of a substrate that is converted to a product under specified conditions within a given period of time. Thus, for example, the "enzyme activity" or "activity" of a carboxylesterase polypeptide can be expressed as the "percent conversion" of substrate to product.

[0044] As used herein, "regiospecific" refers to a chemical reaction that produces exclusively one structural isomer, when other isomers are theoretically possible.

[0045] As used herein, "thermostable" and "thermal stable" are used interchangeably and refer to a polypeptide that is resistant to inactivation when exposed to a range of temperature conditions (e.g., 40-80°C) for a period of time (e.g., 0.5-24 hours) relative to the intact enzyme, and thus retains a certain level of residual activity (e.g., greater than 60% to 80%) after exposure to elevated temperatures.

[0046] As used herein, "solvent stable" refers to the ability of a polypeptide to maintain similar activity (e.g., greater than 60% to 80%) after exposure to different concentrations (e.g., 5 to 99%) of a solvent (e.g., isopropyl alcohol, tetrahydrofuran, 2-methyltetrahydrofuran, acetone, toluene, butyl acetate, methyl tert-butyl ether, etc.) for a period of time (e.g., 0.5 to 24 hours) compared to the untreated enzyme.

[0047] As used herein, "amino acid difference" and "residue difference" refer to the difference in an amino acid residue at a position in a polypeptide sequence compared to the amino acid residue at the corresponding position in a reference sequence. The position of an amino acid difference is generally referred to herein as "Xn," where n refers to the corresponding position in the reference sequence on which the residue difference is based. For example, "a residue difference at position X40 compared to SEQ ID NO:2" refers to the difference in the amino acid residue at the polypeptide position corresponding to position 40 of SEQ ID NO:2. Thus, if position 40 of the reference polypeptide, SEQ ID NO:2, is a histidine, then "a residue difference at position X40 compared to SEQ ID NO:2" refers to the amino acid substitution of any residue other than histidine at the polypeptide position corresponding to position 40 of SEQ ID NO:2. In most cases herein, a specific amino acid residue difference at a position will be represented as "XnY," where "Xn" designates the corresponding position as described above, and "Y" is the single-letter identifier of the amino acid found in the engineered polypeptide (i.e., the residue that differs from the reference polypeptide). In some cases, the present invention also provides specific amino acid differences, designated by the conventional designation "AnB," where A is the single-letter identifier of the residue in the reference sequence, "n" is the position number of the residue in the reference sequence, and B is the single-letter identifier of the residue substitution in the sequence of the engineered polypeptide. In some cases, the polypeptides of the present invention may contain at least one amino acid residue difference compared to the reference sequence, as indicated by a listing of the specific position at which the residue difference occurs compared to the reference sequence. In some embodiments, when more than one amino acid can be used at a particular residue position in the polypeptide, the various amino acid residues that can be used are separated by a " / " (e.g., X192A / G). The present invention includes engineered polypeptide sequences that contain at least one amino acid difference, including either or both conservative and non-conservative amino acid substitutions. The amino acid sequences of certain recombinant carbonic anhydrase polypeptides included in the sequence listing of the present invention include an initial methionine (M) residue (i.e., M represents residue position 1).However, one of skill in the art will understand that this initial methionine residue can be removed by biological processing mechanisms, e.g., a host cell or an in vitro translation system, to create a mature protein that lacks the initial methionine residue but otherwise retains the properties of the enzyme. Consequently, the term "amino acid residue difference compared to SEQ ID NO:2 at position Xn," as used herein, can refer to position "Xn" or the corresponding position (e.g., position (X-1)n) in a reference sequence that has been processed to lack the initial methionine.

[0048] As used herein, the phrase "conservative amino acid substitution" refers to the interchangeability of residues with similar side chains, and thus typically includes the substitution of an amino acid in a polypeptide with an amino acid within the same or similar defined amino acid class. As an example and not by way of limitation, in some embodiments, an amino acid with an aliphatic side chain is substituted with another aliphatic amino acid (e.g., alanine, valine, leucine, and isoleucine), an amino acid with a hydroxyl side chain is substituted with another amino acid with a hydroxyl side chain (e.g., serine and threonine), an amino acid with an aromatic side chain is substituted with another amino acid with an aromatic side chain (e.g., phenylalanine, tyrosine, tryptophan, and histidine), an amino acid with a basic side chain is substituted with another amino acid with a basic side chain (e.g., lysine and arginine), an amino acid with an acidic side chain is substituted with another amino acid with an acidic side chain (e.g., aspartic acid or glutamic acid), and / or a hydrophobic or hydrophilic amino acid is substituted with another hydrophobic or hydrophilic amino acid, respectively. The appropriate classification of any amino acid or residue will be apparent to one of skill in the art, particularly in light of the detailed invention provided herein. Exemplary conservative substitutions are provided in Table 1. [Table 1]

[0049] As used herein, the phrase "non-conservative substitution" refers to the substitution of an amino acid in a polypeptide with an amino acid having significantly different side chain properties. Non-conservative substitutions may use amino acids between defined groups rather than within defined groups, and affect (a) the structure of the peptide backbone in the area of ​​the substitution (e.g., proline for glycine), (b) the charge or hydrophobicity, or (c) the bulk of the side chain. By way of example and not limitation, exemplary non-conservative substitutions may be an acidic amino acid substituted with a basic or aliphatic amino acid, an aromatic amino acid substituted with a small amino acid, and a hydrophilic amino acid substituted with a hydrophobic amino acid.

[0050] As used herein, "deletion" refers to the modification of a polypeptide by removing one or more amino acids from a reference polypeptide. Deletions can include the removal of one or more amino acids, two or more amino acids, five or more amino acids, ten or more amino acids, fifteen or more amino acids, or twenty or more amino acids, up to 10% of the total number of amino acids making up the polypeptide, or up to 20% of the total number of amino acids, while retaining enzymatic activity and / or improving the properties of the engineered enzyme. Deletions can be directed to internal and / or terminal portions of the polypeptide. In various embodiments, deletions can include continuous segments or can be discontinuous.

[0051] As used herein, "insertion" refers to the modification of a polypeptide by the addition of one or more amino acids to a reference polypeptide. In some embodiments, improved engineered carboxylesterase enzymes include the insertion of one or more amino acids into a naturally occurring carboxylesterase polypeptide and the insertion of one or more amino acids into an engineered carboxylesterase polypeptide. The insertion can be in an internal portion of the polypeptide or can be to the carboxy- or amino-terminus. As used herein, insertion includes fusion proteins, as known in the art. The insertion can be a contiguous segment of amino acids within a naturally occurring polypeptide or can be separated by one or more amino acids.

[0052] The term "amino acid substitution set" or "substitution set" refers to a group of amino acid substitutions in a polypeptide sequence compared to a reference sequence. A substitution set can have 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, or more amino acid substitutions. In some embodiments, a substitution set refers to the set of amino acid substitutions present in any of the variant carboxylesterases included in the tables provided in the Examples.

[0053] As used herein, a "fragment" refers to a polypeptide that has an amino- and / or carboxy-terminal deletion, but where the remaining amino acid sequence is identical to the corresponding positions within the sequence. A fragment may typically have about 80%, about 90%, about 95%, about 98%, or about 99% of a full-length carboxylesterase polypeptide, e.g., the polypeptide of SEQ ID NO: 4. In some embodiments, a fragment is "biologically active" (i.e., exhibits the same enzymatic activity as the full-length sequence).

[0054] A "functional fragment" or "biologically active fragment," as used interchangeably herein, refers to a polypeptide that has an amino-terminal and / or carboxy-terminal deletion and / or an internal deletion, but where the remaining amino acid sequence is identical to the corresponding positions in a sequence to which it is compared (e.g., a full-length engineered X. campestris enzyme of the invention), and which retains substantially all of the activity of the full-length polypeptide.

[0055] As used herein, an "isolated polypeptide" refers to a polypeptide that has been substantially separated from other contaminants that naturally accompany it (e.g., proteins, lipids, and polynucleotides). The term encompasses polypeptides that have been removed from their naturally occurring environment or expression system (e.g., a host cell or in vitro synthesis) or purified. The improved carboxylesterase enzymes may be present intracellularly, in cell culture medium, or prepared in various forms, e.g., a lysate or isolated preparation. Thus, in some embodiments, the engineered carboxylesterase polypeptides of the invention may be isolated polypeptides.

[0056] As used herein, "substantially pure polypeptide" refers to a composition in which the polypeptide species is the predominant species present (i.e., it is more abundant, on a molar or weight basis, than any other individual macromolecular species in the composition); generally, a composition is substantially purified when the species of interest constitutes at least about 50 percent of the macromolecular species present, by molar or weight percent. Generally, a substantially pure engineered carboxylesterase polypeptide composition constitutes about 60% or more, about 70% or more, about 80% or more, about 90% or more, about 91% or more, and about 92%, about 93%, about 94%, about 95%, about 96%, about 97%, about 98%, or about 99% of all macromolecular species in the composition, by molar or weight percent. Solvent species, small molecules (<500 Daltons), and elemental ion species are not considered macromolecular species. In some embodiments, the isolated improved carboxylesterase polypeptide is a substantially pure polypeptide composition.

[0057] As used herein, the term "heterologous," when used with reference to a nucleic acid or polypeptide, refers to a sequence that is not normally expressed and secreted by an organism (e.g., a wild-type organism). In some embodiments, the term encompasses sequences that contain two or more subsequences that are not normally found in the same relationship to each other as found in nature, or that have been recombinantly manipulated so that their level of expression or physical relationship to other nucleic acids or other molecules in a cell or structure is not normally found in nature. For example, heterologous nucleic acids having two or more sequences from unrelated genes arranged in a manner not found in nature are typically produced recombinantly (e.g., a nucleic acid open reading frame (ORF) of the invention operatively linked to a promoter sequence inserted into an expression cassette, e.g., a vector). In some embodiments, a "heterologous polynucleotide" refers to any polynucleotide introduced into a host cell by laboratory techniques, including polynucleotides that are removed from a host cell, subjected to laboratory manipulation, and then reintroduced into the host cell.

[0058] As used herein, "codon-optimized" refers to changing the codons of a polynucleotide encoding a protein to those preferentially used in a particular organism, such that the encoded protein is efficiently expressed in the organism of interest. In some embodiments, a polynucleotide encoding a carboxylesterase enzyme may be codon-optimized for optimal production from the host organism selected for expression.

[0059] As used herein, "control sequences" is defined herein to include all components necessary or advantageous for the expression of polynucleotides and / or polypeptides of the present invention. Each control sequence may be native or foreign to the polynucleotide of interest. Such control sequences include, but are not limited to, a leader, polyadenylation sequence, propeptide sequence, promoter, signal peptide sequence, and transcription terminator.

[0060] As used herein, "operably linked" is defined herein as a configuration in which a control sequence is suitably positioned relative to a polynucleotide of interest (i.e., in a functional relationship) such that the control sequence directs or regulates expression of the polynucleotide and / or polypeptide of interest.

[0061] As used herein, "suitable reaction conditions" refers to conditions in a biocatalytic reaction solution (e.g., ranges of enzyme loading, substrate loading, temperature, pH, buffers, co-solvents, etc.) under which a carboxylesterase polypeptide of the invention can convert a substrate compound to a product compound (e.g., convert one compound to another). Exemplary "suitable reaction conditions" are provided herein and illustrated by the Examples.

[0062] As used herein, "load," e.g., "compound load," "enzyme load," or "substrate load," refers to the concentration or amount of a component in the reaction mixture at the start of the reaction.

[0063] As used herein, "substrate" in the context of a biocatalyst-mediated process refers to the compound or molecule that is acted upon by the biocatalyst.

[0064] As used herein, "product" in the context of a biocatalyst-mediated process refers to a compound or molecule that results from the action of the biocatalyst.

[0065] As used herein, "equilibration," as used herein, refers to the process of resulting in steady-state concentrations of chemical species in a chemical or enzymatic reaction involving the interconversion of stereoisomers (e.g., the interconversion of two species A and B), as determined by the forward and reverse rate constants of the chemical or enzymatic reaction.

[0066] As used herein, "alkyl" refers to a saturated hydrocarbon group, either straight-chained or branched, of 1 to 18 carbon atoms, inclusive, more preferably 1 to 8 carbon atoms, inclusive, and most preferably 1 to 6 carbon atoms, inclusive. Alkyl groups having a specific number of carbon atoms are represented in parentheses (e.g., (C1-C4) alkyl refers to alkyl of 1 to 4 carbon atoms).

[0067] As used herein, "alkenyl" refers to a group of 2 to 12 carbon atoms, inclusive, either straight or branched, containing at least one double bond, but optionally containing more than one double bond.

[0068] As used herein, "alkynyl" refers to a group of 2 to 12 carbon atoms, inclusive, either straight or branched, containing at least one triple bond, but optionally containing more than one triple bond, and further optionally containing one or more double bond moieties.

[0069] As used herein, "heteroalkyl," "heteroalkenyl," and "heteroalkynyl" refer to alkyl, alkenyl, and alkynyl, as defined herein, in which one or more carbon atoms are each independently replaced with the same or different heteroatom or heteroatom group. The heteroatoms and / or heteroatom groups that can replace carbon atoms include, but are not limited to, -O-, -S-, -SO-, -NRα-, -PH-, -S(O)-, -S(O)2-, -S(O)NRα-, -S(O)2NRα-, etc., and combinations thereof, where each Rα is independently selected from hydrogen, alkyl, heteroalkyl, cycloalkyl, heterocycloalkyl, aryl, and heteroaryl.

[0070] As used herein, "alkoxy" refers to the group -ORβ, where Rβ is an alkyl group as defined above, including optionally substituted alkyl groups, also defined herein.

[0071] As used herein, "aryl" refers to an unsaturated aromatic carbocyclic group of 6 to 12 carbon atoms, inclusive, having a single ring (e.g., phenyl) or multiple condensed rings (e.g., naphthyl or anthryl). Exemplary aryls include phenyl, pyridyl, naphthyl, and the like.

[0072] As used herein, "amino" refers to the group -NH. Substituted amino refers to the groups -NHR, NR, R, and NRRR, where each R is independently selected from substituted or unsubstituted alkyl, cycloalkyl, cycloheteroalkyl, alkoxy, aryl, heteroaryl, heteroarylalkyl, acyl, alkoxycarbonyl, sulfanyl, sulfinyl, sulfonyl, and the like. Exemplary amino groups include, but are not limited to, dimethylamino, diethylamino, trimethylammonium, triethylammonium, methylsulfonylamino, furanyl-oxy-sulfamino, and the like.

[0073] As used herein, "oxo" refers to =O.

[0074] As used herein, "oxy" refers to the divalent group --O--, which may have a variety of substituents to form different oxy groups including ethers and esters.

[0075] As used herein, "carboxy" refers to --COOH.

[0076] As used herein, "carbonyl" refers to -C(O)-, which may have a variety of substituents that form different carbonyl groups, including acids, acid halides, aldehydes, amides, esters, and ketones.

[0077] As used herein, "alkyloxycarbonyl" refers to -C(O)ORε, where Rε is an alkyl group, as defined herein, which can be optionally substituted.

[0078] As used herein, "aminocarbonyl" refers to -C(O)NH. Substituted aminocarbonyl refers to -C(O)NRδRδ, where the amino group NRδRδ is as defined herein.

[0079] As used herein, "halogen" and "halo" refer to fluoro, chloro, bromo, and iodo.

[0080] As used herein, "hydroxy" refers to --OH.

[0081] As used herein, "cyano" refers to --CN.

[0082] As used herein, "heteroaryl" refers to an aromatic heterocyclic group of 1 to 10 carbon atoms, inclusive, and 1 to 4 heteroatoms, inclusive, selected from oxygen, nitrogen, and sulfur, within the ring. Such heteroaryl groups can have a single ring (e.g., pyridyl or furyl) or multiple condensed rings (e.g., indolizinyl or benzothienyl).

[0083] As used herein, "heteroarylalkyl" refers to an alkyl substituted with a heteroaryl (i.e., a heteroaryl-alkyl group) preferably having from 1 to 6 carbon atoms, inclusive, in the alkyl portion and from 5 to 12 ring atoms, inclusive, in the heteroaryl portion. Such heteroarylalkyl groups are exemplified by pyridylmethyl, and the like.

[0084] As used herein, "heteroarylalkenyl" refers to an alkenyl substituted with a heteroaryl (i.e., a heteroaryl-alkenyl group) preferably having from 2 to 6 carbon atoms, inclusive, in the alkenyl moiety and from 5 to 12 ring atoms, inclusive, in the heteroaryl moiety.

[0085] As used herein, "heteroarylalkynyl" refers to an alkynyl substituted with a heteroaryl (i.e., a heteroaryl-alkynyl group) preferably having from 2 to 6 carbon atoms, inclusive, in the alkynyl portion and from 5 to 12 ring atoms, inclusive, in the heteroaryl portion.

[0086] As used herein, "heterocycle," "heterocyclic," and interchangeably, "heterocycloalkyl" refer to saturated or unsaturated groups having a single ring or multiple condensed rings, from 2 to 10 carbon ring atoms, inclusive, and from 1 to 4 hetero ring atoms, inclusive, selected from nitrogen, sulfur, or oxygen, within the ring. Such heterocyclic groups can have a single ring (e.g., piperidinyl or tetrahydrofuryl) or multiple condensed rings (e.g., indolinyl, dihydrobenzofuran, or quinuclidinyl). Examples of heterocycles include, but are not limited to, furan, thiophene, thiazole, oxazole, pyrrole, imidazole, pyrazole, pyridine, pyrazine, pyrimidine, pyridazine, indolizine, isoindole, indole, indazole, purine, quinolizine, isoquinoline, quinoline, phthalazine, naphthylpyridine, quinoxaline, quinazoline, cinnoline, pteridine, carbazole, carboline, phenanthridine, acridine, phenanthroline, isothiazole, phenazine, isoxazole, phenoxazine, phenothiazine, imidazolidine, imidazoline, piperidine, piperazine, pyrrolidine, indoline, and the like.

[0087] As used herein, "membered ring" is meant to encompass any cyclic structure. The number preceding the term "membered" refers to the number of skeletal atoms that make up the ring. Thus, for example, cyclohexyl, pyridine, pyran, and thiopyran are six-membered rings, and cyclopentyl, pyrrole, furan, and thiophene are five-membered rings.

[0088] Unless otherwise specified, the position occupied by hydrogen in the foregoing groups includes, but is not limited to, hydroxy, oxo, nitro, methoxy, ethoxy, alkoxy, substituted alkoxy, trifluoromethoxy, haloalkoxy, fluoro, chloro, bromo, iodo, halo, methyl, ethyl, propyl, butyl, alkyl, alkenyl, alkynyl, substituted alkyl, trifluoromethyl, haloalkyl, hydroxyalkyl, alkoxyalkyl, thio, alkylthio, acyl, carboxy, alkoxycarbonyl, carboxamido, substituted carboxamido, alkylsulfonyl, alkylsulfinyl, alkylsulfonylamino, sulfonamido, substituted sulfonamido, cyano, amino, substituted amino, alkylamino, dialkylamino, aminoalkyl, It can be further substituted with substituents exemplified by acylamino, amidino, amidoximo, hydroxamoyl, phenyl, aryl, substituted aryl, aryloxy, arylalkyl, arylalkenyl, arylalkynyl, pyridyl, imidazolyl, heteroaryl, substituted heteroaryl, heteroaryloxy, heteroarylalkyl, heteroarylalkenyl, heteroarylalkynyl, cyclopropyl, cyclobutyl, cyclopentyl, cyclohexyl, cycloalkyl, cycloalkenyl, cycloalkylalkyl, substituted cycloalkyl, cycloalkyloxy, pyrrolidinyl, piperidinyl, morpholino, heterocycle, (heterocycle)oxy, and (heterocycle)alkyl, with preferred heteroatoms being oxygen, nitrogen, and sulfur. It is understood that when open valences exist on these substituents, they can be further substituted with alkyl, cycloalkyl, aryl, heteroaryl, and / or heterocyclic groups, and when these open valences exist on carbon, they can be further substituted with halogens, as well as oxygen, nitrogen, or sulfur bonded substituents, and when multiple such open valences exist, these groups can be connected to form rings, either by direct formation of a bond or by formation of a bond to a new heteroatom, preferably oxygen, nitrogen, or sulfur.It is further understood that the above substitutions can be made provided that replacement of a hydrogen with a substituent does not introduce unacceptable instability into the molecules of the present invention and is otherwise chemically reasonable.

[0089] As used herein, "optional" and "optionally" mean that the subsequently described event or circumstance may or may not occur, and that the description includes cases where the event or circumstance occurs as well as cases where it does not occur. Those of skill in the art will understand that with respect to any molecule described as containing one or more optional substituents, only sterically practical and / or synthetically feasible compounds are meant to be included.

[0090] As used herein, "optionally substituted" refers to all subsequent modifiers in a term or series of chemical groups. For example, in the term "optionally substituted arylalkyl," the "alkyl" and "aryl" portions of the molecule can be substituted or unsubstituted, and for the series "optionally substituted alkyl, cycloalkyl, aryl, and heteroaryl," the alkyl, cycloalkyl, aryl, and heteroaryl groups can be substituted or unsubstituted, independently of the others.

[0091] As used herein, a "protecting group" refers to a group of atoms that, when attached to a reactive functional group in a molecule, masks, reduces, or prevents the reactivity of the functional group. Typically, a protecting group may be selectively removed, if desired, during the course of a synthesis. Examples of protecting groups are well known in the art. Functional groups that may bear a protecting group include, but are not limited to, hydroxy, amino, and carboxy groups. Representative amino protecting groups include, but are not limited to, formyl, acetyl, trifluoroacetyl, benzyl, benzyloxycarbonyl ("CBZ"), tert-butoxycarbonyl ("Boc"), trimethylsilyl ("TMS"), 2-trimethylsilyl-ethanesulfonyl ("SES"), trityl and substituted trityl groups, allyloxycarbonyl, 9-fluorenylmethyloxycarbonyl ("FMOC"), nitro-veratryloxycarbonyl ("NVOC"), and the like. Representative hydroxyl protecting groups include, but are not limited to, those in which the hydroxyl group is acylated (e.g., methyl and ethyl esters, acetate or propionate groups, or glycol esters), or alkylated, such as benzyl and trityl ethers, as well as alkyl ethers, tetrahydropyranyl ethers, trialkylsilyl ethers (e.g., TMS or TIPPS groups), and allyl ethers. Other protecting groups can be found in the references mentioned herein. Engineered Carboxylesterase Polypeptides

[0092] The present invention provides engineered polypeptides with carboxylesterase activity (also referred to herein as "engineered carboxylesterase polypeptides") that are useful in hydrolysis reactions. Accordingly, in one aspect, the present invention provides engineered peptides with carboxylesterase activity that are capable of converting substrate compounds into product compounds, as shown in Schemes 1 and 2 below. Additionally, the present invention provides polynucleotides encoding the engineered polypeptides, associated vectors and host cells containing the polynucleotides, methods for making the engineered polypeptides, and methods for using the engineered polypeptides, including suitable reaction conditions.

[0093] The engineered polypeptides of the invention are non-naturally occurring carboxylesterases engineered to have improved enzymatic properties (e.g., increased enantioselectivity and increased kinetic resolution of racemic substrates) compared to the wild-type carboxylesterase polypeptide of Xanthomonas campestris (GenBank Accession No. WP_011038606.1; SEQ ID NO: 2). The wild-type carboxylesterase polypeptide of SEQ ID NO: 2 is an alpha-beta hydrolase that uses water molecules (HO) to hydrolyze ester substrates to the corresponding acid and alcohol products. In some embodiments, the various engineered carboxylesterase polypeptides provided herein exhibit improved enzymatic properties compared to other engineered reference carboxylesterase polypeptides provided herein.

[0094] Compound (1) is an intermediate in the synthesis of inhibitors of factor XIa, a target for antithrombotic therapy (as disclosed in US Pat. No. 9,453,018). [ka]

[0095] Carboxylesterases are capable of a variety of reactions that are useful for the efficient production of pharmaceutical compounds and intermediates under industrial process conditions. Carboxylesterases and lipases can act as hydrolases for desired transformations, including the conversion of esters to the corresponding acids. One desired reaction is the conversion of compound 2a (according to Scheme 1) to produce compound 3a, which is an intermediate in the production of compound 1. [ka]

[0096] The R-2 ester of compound 2a exists in a racemic mixture with the S-2 enantiomer, compound 2b. Therefore, enzymes are capable of kinetic resolution to produce either the R-2 acid, compound 3a, or the R-2 ester, compound 2a, which can then be hydrolyzed to produce compound 3a, with a high enantiomeric excess (ee) being highly desirable. One method, alkylation of an Evans oxazolidone derivative, installs the desired R-2 chiral center in compound 3a with an ee of 86% relative to the undesired S-2 enantiomer of compound 3b. However, improved methods to produce compound 3a with increased ee relative to compound 3b are needed to improve yields.

[0097] Under industrial process conditions, the racemic ester substrate exists as a mixture of compounds 2a and 2b. According to Scheme 2, an improved carboxylesterase with stereoselectivity for compound 2a exhibits a high enantiomeric excess for the desired product, compound 3a, while leaving the substrate, compound 2b, unreacted. Therefore, this kinetic resolution reaction has a maximum yield of 50% due to the racemic substrate. The minor product enantiomer (compound 3b) is not exhibited. As a result, reactions using R-selective enzymes (E > 200) yield mostly the desired acid 3a and unreacted ester 2b at the end of the reaction. [ka]

[0098] The present invention provides engineered carboxylesterases or functional fragments thereof comprising a polypeptide sequence having at least 80%, 85%, 86%, 87%, 88%, 89%, 90%, 91%, 92%, 93%, 94%, 95%, 96%, 97%, 98%, or 99% or more sequence identity to SEQ ID NO:2, and comprising at least one substitution or set of substitutions within those polypeptide sequences, wherein the amino acid positions of the polypeptide sequences are numbered with reference to SEQ ID NO:2. In some embodiments, at least one substitution or set of substitutions in a polypeptide sequence is selected from the group consisting of: 3 / 4 / 6 / 9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229, 3 / 6 / 9 / 10 / 70 / 99, 3 / 8 / 9 / 10 / 11 / 13 / 70 / 82 / 107 / 229, 3 / 8 / 9 / 10 / 11 / 13 / 70 / 107, 3 / 8 / 9 / 10 / 11 / 70, 3 / 8 / 9 / 10 / 11 / 70 / 229, 3 / 8 / 9 / 10 / 13 / 70 / 82 / 107, 3 / 8 / 9 / 10 / 13 / 70 / 82 / 229, 3 / 8 / 9 / 10 / 70 / 82, 3 / 8 / 9 / 10 / 70 / 82 / 229, 3 / 8 / 9 / 10 / 70 / 229, 3 / 9 / 10 / 11 / 13 / 82, 3 / 9 / 10 / 11 / 70 / 82 / 107, 3 / 9 / 10 / 11 / 70 / 229, 3 / 9 / 10 / 70 / 82, 3 / 9 / 11, 3 / 9 / 11 / 70 / 82 / 180, 4 / 6 / 8 / 9 / 10 / 11 / 38 / 70 / 82 / 180 / 186 / 200 / 214 / 229, 4 / 6 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 6 / 9 / 10 / 11 / 38 / 70 / 82 / 180 / 186 / 200 / 214, 4 / 6 / 9 / 10 / 70 / 82 / 229, 4 / 8 / 9 / 10 / 11 / 13 / 70 / 82 / 107 / 229, 4 / 8 / 9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 8 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 186 / 200 / 214 / 229, 4 / 8 / 9 / 10 / 11 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 8 / 9 / 10 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229,4 / 9 / 10 / 11 / 36 / 65 / 70 / 82 / 180 / 186 / 200 / 214、4 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214、4 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214 / 229、4 / 9 / 10 / 11 / 70 / 82 / 180 / 200 / 214、6 / 8 / 9 / 10 / 38 / 70 / 82 / 180 / 200 / 214、6 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214 / 229、6 / 9 / 10 / 38 / 70 / 82 / 180 / 186 / 200 / 214 / 229、6 / 9 / 10 / 70 / 82 / 180 / 186 / 200 / 214 / 229、8 / 9 / 10、8 / 9 / 10 / 11 / 13 / 70、8 / 9 / 10 / 11 / 13 / 70 / 82、8 / 9 / 10 / 11 / 13 / 70 / 82 / 107 / 229、8 / 9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214、8 / 9 / 10 / 11 / 38 / 70 / 82 / 180 / 200 / 214 / 229、8 / 9 / 10 / 11 / 43 / 70 / 82 / 180 / 200 / 214、8 / 9 / 10 / 11 / 70、8 / 9 / 10 / 11 / 70 / 82 / 107 / 229、8 / 9 / 10 / 11 / 70 / 229、8 / 9 / 10 / 70、8 / 9 / 10 / 70 / 82 / 229、9 / 10、9 / 10 / 11 / 12 / 49 / 51 / 70 / 73 / 82 / 180 / 200 / 225、9 / 10 / 11 / 12 / 49 / 70 / 73 / 82 / 180、9 / 10 / 11 / 12 / 51 / 54 / 70 / 73 / 82 / 108 / 148 / 180 / 225、9 / 10 / 11 / 12 / 51 / 54 / 70 / 73 / 82 / 110 / 180、9 / 10 / 11 / 12 / 51 / 54 / 70 / 73 / 82 / 148 / 180 / 225、9 / 10 / 11 / 12 / 51 / 70 / 73 / 82 / 148 / 180、9 / 10 / 11 / 12 / 51 / 70 / 73 / 82 / 148 / 180 / 200 / 225、9 / 10 / 11 / 12 / 51 / 70 / 73 / 110 / 148 / 180、9 / 10 / 11 / 17 / 49 / 70 / 82 / 180 / 200、9 / 10 / 11 / 17 / 49 / 70 / 82 / 180 / 219、9 / 10 / 11 / 17 / 51 / 54 / 70 / 82 / 148 / 180 / 200、9 / 10 / 11 / 17 / 51 / 54 / 70 / 82 / 180、9 / 10 / 11 / 17 / 70 / 73 / 82 / 87 / 180 / 219、9 / 10 / 11 / 17 / 70 / 82 / 148 / 180 / 219、9 / 10 / 11 / 35 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 36 / 38 / 65 / 70 / 82 / 180 / 200 / 214 / 229、9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229、9 / 10 / 11 / 36 / 70 / 82 / 180 / 196 / 214、9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214 / 229、9 / 10 / 11 / 38 / 70 / 82 / 180 / 186 / 200 / 214、9 / 10 / 11 / 40 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 49 / 51 / 54 / 70 / 82 / 87 / 108 / 110 / 148 / 180 / 219、9 / 10 / 11 / 49 / 51 / 54 / 70 / 82 / 87 / 108 / 180、9 / 10 / 11 / 49 / 51 / 54 / 70 / 82 / 110 / 148 / 180、9 / 10 / 11 / 49 / 51 / 70 / 82 / 108 / 110 / 148 / 180、9 / 10 / 11 / 49 / 54 / 70 / 82 / 87 / 148 / 180、9 / 10 / 11 / 49 / 70 / 82 / 87 / 108 / 110 / 180 / 200、9 / 10 / 11 / 49 / 70 / 82 / 87 / 180、9 / 10 / 11 / 49 / 70 / 82 / 110 / 148 / 180 / 225、9 / 10 / 11 / 51 / 54 / 70 / 73 / 82 / 108 / 110 / 180、9 / 10 / 11 / 51 / 54 / 70 / 73 / 82 / 108 / 180 / 200 / 225、9 / 10 / 11 / 51 / 54 / 70 / 73 / 82 / 110 / 148 / 180、9 / 10 / 11 / 51 / 54 / 70 / 82 / 148 / 180、9 / 10 / 11 / 51 / 70 / 82 / 110 / 180 / 192 / 219、9 / 10 / 11 / 54 / 70 / 82 / 87 / 108 / 180、9 / 10 / 11 / 54 / 70 / 82 / 87 / 180 / 192、9 / 10 / 11 / 54 / 70 / 82 / 148 / 180 / 200、9 / 10 / 11 / 54 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 70、9 / 10 / 11 / 70 / 71 / 82 / 180 / 200 / 214、9 / 10 / 11 / 70 / 73 / 82 / 87 / 110 / 180、9 / 10 / 11 / 70 / 73 / 82 / 108 / 148 / 180、9 / 10 / 11 / 70 / 73 / 82 / 148 / 180、9 / 10 / 11 / 70 / 73 / 82 / 148 / 180 / 192 / 200、9 / 10 / 11 / 70 / 73 / 82 / 180 / 200 / 214、9 / 10 / 11 / 70 / 82、9 / 10 / 11 / 70 / 82 / 87 / 110 / 180 / 219、9 / 10 / 11 / 70 / 82 / 100 / 180 / 200 / 214、9 / 10 / 11 / 70 / 82 / 107、9 / 10 / 11 / 70 / 82 / 108 / 180 / 200 / 214、9 / 10 / 11 / 70 / 82 / 148 / 180、9 / 10 / 11 / 70 / 82 / 148 / 180 / 200 / 214、9 / 10 / 11 / 70 / 82 / 180、9 / 10 / 11 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 70 / 87 / 180 / 200 / 214、9 / 10 / 11 / 70 / 107、9 / 10 / 12 / 49 / 51 / 54 / 70 / 82 / 108 / 148 / 180 / 225、9 / 10 / 12 / 51 / 54 / 70 / 180 / 225、9 / 10 / 12 / 51 / 70 / 73 / 82 / 148 / 180 / 200、9 / 10 / 12 / 70 / 82 / 148 / 180 / 225、9 / 10 / 12 / 70 / 82 / 180 / 200 / 214、9 / 10 / 13 / 70、9 / 10 / 13 / 70 / 82、9 / 10 / 13 / 70 / 229、9 / 10 / 13 / 207、9 / 10 / 17、9 / 10 / 17 / 49 / 51 / 54 / 70 / 73 / 82 / 108 / 110 / 148 / 180 / 192 / 200 / 219、9 / 10 / 17 / 49 / 51 / 54 / 70 / 82 / 87 / 180 / 219、9 / 10 / 17 / 49 / 70 / 82 / 148 / 180、9 / 10 / 17 / 51 / 54 / 70 / 82 / 87 / 108 / 110 / 180 / 200、9 / 10 / 17 / 51 / 70 / 73 / 82 / 87 / 108 / 110 / 148 / 180 / 219、9 / 10 / 17 / 54 / 70 / 73 / 82 / 87 / 108 / 110 / 148 / 180 / 200、9 / 10 / 17 / 54 / 70 / 73 / 82 / 108 / 110 / 148 / 180、9 / 10 / 17 / 54 / 70 / 82 / 87 / 108 / 110 / 180、9 / 10 / 17 / 70 / 73 / 82 / 87 / 180 / 219、9 / 10 / 17 / 70 / 73 / 82 / 108 / 110 / 148 / 180 / 200、9 / 10 / 17 / 70 / 82 / 87 / 148 / 180、9 / 10 / 17 / 70 / 82 / 87 / 148 / 180 / 192 / 219、9 / 10 / 17 / 70 / 82 / 108 / 148 / 180、9 / 10 / 17 / 70 / 82 / 110 / 148 / 180、9 / 10 / 17 / 70 / 82 / 110 / 148 / 180 / 200、9 / 10 / 17 / 70 / 82 / 180 / 200 / 214、9 / 10 / 17 / 70 / 104 / 160 / 165、9 / 10 / 17 / 70 / 139 / 160 / 165、9 / 10 / 26、9 / 10 / 29 / 70、9 / 10 / 36 / 70 / 82 / 180 / 200 / 214、9 / 10 / 37、9 / 10 / 38 / 70 / 82 / 180 / 200 / 214、9 / 10 / 39、9 / 10 / 39 / 186、9 / 10 / 41、9 / 10 / 45 / 70、9 / 10 / 49 / 51 / 54 / 70 / 73 / 82 / 108 / 110 / 148 / 180 / 192、9 / 10 / 49 / 51 / 54 / 70 / 73 / 82 / 148 / 180、9 / 10 / 49 / 51 / 54 / 70 / 82 / 108 / 110 / 148 / 180 / 225、9 / 10 / 49 / 51 / 54 / 70 / 82 / 110 / 148 / 180、9 / 10 / 49 / 51 / 54 / 70 / 82 / 110 / 180、9 / 10 / 49 / 51 / 54 / 70 / 82 / 148 / 180、9 / 10 / 49 / 51 / 54 / 70 / 82 / 148 / 180 / 192、9 / 10 / 49 / 51 / 70 / 82 / 108 / 148 / 180 / 219、9 / 10 / 49 / 51 / 70 / 82 / 110 / 148 / 180、9 / 10 / 49 / 51 / 70 / 82 / 180 / 225、9 / 10 / 49 / 54 / 70 / 73 / 82 / 87 / 110 / 180、9 / 10 / 49 / 54 / 70 / 82 / 87 / 110 / 180、9 / 10 / 49 / 54 / 70 / 82 / 108 / 148 / 180 / 225、9 / 10 / 49 / 70 / 73 / 82 / 87 / 108 / 148 / 180、9 / 10 / 49 / 70 / 73 / 82 / 108 / 110 / 148 / 180 / 225、9 / 10 / 49 / 70 / 82 / 87 / 148 / 180、9 / 10 / 49 / 70 / 82 / 110 / 180 / 219、9 / 10 / 51 / 54 / 70 / 73 / 82 / 108 / 180、9 / 10 / 51 / 54 / 70 / 73 / 82 / 110 / 148 / 180、9 / 10 / 51 / 54 / 70 / 73 / 82 / 110 / 180、9 / 10 / 51 / 54 / 70 / 73 / 82 / 180 / 219、9 / 10 / 51 / 54 / 70 / 73 / 82 / 180 / 225、9 / 10 / 51 / 54 / 70 / 82 / 87 / 180、9 / 10 / 51 / 54 / 70 / 82 / 148 / 180、9 / 10 / 51 / 54 / 70 / 82 / 180、9 / 10 / 51 / 54 / 70 / 82 / 180 / 200、9 / 10 / 51 / 70 / 82 / 108 / 180、9 / 10 / 51 / 70 / 82 / 110 / 180 / 200、9 / 10 / 51 / 70 / 82 / 180 / 219、9 / 10 / 54 / 70 / 73 / 82 / 108 / 148 / 180 / 192、9 / 10 / 54 / 70 / 82 / 87 / 108 / 180 / 200、9 / 10 / 54 / 70 / 82 / 180、9 / 10 / 62、9 / 10 / 70、9 / 10 / 70 / 73 / 82 / 87 / 108 / 110 / 180、9 / 10 / 70、 / 73 / 82 / 87 / 180 / 192 / 219, 9 / 10 / 70 / 73 / 82 / 87 / 180 / 200, 9 / 10 / 70 / 73 / 82 / 108 / 110 / 148 / 180, 9 / 10 / 70 / 73 / 82 / 108 / 110 / 180 / 200 / 219, 9 / 10 / 70 / 73 / 8 2 / 108 / 148 / 180, 9 / 10 / 70 / 73 / 82 / 108 / 148 / 180 / 192, 9 / 10 / 70 / 73 / 82 / 108 / 148 / 180 / 192 / 219, 9 / 10 / 70 / 73 / 82 / 108 / 180, 9 / 10 / 70 / 73 / 82 / 148 / 180, 9 / 10 / 70 / 73 / 82 / 148 / 180 / 200, 9 / 10 / 70 / 73 / 82 / 180 / 192, 9 / 10 / 70 / 73 / 82 / 180 / 192 / 219, 9 / 10 / 70 / 82, 9 / 10 / 70 / 82 / 87 / 108 / 110 / 148 / 180 / 192 / 219, 9 / 10 / 70 / 82 / 87 / 108 / 110 / 180, 9 / 10 / 70 / 82 / 87 / 108 / 110 / 180 / 192, 9 / 10 / 70 / 82 / 87 / 180, 9 / 10 / 70 / 82 / 107, 9 / 10 / 70 / 82 / 107 / 229, 9 / 10 / 70 / 82 / 108 / 110 / 180 / 219, 9 / 10 / 70 / 82 / 108 / 180, 9 / 10 / 70 / 82 / 110 / 148 / 180, 9 / 10 / 70 / 82 / 110 / 180 / 219, 9 / 10 / 70 / 82 / 148 / 180, 9 / 10 / 70 / 82 / 148 / 180 / 200, 9 / 10 / 70 / 82 / 148 / 180 / 200 / 219, 9 / 10 / 70 / 82 / 180, 9 / 10 / 70 / 82 / 180 / 192 / 219, 9 / 10 / 70 / 82 / 180 / 200 / 214, 9 / 10 / 70 / 82 / 229, 9 / 10 / 70 / 92, 9 / 10 / 70 / 99, 9 / 10 / 7 and wherein the amino acid positions of the polypeptide sequence are comprised at a position selected from: 0 / 99 / 229, 9 / 10 / 70 / 107 / 229, 9 / 10 / 70 / 156, 9 / 10 / 70 / 165, 9 / 10 / 70 / 229, 9 / 10 / 88, 9 / 10 / 90, 9 / 10 / 96, 9 / 10 / 107, 9 / 10 / 110, 9 / 10 / 111, 9 / 10 / 112, 9 / 10 / 133, 9 / 10 / 178, 9 / 10 / 185, 9 / 10 / 186, 9 / 10 / 196, 9 / 10 / 211, 9 / 10 / 226, 11 / 24, 11 / 24 / 219, and 11 / 36 / 206 / 208.In some additional embodiments, at least one substitution or set of substitutions in the polypeptide sequence is selected from the group consisting of 3R / 4R / 6P / 9C / 10I / 11I / 36N / 38Y / 70W / 82Q / 180L / 200A / 214W / 229M, 3R / 6P / 9C / 10I / 70W / 99R, 3R / 8G / 9C / 10I / 11T / 13E / 70W / 82Q / 107F / 229M, 3R / 8G / 9C / 10I / 11T / 13E / 70W / 107F, 3R / 8G / 9C / 10I / 11T / 70W, 3R / 8G / 9C / 10I / 11T / 70W / 229M, 3R / 8G / 9C / 10I / 13E / 70W / 82Q / 107F, 3R / 8G / 9C / 10I / 13E / 70W / 82Q / 229M, 3R / 8G / 9C / 10I / 70W / 82Q, 3R / 8G / 9C / 10I / 70W / 82Q / 229M, 3R / 8G / 9C / 10I / 70W / 229M, 3R / 9C / 10I / 11I / 13E / 82Q, 3R / 9C / 10I / 11T / 70W / 82Q / 107F, 3R / 9C / 10I / 11T / 70W / 229M, 3R / 9C / 10I / 70W / 82Q, 3R / 9C / 11I, 3R / 9C / 11I / 70W / 82Q / 180L, 4R / 6P / 8G / 9C / 10I / 11T / 38Y / 70W / 82Q / 180L / 186F / 200A / 214W / 229M, 4R / 6P / 9C / 10I / 11I / 36N / 70W / 82Q / 180L / 200A / 214W / 229M, 4R / 6P / 9C / 10I / 11I / 38Y / 70W / 82Q / 180L / 186F / 200A / 214W, 4R / 6P / 9C / 10I / 70W / 82Q / 229M, 4R / 8G / 9C / 10I / 11T / 13E / 70W / 82Q / 107F / 229M, 4R / 8G / 9C / 10 I / 11T / 36N / 38Y / 70W / 82Q / 180L / 200A / 214W / 229M, 4R / 8G / 9C / 10I / 11T / 3 6N / 70W / 82Q / 180L / 186F / 200A / 214W / 229M, 4R / 8G / 9C / 10I / 11T / 70W / 82Q / 180L / 200A / 214W / 229M, 4R / 8G / 9C / 10I / 36N / 38Y / 70W / 82Q / 180L / 200A / 214W / 229M, 4R / 9C / 10I / 11I / 36N / 38Y / 70W / 82Q / 180L / 200A / 214W / 229M,<h2 style=";text-align:left;direction:ltr">4R / 9C / 10I / 11T / 36N / 65I / 70W / 82Q / 180L / 186F / 200A / 214W、4R / 9C / 10I / 11T / 36N / 70W / 82Q / 180L / 200A / 214W、4R / 9C / 10I / 11T / 36N / 70W / 82Q / 180 L / 200A / 214W / 229M、4R / 9C / 10I / 11T / 70W / 82Q / 180L / 200A / 214W、6P / 8G / 9C / 10I / 38Y / 70W / 82Q / 180L / 200A / 214W、6P / 9C / 10I / 11T / 36N / 70W / 82Q / 180L / 200A / 214W / 229M、6P / 9C / 10I / 38Y / 70W / 82Q / 180L / 186F / 200A / 214 W / 229M、6P / 9C / 10I / 70W / 82Q / 180L / 186F / 200A / 214W / 229M、8A / 9C / 10I、 8G / 9C / 10I / 11T / 13E / 70W、8G / 9C / 10I / 11T / 13E / 70W / 82Q、8G / 9C / 10I / 11 T / 13E / 70W / 82Q / 107F / 229M、8G / 9C / 10I / 11T / 36N / 38Y / 70W / 82Q / 180L / 20 0A / 214W、8G / 9C / 10I / 11T / 38Y / 70W / 82Q / 180L / 200A / 214W / 229M、8G / 9C / 10I / 11T / 43I / 70W / 82Q / 180L / 200A / 214W、8G / 9C / 10I / 11T / 70W、8G / 9C / 1 0I / 11T / 70W / 82Q / 107F / 229M、8G / 9C / 10I / 11T / 70W / 229M、8G / 9C / 10I / 70W、8G / 9C / 10I / 70W / 82Q / 229M、9A / 10I / 70W / 82Q / 180L / 200A / 214W、9C / 10I 、9C / 10I / 11E / 12P / 51D / 70W / 73M / 110M / 148L / 180L、9C / 10I / 11E / 17C / 70 W / 82Q / 148L / 180L / 219H、9C / 10I / 11E / 17H / 51D / 54S / 70W / 82Q / 180L、9C / 10I / 11E / 17H / 70W / 73M / 82Q / 87P / 180L / 219H、9C / 10I / 11E / 17V / 49S / 70W / 82Q / 180L / 200H、9C / 10I / 11E / 49S / 51D / 54S / 70W / 82A / 110M / 148L / 180L、9C / 10I / 11E / 49S / 51D / 54S / 70W / 82Q / 87P / 108H / 110M / 148L / 180L / 219H、9C / 10I / 11E / 49S / 51D / 54S / 70W / 82Q / 87P / 108H / 180L、9C / 10I / 11E / 49S / 51D / 70W / 82Q / 108H / 110M / 148L / 180L、9C / 10I / 11E / 49S / 54S / 70W / 82Q / 87P / 148L / 180L、9C / 10I / 11E / 49S / 70W / 82Q / 87P / 108H / 110M / 180L / 200H、9C / 10I / 11E / 49S / 70W / 82Q / 87P / 180L、9C / 10I / 11E / 49S / 70W / 82Q / 110M / 148L / 180L / 225S、9C / 10I / 11E / 51D / 54S / 70W / 82Q / 148L / 180L、9C / 10I / 11E / 54S / 70W / 82Q / 87P / 180L / 192M、9C / 10I / 11E / 54S / 70W / 82Q / 148L / 180L / 200H、9C / 10I / 11E / 70W / 73L / 82Q / 108H / 148L / 180L、9C / 10I / 11E / 70W / 73L / 82Q / 148L / 180L、9C / 10I / 11E / 70W / 73M / 82Q / 87P / 110M / 180L、9C / 10I / 11E / 70W / 73M / 82Q / 148L / 180L、9C / 10I / 11E / 70W / 73M / 82Q / 148L / 180L / 192M / 200H、9C / 10I / 11E / 70W / 82Q / 87P / 110M / 180L / 219H、9C / 10I / 11E / 70W / 82Q / 148L / 180L、9C / 10I / 11E / 70W / 82Q / 180L、9C / 10I / 11E / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11G / 17C / 49S / 70W / 82Q / 180L / 219H、9C / 10I / 11G / 17V / 51D / 54S / 70W / 82Q / 148L / 180L / 200H、9C / 10I / 11G / 51D / 54S / 70W / 73L / 82Q / 108H / 110M / 180L、9C / 10I / 11G / 51D / 70W / 82Q / 110M / 180L / 192M / 219H、9C / 10I / 11G / 54S / 70W / 82Q / 87P / 108H / 180L、9C / 10I / 11G / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 35G / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 35Q / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 35S / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 36I / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 36N / 38Y / 65I / 70W / 82Q / 180L / 200A / 214W / 229M、9C / 10I / 11I / 36N / 38Y / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 36N / 38Y / 70W / 82Q / 180L / 200A / 214W / 229M、9C / 10I / 11I / 36N / 70W / 82Q / 180L / 196E / 214W、9C / 10I / 11I / 36S / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 40V / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 54D / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 54P / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 54S / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 70V / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 70W、9C / 10I / 11I / 70W / 71H / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 70W / 71R / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 70W / 73L / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 70W / 73M / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 70W / 73R / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 70W / 82A / 180L / 200A / 214W、9C / 10I / 11I / 70W / 82Q / 100S / 180L / 200A / 214W、9C / 10I / 11I / 70W / 82Q / 108R / 180L / 200A / 214W、9C / 10I / 11I / 70W / 82Q / 148L / 180L / 200A / 214W、9C / 10I / 11I / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 70W / 87V / 180L / 200A / 214W、9C / 10I / 11T / 36N / 38Y / 70W / 82Q / 180L / 200A / 214W / 229M、9C / 10I / 11T / 36N / 70W / 82Q / 180L / 200A / 214W / 229M、9C / 10I / 11T / 38Y / 70W / 82Q / 180L / 186F / 200A / 214W、9C / 10I / 11T / 70W、9C / 10I / 11T / 70W / 82Q、9C / 10I / 11T / 70W / 82Q / 107F、9C / 10I / 11T / 70W / 107F、9C / 10I / 12P / 49S / 51D / 54S / 70W、 / 82Q / 108H / 148L / 180L / 225S、9C / 10I / 12P / 51D / 70W / 73L / 82Q / 148L / 180L / 200H、9C / 10I / 12P / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 12V / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 13E / 70W、9C / 10I / 13E / 70W / 82Q、9C / 10I / 13E / 70W / 229M、9C / 10I / 13E / 207Q、9C / 10I / 17A / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 17C / 51D / 54S / 70W / 82Q / 87P / 108H / 110M / 180L / 200H、9C / 10I / 17C / 70W / 73L / 82Q / 108H / 110M / 148L / 180L / 200H、9C / 10I / 17C / 70W / 82Q / 87P / 148L / 180L / 192M / 219H、9C / 10I / 17C / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 17H / 49S / 51D / 54S / 70W / 73M / 82Q / 108H / 110M / 148L / 180L / 192M / 200H / 219H、9C / 10I / 17H / 54S / 70W / 82Q / 87P / 108H / 110M / 180L、9C / 10I / 17H / 70W / 82Q / 110M / 148L / 180L、9C / 10I / 17H / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 17Q / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 17S / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 17V / 49S / 51D / 54S / 70W / 82Q / 87P / 180L / 219H、9C / 10I / 17V / 49S / 70W / 82Q / 148L / 180L、9C / 10I / 17V / 51D / 70W / 73M / 82Q / 87P / 108H / 110M / 148L / 180L / 219H、9C / 10I / 17V / 54S / 70W / 73L / 82Q / 87P / 108H / 110M / 148L / 180L / 200H、9C / 10I / 17V / 54S / 70W / 73L / 82Q / 108H / 110M / 148L / 180L、9C / 10I / 17V / 70W / 73M / 82Q / 87P / 180L / 219H、9C / 10I / 17V / 70W / 82Q / 87P / 148L / 180L、9C / 10I / 17V / 70W / 82Q / 108H / 148L / 180L、9C / 10I / 17V / 70W / 82Q / 110M / 148L / 180L / 200H、9C / 10I / 17V / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 17V / 70W / 104M / 160E / 165Q、9C / 10I / 17V / 70W / 139H / 160G / 165Q、9C / 10I / 17W、9C / 10I / 26G、9C / 10I / 26T、9C / 10I / 29G / 70W、9C / 10I / 36N / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 37P、9C / 10I / 38Y / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 39A / 186T、9C / 10I / 39W、9C / 10I / 41F、9C / 10I / 41G、9C / 10I / 41S、9C / 10I / 45R / 70W、9C / 10I / 45T / 70W、9C / 10I / 49S / 51D / 54S / 70W / 73M / 82Q / 148L / 180L、9C / 10I / 49S / 51D / 54S / 70W / 82G / 108H / 110M / 148L / 180L / 225S、9C / 10I / 49S / 51D / 54S / 70W / 82Q / 110M / 148L / 180L、9C / 10I / 49S / 51D / 54S / 70W / 82Q / 110M / 180L、9C / 10I / 49S / 51D / 54S / 70W / 82Q / 148L / 180L、9C / 10I / 49S / 51D / 54S / 70W / 82Q / 148L / 180L / 192M、9C / 10I / 49S / 51D / 70W / 82Q / 108H / 148L / 180L / 219H、9C / 10I / 49S / 51D / 70W / 82Q / 110M / 148L / 180L、9C / 10I / 49S / 51D / 70W / 82Q / 180L / 225S、9C / 10I / 49S / 54S / 70W / 73L / 82Q / 87P / 110M / 180L、9C / 10I / 49S / 54S / 70W / 82Q / 87P / 110M / 180L、9C / 10I / 49S / 54S / 70W / 82Q / 108H / 148L / 180L / 225S、9C / 10I / 49S / 70W / 73L / 82G / 108H / 110M / 148L / 180L / 225S、9C / 10I / 49S / 70W / 73L / 82Q / 87P / 108H / 148L / 180L、9C / 10I / 49S / 70W / 82Q / 87P / 148L / 180L、9C / 10I / 49S / 70W / 82Q / 110M / 180L / 219H、9C / 10I / 51D / 54S / 70W / 73L / 82Q / 108H / 180L、9C / 10I / 51D / 54S / 70W / 73L / 82Q / 110M / 148L / 180L、9C / 10I / 51D / 54S / 70W / 73M / 82Q / 110M / 180L、9C / 10I / 51D / 54S / 70W / 73M / 82Q / 180L / 219H、9C / 10I / 51D / 54S / 70W / 73M / 82Q / 180L / 225S、9C / 10I / 51D / 54S / 70W / 82Q / 87P / 180L、9C / 10I / 51D / 54S / 70W / 82Q / 148L / 180L、9C / 10I / 51D / 54S / 70W / 82Q / 180L、9C / 10I / 51D / 54S / 70W / 82Q / 180L / 200H、9C / 10I / 51D / 70W / 82Q / 108H / 180L、9C / 10I / 51D / 70W / 82Q / 110M / 180L / 200H、9C / 10I / 51D / 70W / 82Q / 180L / 219H、9C / 10I / 54S / 70W / 73M / 82Q / 108H / 148L / 180L / 192M、9C / 10I / 54S / 70W / 82G / 180L、9C / 10I / 54S / 70W / 82Q / 87P / 108H / 180L / 200H、9C / 10I / 54S / 70W / 82Q / 180L、9C / 10I / 62G、9C / 10I / 70R、9C / 10I / 70W、9C / 10I / 70W / 73L / 82Q / 87P / 108H / 110M / 180L、9C / 10I / 70W / 73L / 82Q / 108H / 148L / 180L、9C / 10I / 70W / 73L / 82Q / 108H / 148L / 180L / 192M、9C / 10I / 70W / 73L / 82Q / 108H / 180L、9C / 10I / 70W / 73L / 82Q / 148L / 180L / 200H、9C / 10I / 70W / 73L / 82Q / 180L / 192M、9C / 10I / 70W / 73L / 82Q / 180L / 192M / 219H、9C / 10I / 70W / 73M / 82Q / 87P / 180L / 192M / 219H、9C / 10I / 70W / 73M / 82Q / 87P / 180L / 200H、9C / 10I / 70W / 73M / 82Q / 108H / 110M / 180L / 200H / 219H、9C / 10I / 70W / 73M / 82Q / 108H / 148L / 180L、9C / 10I / 70W / 73M / 82Q / 108H / 148L / 180L / 192M / 219H、9C / 10I / 70W / 73M / 82Q / 148L / 180L、9C / 10I / 70W / 82Q、9C / 10I / 70W / 82Q / 87P / 108H / 110M / 148L / 180L / 192M / 219H、9C / 10I / 70W / 82Q / 87P / 108H / 110M / 180L、9C / 10I / 70W / 82Q / 87P / 108H / 110M / 180L / 192M、9C / 10I / 70W / 82Q / 87P / 180L、9C / 10I / 70W / 82Q / 107F、9C / 10I / 70W / 82Q / 107F / 229M、9C / 10I / 70W / 82Q / 108H / 110M / 180L / 219H、9C / 10I / 70W / 82Q / 108H / 180L、9C / 10I / 70W / 82Q / 110M / 148L / 180L、9C / 10I / 70W / 82Q / 110M / 180L / 219H、9C / 10I / 70W / 82Q / 148L / 180L、9C / 10I / 70W / 82Q / 148L / 180L / 200H、9C / 10I / 70W / 82Q / 148L / 180L / 200H / 219H、9C / 10I / 70W / 82Q / 180L、9C / 10I / 70W / 82Q / 180L / 192M / 219H、9C / 10I / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 70W / 82Q / 229M、9C / 10I / 70W / 92R、9C / 10I / 70W / 99R、9C / 10I / 70W / 99R / 229M、9C / 10I / 70W / 107F / 229M、9C / 10I / 70W / 156E、9C / 10I / 70W / 165Q、9C / 10I / 70W / 229M、9C / 10I / 88G、9C / 10I / 90S、9C / 10I / 96F、9C / 10I / 107F、9C / 10I / 110V、9C / 10I / 111M、9C / 10I / 112G、9C / 10I / 133E、9C / 10I / 133W、9C / 10I / 178E、9C / 10I / 185E、9C / 10I / 186Q、9C / 10I / 196Q、9C / 10I / 196R、9C / 10I / 196S、9C / 10I / 211E、9C / 10I / 226E、9C / 10I / 226W、9R / 10I / 11E / 12P / 51D / 54S / 70W / 73L / 82Q / 110M / 180L、9R / 10I / 11E / 12P / 51D / 70W / 73M / 82Q / 148L / 180L / 200H / 225S, 9R / 10I / 11E / 12S / 51D / 54S / 70W / 73M / 82Q / 148L / 180L / 225S, 9R / 10I / 54S / 70W / 82Q / 180L, 9R / 10I / 70W / 82Q / 180L / 200A / 214W, 9T / 10I / 11E / 12N / 4 9S / 70W / 73M / 82Q / 180L, 9T / 10I / 11E / 12P / 51D / 70W / 73L / 82Q / 148L / 180L, 9T / 10I / 11G / 12S / 49S / 51D / 7 0W / 73M / 82Q / 180L / 200H / 225S, 9T / 10I / 11G / 51D / 54S / 70W / 73L / 82Q / 108H / 180L / 200H / 225S, 9T / 10I / 11 G / 51D / 54S / 70W / 73L / 82Q / 110M / 148L / 180L, 9T / 10I / 11R / 12P / 51D / 54S / 70W / 73L / 82Q / 108H / 148L / 180 L / 225S, 9T / 10I / 12P / 70W / 82A / 148L / 180L / 225S, 9T / 10I / 12S / 51D / 54S / 70W / 180L / 225S, 9T / 10I / 49S / 5 and 11L / 36S / 206F / 208A, and the amino acid positions of the polypeptide sequence are numbered with reference to SEQ ID NO:2. In some further embodiments, at least one substitution or set of substitutions in the polypeptide sequence is selected from the group consisting of S3R / P4R / T6P / W9C / M10I / M11I / D36N / S38Y / N70W / V82Q / P180L / T200A / V214W / T229M, S3R / T6P / W9C / M10I / N70W / V99R, S3R / R8G / W9C / M10I / M11T / D13E / N70W / V82Q / A107F / T229M, S3R / R8G / W9C / M10I / M11T / D13E / N70W / A107F, S3R / R8G / W9C / M10I / M11T / N70W, S3R / R8G / W9C / M10I / M11T / N70W / T229M,<h2 style=";text-align:left;direction:ltr">S3R / R8G / W9C / M10I / D13E / N70W / V82Q / A107F、S3R / R8G / W9C / M10I / D13E / N70W / V82Q / T229M、S3R / R8G / W9C / M10I / N70W / V82Q、S3R / R8G / W9C / M10I / N70W / V82Q / T229M、S3R / R8G / W9C / M10I / N70W / T229M、S3R / W9C / M10I / M11I / D13E / V82Q、S3R / W9C / M10I / M11T / N70W / V82Q / A107F、S3R、<h2 style=";text-align:left;direction:ltr"> <h2 style=";text-align:left;direction:ltr"> <h2 style=";text-align:left;direction:ltr"> <h2 style=";text-align:left;direction:ltr"> / W9C / M10I / M11T / N70W / T229M、S3R / W9C / M10I / N70W / V82Q、S3R / W9C / M11I、S3R / W9C / M11I / N70W / V82Q / P180L、P4R / T6P / R8G / W9C / M10I / M11T / S38Y / N70 W / V82Q / P180L / A186F / T200A / V214W / T229M、P4R / T6P / W9C / M10I / M11I / D36 N / N70W / V82Q / P180L / T200A / V214W / T229M、P4R / T6P / W9C / M10I / M11I / S38Y / N70W / V82Q / P180L / A186F / T200A / V214W、P4R / T6P / W9C / M10I / N70W / V82Q / T 229M、P4R / R8G / W9C / M10I / M11T / D13E / N70W / V82Q / A107F / T229M、P4R / R8G / W 9C / M10I / M11T / D36N / S38Y / N70W / V82Q / P180L / T200A / V214W / T229M、P4R / R 8G / W9C / M10I / M11T / D36N / N70W / V82Q / P180L / A186F / T200A / V214W / T229M、P 4R / R8G / W9C / M10I / M11T / N70W / V82Q / P180L / T200A / V214W / T229M、P4R / R8G / W9C / M10I / D36N / S38Y / N70W / V82Q / P180L / T200A / V214W / T229M、P4R / W9C / M 10I / M11I / D36N / S38Y / N70W / V82Q / P180L / T200A / V214W / T229M、P4R / W9C / M 10I / M11T / D36N / R65I / N70W / V82Q / P180L / A186F / T200A / V214W、P4R / W9C / M1 0I / M11T / D36N / N70W / V82Q / P180L / T200A / V214W、P4R / W9C / M10I / M11T / D36 N / N70W / V82Q / P180L / T200A / V214W / T229M、P4R / W9C / M10I / M11T / N70W / V82Q / P180L / T200A / V214W、T6P / R8G / W9C / M10I / S38Y / N70W / V82Q / P180L / T200A / V214W、T6P / W9C / M10I / M11T / D36N / N70W / V82Q / P180L / T200A / V214W / T229M、T6P / W9C / M10I / S38Y / N70W / V82Q / P180L / A186F / T200A / V214W / T229M、T6P / W9C / M10I / N70W / V82Q / P180L / A186F / T200A / V214W / T229M、R8A / W9C / M10I、R8G / W9C / M10I / M11T / D13E / N70W、R8G / W9C / M10I / M11T / D13E / N70W / V82Q、R8G / W9C / M10I / M11T / D13E / N70W / V82Q / A107F / T229M、R8G / W9C / M10I / M11T / D36N / S38Y / N70W / V82Q / P180L / T200A / V214W、R8G / W9C / M10I / M11T / S38Y / N70W / V82Q / P180L / T200A / V214W / T229M、R8G / W9C / M10I / M11T / M43I / N70W / V82Q / P180L / T200A / V214W、R8G / W9C / M10I / M11T / N70W、R8G / W9C / M10I / M11T / N70W / V82Q / A107F / T229M、R8G / W9C / M10I / M11T / N70W / T229M、R8G / W9C / M10I / N70W、R8G / W9C / M10I / N70W / V82Q / T229M、W9A / M10I / N70W / V82Q / P180L / T200A / V214W、W9C / M10I、W9C / M10I / M11E / L12P / Q51D / N70W / V73M / Q110M / M148L / P180L、W9C / M10I / M11E / R17C / N70W / V82Q / M148L / P180L / A219H、W9C / M10I / M11E / R17H / Q51D / A54S / N70W / V82Q / P180L、W9C / M10I / M11E / R17H / N70W / V73M / V82Q / A87P / P180L / A219H、W9C / M10I / M11E / R17V / R49S / N70W / V82Q / P180L / T200H、W9C / M10I / M11E / R49S / Q51D / A54S / N70W / V82A / Q110M / M148L / P180L、W9C / M10I / M11E / R49S / Q51D / A54S / N70W / V82Q / A87P / N108H / Q110M / M148L / P180L / A219H、W9C / M10I / M11E / R49S / Q51D / A54S / N70W / V82Q / A87P / N108H / P180L、W9C / M10I / M11E / R49S / Q51D / N70W / V82Q / N108H / Q110M / M148L / P180L、W9C / M10I / M11E / R49S / A54S / N70W / V82Q / A87P / M148L / P180L、W9C / M10I / M11E / R49S / N70W / V82Q / A87P / N108H / Q110M / P180L / T200H、W9C / M10I / M11E / R49S / N70W / V82Q / A87P / P180L、W9C / M10I / M11E / R49S / N70W / V82Q / Q110M / M148L / P180L / Q225S、W9C / M10I / M11E / Q51D / A54S / N70W / V82Q / M148L / P180L、W9C / M10I / M11E / A54S / N70W / V82Q / A87P / P180L / Q192M、W9C / M10I / M11E / A54S / N70W / V82Q / M148L / P180L / T200H、W9C / M10I / M11E / N70W / V73L / V82Q / N108H / M148L / P180L、W9C / M10I / M11E / N70W / V73L / V82Q / M148L / P180L、W9C / M10I / M11E / N70W / V73M / V82Q / A87P / Q110M / P180L、W9C / M10I / M11E / N70W / V73M / V82Q / M148L / P180L、W9C / M10I / M11E / N70W / V73M / V82Q / M148L / P180L / Q192M / T200H、W9C / M10I / M11E / N70W / V82Q / A87P / Q110M / P180L / A219H、W9C / M10I / M11E / N70W / V82Q / M148L / P180L、W9C / M10I / M11E / N70W / V82Q / P180L、W9C / M10I / M11E / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11G / R17C / R49S / N70W / V82Q / P180L / A219H、W9C / M10I / M11G / R17V / Q51D / A54S / N70W / V82Q / M148L / P180L / T200H、W9C / M10I / M11G / Q51D / A54S / N70W / V73L / V82Q / N108H / Q110M / P180L、W9C / M10I / M11G / Q51D / N70W / V82Q / Q110M / P180L / Q192M / A219H、W9C / M10I / M11G / A54S / N70W / V82Q / A87P / N108H / P180L、W9C / M10I / M11G / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / A35G / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / A35Q / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / A35S / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / D36I / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / D36N / S38Y / R65I / N70W / V82Q / P180L / T200A / V214W / T229M、W9C / M10I / M11I / D36N / S38Y / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / D36N / S38Y / N70W / V82Q / P180L / T200A / V214W / T229M、W9C / M10I / M11I / D36N / N70W / V82Q / P180L / A196E / V214W、W9C / M10I / M11I / D36S / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / F40V / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / A54D / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / A54P / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / A54S / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / N70V / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / N70W、W9C / M10I / M11I / N70W / N71H / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / N70W / N71R / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / N70W / V73L / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / N70W / V73M / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / N70W / V73R / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / N70W / V82A / P180L / T200A / V214W、W9C / M10I / M11I / N70W / V82Q / A100S / P180L / T200A / V214W、W9C / M10I / M11I / N70W / V82Q / N108R / P180L / T200A / V214W、W9C / M10I / M11I / N70W / V82Q / M148L / P180L / T200A / V214W、W9C / M10I / M11I / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / N70W / A87V / P180L / T200A / V214W、W9C / M10I / M11T / D36N / S38Y / N70W / V82Q / P180L / T200A / V214W / T229M、W9C / M10I / M11T / D36N / N70W / V82Q / P180L / T200A / V214W / T229M、W9C / M10I / M11T / S38Y / N70W / V82Q / P180L / A186F / T200A / V214W、W9C / M10I / M11T / N70W、W9C / M10I / M11T / N70W / V82Q、W9C / M10I / M11T / N70W / V82Q / A107F、W9C / M10I / M11T / N70W / A107F、W9C / M10I / L12P / R49S / Q51D / A54S / N70W / V82Q / N108H / M148L / P180L / Q225S、W9C / M10I / L12P / Q51D / N70W / V73L / V82Q / M148L / P180L / T200H、W9C / M10I / L12P / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / L12V / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / D13E / N70W、W9C / M10I / D13E / N70W / V82Q、W9C / M10I / D13E / N70W / T229M、W9C / M10I / D13E / P207Q、W9C / M10I / R17A / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / R17C / Q51D / A54S / N70W / V82Q / A87P / N108H / Q110M / P180L / T200H、W9C / M10I / R17C / N70W / V73L / V82Q / N108H / Q110M / M148L / P180L / T200H、W9C / M10I / R17C / N70W / V82Q / A87P / M148L / P180L / Q192M / A219H、W9C / M10I / R17C / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / R17H、 / R49S / Q51D / A54S / N70W / V73M / V82Q / N108H / Q110M / M148L / P180L / Q192M / T200H / A219H、W9C / M10I / R17H / A54S / N70W / V82Q / A87P / N108H / Q110M / P180L、W9C / M10I / R17H / N70W / V82Q / Q110M / M148L / P180L、W9C / M10I / R17H / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / R17Q / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / R17S / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / R17V / R49S / Q51D / A54S / N70W / V82Q / A87P / P180L / A219H、W9C / M10I / R17V / R49S / N70W / V82Q / M148L / P180L、W9C / M10I / R17V / Q51D / N70W / V73M / V82Q / A87P / N108H / Q110M / M148L / P180L / A219H、W9C / M10I / R17V / A54S / N70W / V73L / V82Q / A87P / N108H / Q110M / M148L / P180L / T200H、W9C / M10I / R17V / A54S / N70W / V73L / V82Q / N108H / Q110M / M148L / P180L、W9C / M10I / R17V / N70W / V73M / V82Q / A87P / P180L / A219H、W9C / M10I / R17V / N70W / V82Q / A87P / M148L / P180L、W9C / M10I / R17V / N70W / V82Q / N108H / M148L / P180L、W9C / M10I / R17V / N70W / V82Q / Q110M / M148L / P180L / T200H、W9C / M10I / R17V / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / R17V / N70W / A104M / S160E / G165Q、W9C / M10I / R17V / N70W / R139H / S160G / G165Q、W9C / M10I / R17W、W9C / M10I / A26G、W9C / M10I / A26T、W9C / M10I / W29G / N70W、W9C / M10I / D36N / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / G37P、W9C / M10I / S38Y / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / D39A / A186T、W9C / M10I / D39W、W9C / M10I / A41F、W9C / M10I / A41G、W9C / M10I / A41S、W9C / M10I / P45R / N70W、W9C / M10I / P45T / N70W、W9C / M10I / R49S / Q51D / A54S / N70W / V73M / V82Q / M148L / P180L、W9C / M10I / R49S / Q51D / A54S / N70W / V82G / N108H / Q110M / M148L / P180L / Q225S、W9C / M10I / R49S / Q51D / A54S / N70W / V82Q / Q110M / M148L / P180L、W9C / M10I / R49S / Q51D / A54S / N70W / V82Q / Q110M / P180L、W9C / M10I / R49S / Q51D / A54S / N70W / V82Q / M148L / P180L、W9C / M10I / R49S / Q51D / A54S / N70W / V82Q / M148L / P180L / Q192M、W9C / M10I / R49S / Q51D / N70W / V82Q / N108H / M148L / P180L / A219H、W9C / M10I / R49S / Q51D / N70W / V82Q / Q110M / M148L / P180L、W9C / M10I / R49S / Q51D / N70W / V82Q / P180L / Q225S、W9C / M10I / R49S / A54S / N70W / V73L / V82Q / A87P / Q110M / P180L、W9C / M10I / R49S / A54S / N70W / V82Q / A87P / Q110M / P180L、W9C / M10I / R49S / A54S / N70W / V82Q / N108H / M148L / P180L / Q225S、W9C / M10I / R49S / N70W / V73L / V82G / N108H / Q110M / M148L / P180L / Q225S、W9C / M10I / R49S / N70W / V73L / V82Q / A87P / N108H / M148L / P180L、W9C / M10I / R49S / N70W / V82Q / A87P / M148L / P180L、W9C / M10I / R49S / N70W / V82Q / Q110M / P180L / A219H、W9C / M10I / Q51D / A54S / N70W / V73L / V82Q / N108H / P180L、W9C / M10I / Q51D / A54S / N70W / V73L / V82Q / Q110M / M148L / P180L、W9C / M10I / Q51D / A54S / N70W / V73M / V82Q / Q110M / P180L、W9C / M10I / Q51D / A54S / N70W / V73M / V82Q / P180L / A219H、W9C / M10I / Q51D / A54S / N70W / V73M / V82Q / P180L / Q225S、W9C / M10I / Q51D / A54S / N70W / V82Q / A87P / P180L、W9C / M10I / Q51D / A54S / N70W / V82Q / M148L / P180L、W9C / M10I / Q51D / A54S / N70W / V82Q / P180L、W9C / M10I / Q51D / A54S / N70W / V82Q / P180L / T200H、W9C / M10I / Q51D / N70W / V82Q / N108H / P180L、W9C / M10I / Q51D / N70W / V82Q / Q110M / P180L / T200H、W9C / M10I / Q51D / N70W / V82Q / P180L / A219H、W9C / M10I / A54S / N70W / V73M / V82Q / N108H / M148L / P180L / Q192M、W9C / M10I / A54S / N70W / V82G / P180L、W9C / M10I / A54S / N70W / V82Q / A87P / N108H / P180L / T200H、W9C / M10I / A54S / N70W / V82Q / P180L、W9C / M10I / A62G、W9C / M10I / N70R、W9C / M10I / N70W、W9C / M10I / N70W / V73L / V82Q / A87P / N108H / Q110M / P180L、W9C / M10I / N70W / V73L / V82Q / N108H / M148L / P180L、W9C / M10I / N70W / V73L / V82Q / N108H / M148L / P180L / Q192M、W9C / M10I / N70W / V73L / V82Q / N108H / P180L、W9C / M10I / N70W / V73L / V82Q / M148L / P180L / T200H、W9C / M10I / N70W / V73L / V82Q / P180L / Q192M、W9C / M10I / N70W / V73L / V82Q / P180L / Q192M / A219H、W9C / M10I / N70W / V73M / V82Q / A87P / P180L / Q192M / A219H、W9C / M10I / N70W / V73M / V82Q / A87P / P180L / T200H、W9C / M10I / N70W / V73M / V82Q / N108H / Q110M / P180L / T200H / A219H、W9C / M10I / N70W / V73M / V82Q / N108H / M148L / P180L、W9C / M10I / N70W / V73M / V82Q / N108H / M148L / P180L / Q192M / A219H、W9C / M10I / N70W / V73M / V82Q / M148L / P180L、W9C / M10I / N70W / V82Q、W9C / M10I / N70W / V82Q / A87P / N108H / Q110M / M148L / P180L / Q192M / A219H、W9C / M10I / N70W / V82Q / A87P / N108H / Q110M / P180L、W9C / M10I / N70W / V82Q / A87P / N108H / Q110M / P180L / Q192M、W9C / M10I / N70W / V82Q / A87P / P180L、W9C / M10I / N70W / V82Q / A107F、W9C / M10I / N70W / V82Q / A107F / T229M、W9C / M10I / N70W / V82Q / N108H / Q110M / P180L / A219H、W9C / M10I / N70W / V82Q / N108H / P180L、W9C / M10I / N70W / V82Q / Q110M / M148L / P180L、W9C / M10I / N70W / V82Q / Q110M / P180L / A219H、W9C / M10I / N70W / V82Q / M148L / P180L、W9C / M10I / N70W / V82Q / M148L / P180L / T200H、W9C / M10I / N70W / V82Q / M148L / P180L / T200H / A219H、W9C / M10I / N70W / V82Q / P180L、W9C / M10I / N70W / V82Q / P180L / Q192M / A219H、W9C / M10I / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / N70W / V82Q / T229M、W9C / M10I / N70W / K92R、W9C / M10I / N70W / V99R、W9C / M10I / N70W / V99R / T229M、W9C / M10I / N70W / A107F / T229M、W9C / M10I / N70W / A156E、W9C / M10I / N70W / G165Q、W9C / M10I / N70W / T229M、W9C / M10I / Q88G、W9C / M10I / A90S、W9C / M10I / A96F、W9C / M10I / A107F、W9C / M10I / Q110V、W9C / M10I / A111M、W9C / M10I / R112G、W9C / M10I / A133E、W9C / M10I / A133W、W9C / M10I / A178E、W9C / M10I / R185E、W9C / M10I / A186Q、W9C / M10I / A196Q、W9C / M10I / A196R、W9C / M10I / A196S、W9C / M10I / Q211E、W9C / M10I / A226E、W9C / M10I / A226W、W9R / M10I / M11E / L12P / Q51D / A54S / N70W / V73L / V82Q / Q110M / P180L、W9R / M10I / M11E / L12P / Q51D / N70W / V73M / V82Q / M148L / P180L / T200H / Q225S、W9R / M10I / M11E / L12S / Q51D / A54S / N70W / V73M / V82Q / M148L / P180L / Q225S、W9R / M10I / A54S / N70W / V82Q / P180L、W9R / M10I / N70W / V82Q / P180L / T200A / V214W、W9T / M10I / M11E / L12N / R49S / N70W / V73M / V82Q / P180L、W9T / M10I / M11E / L12P / Q51D / N70W / V73L / V82Q / M148L / P180L、W9T / M10I / M11G / L12S / R49S / Q51D / N70W / V73M / V82Q / P180L / T200H / Q225S、W9T / M10I / M11G / Q51D / A54S / N70W / V73L / V82Q / N108H / P180L / T200H / Q225S、W9T / M10I / M11G / Q51D / A54S / N70W / V73L / V82Q / Q110M / M148L / P180L、W9T / M10I / M11R / L12P / Q51D / A54S / N70W / V73L / V82Q / N108H / M148L / P180L / Q225S、W9T / M10I / L12P / N70W / V82A / M148L / P180L / Q225S、W9T / M10I / L12S / Q51D / A54S / N70W / P180L / Q225S, W9T / M10I / R49S / Q51D / A54S / N70W / V73M / V82Q / N108H / Q110M / M148L / P180L / Q192M, W9T / M10I / N70W / V73L / V82Q / N108H / Q110M / M148L / P180L, M11L / Q24T, M11L / Q24T / A219D, and M11L / D36S / Y206F / M208, A, and the amino acid positions of the polypeptide sequence are numbered with reference to SEQ ID NO:2.

[0099] The present invention also provides engineered carboxylesterases or functional fragments thereof comprising a polypeptide sequence having at least 80%, 85%, 86%, 87%, 88%, 89%, 90%, 91%, 92%, 93%, 94%, 95%, 96%, 97%, 98%, 99% or more sequence identity to SEQ ID NO:82, and comprising at least one substitution or set of substitutions within those polypeptide sequences, wherein the amino acid positions of the polypeptide sequences are numbered with reference to SEQ ID NO:82.

[0100] The present invention also provides an engineered carboxylesterase or functional fragment thereof comprising a polypeptide sequence having at least 80%, 85%, 86%, 87%, 88%, 89%, 90%, 91%, 92%, 93%, 94%, 95%, 96%, 97%, 98%, or 99% sequence identity to SEQ ID NO:268, wherein the polypeptide sequence comprises at least one substitution or set of substitutions, and wherein the amino acid positions of the polypeptide sequence are numbered with reference to SEQ ID NO:268.

[0101] The present invention also provides an engineered carboxylesterase comprising a polypeptide sequence having at least 80%, 85%, 86%, 87%, 88%, 89%, 90%, 91%, 92%, 93%, 94%, 95%, 96%, 97%, 98%, or 99% sequence identity to SEQ ID NO:536, or a functional fragment thereof, wherein the polypeptide sequence comprises at least one substitution or set of substitutions, and wherein the amino acid positions of the polypeptide sequence are numbered with reference to SEQ ID NO:536.

[0102] The present invention also provides engineered carboxylesterases comprising a polypeptide sequence having at least 80%, 85%, 86%, 87%, 88%, 89%, 90%, 91%, 92%, 93%, 94%, 95%, 96%, 97%, 98%, or 99% sequence identity to a sequence selected from the even-numbered sequences of SEQ ID NOs: 2-536, or a functional fragment thereof, wherein the polypeptide sequence comprises at least one substitution or set of substitutions, and wherein the amino acid positions of the polypeptide sequence are numbered with reference to a sequence selected from the even-numbered sequences of SEQ ID NOs: 2-536.

[0103] The present invention also provides engineered carboxylesterases comprising a polypeptide sequence selected from the even numbered sequences of SEQ ID NOs: 4-536.

[0104] In some embodiments, engineered polypeptides possess altered properties that broaden the functionality and range of activity of these enzymes compared to the naturally occurring wild-type X. campestris carboxylesterase (SEQ ID NO: 2). Improved carboxylesterase properties include, but are not limited to, solvent stability, enzymatic activity, kinetic resolution, enantioselectivity, regiospecificity, stereoselectivity, reduced host cell toxicity, thermal stability, pH stability, substrate range, and / or reduced substrate or product inhibition.

[0105] The improved properties of the proposed carboxylesterase variants relate to engineered polypeptides that contain residue differences at specific residue positions compared to a reference X. campestris carboxylesterase sequence or another reference engineered polypeptide, such as the sequence of SEQ ID NO: 2. In some embodiments, the residue differences are present at at least one of the following amino acid positions: X9, X10, X11, X17, X70, X82, X180, X200, and X214.

[0106] In some embodiments, the engineered carboxylesterases provided herein are characterized as exhibiting increased enzymatic activity compared to a wild-type polypeptide or another reference polypeptide under the same reaction conditions. The engineered carboxylesterases are capable of increased enantioselectivity, as indicated by an increased ee of compound 3a over compound 3b, compared to the wild-type or reference carboxylesterase. In some embodiments, the engineered carboxylesterase polypeptides have increased enantiospecificity, as measured by an increased E-value. In some embodiments, the engineered carboxylesterase polypeptides maintain activity or increase activity under conditions involving various pH levels (e.g., pH 9.0), compared to the wild-type or reference carboxylesterase. In some embodiments, an engineered polypeptide with increased activity and / or increased enantiospecificity comprises an amino acid sequence that is at least 80%, 82%, 85%, 86%, 87%, 88%, 89%, 90%, 91%, 92%, 93%, 94%, 95%, 96%, 97%, 98%, 99% or more identical to a reference sequence of SEQ ID NO: 2, 82, 268, and / or 536.

[0107] In some embodiments, the engineered carboxylesterases are capable of at least about 1-fold, 1.2-fold, 1.5-fold, 2-fold, 3-fold, 4-fold, 5-fold, 10-fold, 20-fold, 30-fold, 40-fold, 50-fold, 150-fold, 500-fold, or more improved biocatalytic activity for converting substrate compounds to products compared to the activity of a wild-type carboxylesterase (e.g., SEQ ID NO: 2) or a reference engineered carboxylesterase (SEQ ID NOs: 82, 268, and 536) under appropriate reaction conditions. In some embodiments, these improvements in enzymatic activity extend to associated increases in thermostability, stereoselectivity, stereospecificity, regiospecificity, enantioselectivity, solvent stability, pH stability, and / or substrate binding, or substrate reduction and / or product inhibition.

[0108] In some embodiments, the present invention also provides engineered carboxylesterase polypeptides, including fragments of any of the engineered carboxylesterase polypeptides described herein, that retain functional carboxylesterase activity and / or improved properties of the engineered carboxylesterase polypeptide. Accordingly, in some embodiments, the present invention provides polypeptide fragments that have carboxylesterase activity (e.g., are capable of converting a substrate to a product under appropriate reaction conditions), where the fragment comprises at least about 80%, 90%, 95%, 98%, or 99% of the full-length amino acid sequence of an engineered polypeptide of the invention, e.g., exemplary engineered polypeptides having even-numbered sequence identifiers, SEQ ID NOs:2-536.

[0109] In some embodiments, an engineered carboxylesterase polypeptide of the invention comprises an amino acid sequence that includes at least one deletion, addition, and / or substitution compared to an engineered carboxylesterase polypeptide sequence described herein, e.g., any one of the exemplary engineered polypeptide sequences having even-numbered sequence identifiers, SEQ ID NOs: 2-536. As such, for each and every embodiment of the engineered carboxylesterase polypeptides of the invention, the amino acid sequence can include deletions, additions, and / or substitutions of 1 or more amino acids, 2 or more amino acids, 3 or more amino acids, 4 or more amino acids, 5 or more amino acids, 6 or more amino acids, 8 or more amino acids, 10 or more amino acids, 15 or more amino acids, or 20 or more amino acids, up to 10% of the total number of amino acids, up to 10% of the total number of amino acids, up to 20% of the total number of amino acids, or up to 30% of the total number of amino acids of the carboxylesterase polypeptide, wherein the relevant functional activity and / or improved properties of the engineered carboxylesterases described herein are maintained. In some embodiments, the deletions, additions, and / or substitutions can comprise additions and / or substitutions of 1 to 2, 1 to 3, 1 to 4, 1 to 5, 1 to 6, 1 to 7, 1 to 8, 1 to 9, 1 to 10, 1 to 15, 1 to 20, 1 to 21, 1 to 22, 1 to 23, 1 to 24, 1 to 25, 1 to 30, 1 to 35, 1 to 40, 1 to 45, 1 to 50, 1 to 55, or 1 to 60 amino acid residues. In some embodiments, the number of deletions, additions, and / or substitutions can be 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 30, 30, 35, 40, 45, 50, 55, or 60 amino acid residues.In some embodiments, the deletions, additions, and / or substitutions may comprise deletions, additions, and / or substitutions of 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 18, 20, 21, 22, 23, 24, 25, or 30 amino acid residues.

[0110] In some embodiments, the invention provides engineered carboxylesterase polypeptides having an amino acid sequence that includes an insertion compared to any one of the engineered carboxylesterase polypeptide sequences described herein, e.g., any one of the exemplary engineered polypeptide sequences having even-numbered sequence identifiers, SEQ ID NOS: 2-536. Thus, for each and every embodiment of the carboxylesterase polypeptides of the invention, the insertion can include one or more amino acids, two or more amino acids, three or more amino acids, four or more amino acids, five or more amino acids, six or more amino acids, eight or more amino acids, ten or more amino acids, fifteen or more amino acids, or twenty or more amino acids, wherein the relevant functional activity and / or improved properties of the engineered carboxylesterases described herein are maintained. The insertion can be at the amino or carboxy terminus or an internal portion of the carboxylesterase polypeptide.

[0111] In some embodiments, the polypeptides of the present invention are in the form of fusion polypeptides in which the engineered polypeptide is fused to other polypeptides, such as, by way of example and not limitation, an antibody tag (e.g., a myc epitope), a purification sequence (e.g., a His tag for binding to metals), and a cellular localization signal (e.g., a secretion signal). Thus, the engineered polypeptides described herein can be used with or without fusion to other polypeptides.

[0112] The engineered carboxylesterase polypeptides described herein are not limited to genetically encoded amino acids, and thus, in addition to genetically encoded amino acids, the polypeptides described herein may be composed, in whole or in part, of either naturally occurring and / or synthetic, non-encoded amino acids. Certain commonly encountered non-encoded amino acids that may comprise the polypeptides described herein include, but are not limited to, D-stereoisomers of genetically encoded amino acids; 2,3-diaminopropionic acid (Dpr); α-aminoisobutyric acid (Aib); ε-aminohexanoic acid (Aha); δ-aminovaleric acid (Ava); N-methylglycine or sarcosine (MeGly or Sar); ornithine (Orn); citrulline (Cit); t-butylalanine (Bua); t-butylglycine (Bug); N-methylisoleucine (MeIle); phenylglycine (Phg); cyclohexylalanine (Cha); norleucine (Nle); naphthylalanine (Nal); 2-chlorophenylalanine (Ocf); 3-chlorophenylalanine (Mcf); 4-chlorophenylalanine (Pcf); 2-fluorophenylalanine (Off); 3-fluorophenylalanine (Mff); 4-fluorophenylalanine (Pcf); 2-fluorophenylalanine (Off); 3-fluorophenylalanine (Mff); 4-fluorophenylalanine (Pcf); phenylalanine (Pff); 2-bromophenylalanine (Obf); 3-bromophenylalanine (Mbf); 4-bromophenylalanine (Pbf); 2-methylphenylalanine (Omf); 3-methylphenylalanine (Mmf); 4-methylphenylalanine (Pmf); 2-nitrophenylalanine (Onf); 3-nitrophenylalanine (Mnf); 4-nitrophenylalanine (Pnf); 2-cyanophenylalanine (Ocf); 3-cyanophenylalanine (Mcf); 4-cyanophenylalanine (Pcf); 2-trifluoromethylphenylalanine (Otf); 3-trifluoromethylphenylalanine (Mtf); 4-trifluoromethylphenylalanine (Ptf); 4-aminophenylalanine (Paf); 4-iodophenylalanine (Pif); 4-aminomethylphenylalanine (Pamf); 2,4-dichlorophenylalanine (Opef); 3,4-dichlorophenylalanine (Mpcf);2,4-Difluorophenylalanine (Opff); 3,4-Difluorophenylalanine (Mpff); Pyrid-2-ylalanine (2pAla); Pyrid-3-ylalanine (3pAla); Pyrid-4-ylalanine (4pAla); Naphth-1-ylalanine (1nAla); Naphth-2-ylalanine (2nAla); Thiazolylalanine (taAla); Benzothienylalanine (bAla); Thienylalanine (tAla); Furylalanine (fAla); Homophenylalanine (h Phe); homotyrosine (hTyr); homotryptophan (hTrp); pentafluorophenylalanine (5ff); styrylalanine (sAla); authrylalanine (aAla); 3,3-diphenylalanine (Dfa); 3-amino-5-phenylpentanoic acid (Afp); penicillamine (Pen); 1,2,3,4-tetrahydroisoquinoline-3-carboxylic acid (Tic); β-2-thienylalanine (Thi); Thionine sulfoxide (Mso); N(w)-nitroarginine (nArg); homolysine (hLys); phosphonomethylphenylalanine (pmPhe); phosphoserine (pSer); phosphothreonine (pThr); homoaspartic acid (hAsp); homoglutamic acid (hGlu); 1-aminocyclopent-(2 or 3)-ene-4-carboxylic acid; pipecolic acid (PA), azetidine-3-carboxylic acid (ACA); 1-aminocyclopentane-3-carboxylic acid; allylglycine (aOly); Examples of amino acids include propargylglycine (pgGly); homoalanine (hAla); norvaline (nVal); homoleucine (hLeu), homovaline (hVal); homoisoleucine (hIle); homoarginine (hArg); N-acetyllysine (AcLys); 2,4-diaminobutyric acid (Dbu); 2,3-diaminobutyric acid (Dab); N-methylvaline (MeVal); homocysteine ​​(hCys); homoserine (hSer); hydroxyproline (Hyp), and homoproline (hPro). Additional non-encoded amino acids that may constitute the polypeptides described herein will be apparent to those skilled in the art. These amino acids may be in either the L- or D-configuration.

[0113] Those skilled in the art will recognize that amino acids or residues bearing side chain protecting groups can also comprise the polypeptides described herein, where non-limiting examples of such protected amino acids belonging to the aromatic category (protecting groups are listed in parentheses) include, but are not limited to, Arg(tos), Cys(methylbenzyl), Cys(nitropyridine sulfenyl), Glu(δ-benzyl ester), Gln(xanthyl), Asn(N-δ-xanthyl), His(bom), His(benzyl), His(tos), Lys(fmoc), Lys(tos), Ser(O-benzyl), Thr(O-benzyl), and Tyr(O-benzyl).

[0114] Conformationally constrained non-encoded amino acids that may comprise the polypeptides described herein include, but are not limited to, N-methyl amino acids (L-configuration); 1-aminocyclopent-(2 or 3)-ene-4-carboxylic acid; pipecolic acid; azetidine-3-carboxylic acid; homoproline (hPro); and 1-aminocyclopentane-3-carboxylic acid.

[0115] As will be apparent to one of skill in the art, the aforementioned residue positions and specific amino acid residues for each residue position can be used individually or in various combinations to synthesize carboxylesterase polypeptides with improved desired properties, including, among others, enzymatic activity, substrate / product preference, enantioselectivity, stereoselectivity, substrate / product tolerance, and stability under various conditions such as high temperature, solvents, and / or pH.

[0116] The engineered carboxylesterase polypeptides of the invention, created by directed evolution of SEQ ID NO:2 for efficient hydrolysis of a substrate of interest to a product of interest under certain industrially relevant conditions, have one or more residue differences compared to a reference carboxylesterase polypeptide. These residue differences are associated with improved various enzyme properties, particularly increased activity and enantioselectivity. In some additional embodiments, the variant carboxylesterases also exhibit increased stereoselectivity, increased stability, and tolerance to increased substrate and / or product concentrations (e.g., reduced product inhibition). Thus, in some embodiments, an engineered polypeptide having carboxylesterase activity can convert a substrate compound to a product with at least about 1-fold, 1.2-fold, 1.5-fold, 2-fold, 3-fold, 4-fold, 5-fold, 10-fold, 20-fold, 30-fold, 40-fold, 50-fold, 100-fold, 200-fold, 500-fold, 1000-fold, or more increased activity compared to the activity of a wild-type X. campestris carboxylesterase polypeptide (e.g., SEQ ID NO:2) under appropriate reaction conditions. In some embodiments, the engineered polypeptides with carboxylesterase activity can convert substrates to products with a percent conversion of at least about 40%, at least about 41%, at least about 42%, at least about 43%, at least about 44%, at least about 45%, at least about 46%, at least about 47%, at least about 48%, at least about 49%, or at least about 50% in reaction times of about 48 hours, about 36 hours, about 24 hours, or even shorter, under appropriate reaction conditions, where the maximum conversion of racemic substrates of compounds (2a) and (2b) to compound (3a) is 50%. In some embodiments, the engineered polypeptides with carboxylesterase activity can convert substrates to products with an enantiomeric excess of at least 90%, 95%, 97%, 98%, 99%, or more under appropriate reaction conditions.

[0117] In some embodiments, an engineered polypeptide with carboxylesterase activity can convert a substrate to a product under appropriate reaction conditions with increased tolerance to the presence of the substrate compared to the substrate tolerance of a reference polypeptide (e.g., SEQ ID NO: 2). Thus, in some embodiments, the engineered polypeptides are capable of converting substrate to product in the presence of a substrate loading concentration of at least about 1 g / L, 5 g / L, 10 g / L, 20 g / L, about 30 g / L, about 40 g / L, about 50 g / L, about 70 g / L, about 75 g / L, about 100 g / L with a percent conversion of at least about 40%, at least about 41%, at least about 42%, at least about 43%, at least about 44%, at least about 45%, at least about 46%, at least about 47%, at least about 48%, at least about 49%, or at least about 50% in a reaction time of about 72 hours, about 48 hours, about 36 hours, about 24 hours, or even shorter, where the maximum conversion of the racemic substrate of compounds (2a) and (2b) to compound (3a) is 50%.

[0118] Some suitable reaction conditions under which the improved properties of the engineered polypeptides described above can be determined are provided herein with respect to conditions including polypeptide concentration or amount, substrate, buffer, cosolvent, pH, and / or temperature and reaction time. In some embodiments, suitable reaction conditions include the assay conditions described below and in the Examples.

[0119] In some embodiments, the engineered polypeptide can be provided on a solid support, such as a membrane, resin, solid carrier, or other solid phase material. Solid supports can be composed of organic polymers such as polystyrene, polyethylene, polypropylene, polyfluoroethylene, polyethyleneoxy, and polyacrylamide, as well as copolymers and grafts thereof. Solid supports can also be inorganic, such as glass, silica, controlled pore glass (CPG), reverse-phase silica, or metals, such as gold or platinum. The shape of the solid support can be in the form of beads, spheres, particles, granules, gels, membranes, or surfaces. Surfaces can be planar, substantially planar, or non-planar. Solid supports can be porous or non-porous and can have swelling or non-swelling characteristics. Solid supports can be configured in the form of wells, depressions, or other containers, vessels, features, or locations.

[0120] In some embodiments, engineered polypeptides having carboxylesterase activity are bound or immobilized on a solid support such that they retain at least some of their improved properties compared to a reference polypeptide (e.g., SEQ ID NO: 2). In such embodiments, the immobilized polypeptide can facilitate the biocatalytic conversion of a substrate compound to a desired product and, after the reaction is complete, is easily retained (e.g., by retaining the beads on which the polypeptide is immobilized) and then reused or recycled in a subsequent reaction. Such immobilized enzyme processes allow for further efficiency and cost reduction. Thus, it is further contemplated that any of the methods using the engineered carboxylesterase polypeptides of the invention can be performed using the same carboxylesterase polypeptide bound or immobilized on a solid support.

[0121] The engineered carboxylesterase polypeptides can be non-covalently or covalently bound. A variety of methods for conjugation and immobilization of enzymes to solid supports (e.g., resins, membranes, beads, glass, etc.) are well known in the art. Other methods for conjugation and immobilization of enzymes to solid supports (e.g., resins, membranes, beads, glass, etc.) are well known in the art (see, for example, Yi et al., Proc. Biochem., 42: 895-898

[2007] ; Martin et al., Appl. Microbiol. Biotechnol., 76: 843-851

[2007] ; Koszelewski et al., J. Mol. Cat. B: Enz., 63: 39-44

[2010] ; Truppo et al., Org. Proc. Res. Develop., published online: dx.doi.org / 10.1021 / op200157c; and Mateo et al., Biotechnol. Prog., 18:629-34

[2002] ). Solid supports useful for immobilizing the engineered carboxylesterase polypeptides of the invention include, but are not limited to, beads or resins comprising epoxide-functionalized polymethacrylate, aminoepoxide-functionalized polymethacrylate, styrene / DVB copolymer, or octadecyl-functionalized polymethacrylate. Exemplary solid supports useful for immobilizing the engineered carboxylesterases of the invention include, but are not limited to, chitosan beads, Eupergit C, and SEPABEAD (Mitsubishi), including the following different types of SEPABEAD: EC-EP, EC-HFA / S, EXA252, EXE119, and EXE120.

[0122] In some embodiments, the engineered carboxylesterase polypeptides can be provided in the form of an array in which the polypeptides are arranged in positionally distinct locations. In some embodiments, the positionally distinct locations are wells in a solid support, such as a 96-well plate. Multiple supports can be configured in the array, with various locations addressable by robotic delivery of reagents or detection methods and / or instruments. Such arrays can be used to test a variety of substrate compounds for conversion by the polypeptides.

[0123] In some embodiments, the engineered polypeptides described herein can be provided in the form of a kit. The polypeptides in the kit can be present individually or as multiple polypeptides. The kit can further include reagents for performing the enzymatic reaction, substrates for assessing the activity of the polypeptide, and reagents for detecting the product. The kit can also include a reagent dispenser and instructions for use of the kit. In some embodiments, the kits of the invention include an array comprising multiple different engineered carboxylesterase polypeptides at different addressable locations, where the different polypeptides are different variants of a reference sequence, each having at least one different enzymatic property improvement. Such arrays comprising multiple engineered polypeptides and methods for their use are known (see, e.g., WO 2009 / 008908 A2). Polynucleotides encoding engineered carboxylesterases

[0124] In another aspect, the present invention provides polynucleotides encoding engineered carboxylesterase enzymes. The polynucleotides can be operatively linked to one or more heterologous regulatory sequences that control gene expression to produce recombinant polynucleotides capable of expressing a polypeptide. Expression constructs containing heterologous polynucleotides encoding engineered carboxylesterases can be introduced into suitable host cells to express the corresponding carboxylesterase polypeptides.

[0125] Because of knowledge of the codons corresponding to various amino acids, availability of a protein sequence provides a description of all polynucleotides capable of encoding the subject. The degeneracy of the genetic code, in which the same amino acid is coded for by alternative or synonymous codons, allows for the creation of a vast number of nucleic acids, all of which encode the improved carboxylesterase enzymes disclosed herein. Thus, once a particular amino acid sequence is identified, one of skill in the art can create any number of different nucleic acids by simply modifying the sequence of one or more codons in a manner that does not alter the amino acid sequence of the protein. In this regard, the present invention specifically contemplates each and every possible variation of polynucleotides that can be created by selecting combinations based on possible codon choices, and all such variations should be considered specifically disclosed for any polypeptide disclosed herein, including the amino acid sequence presented in the tables in the Examples. In various embodiments, codons are preferably selected to be compatible with the host cell in which the protein will be produced. For example, preferred codons used in bacteria are used to express genes in bacteria, preferred codons used in yeast are used for expression in yeast, and preferred codons used in mammals are used for expression in mammalian cells. By way of example, the polynucleotide of SEQ ID NO: 1 is codon-optimized for expression in E. coli, but otherwise encodes the naturally occurring carboxylesterase of X. campestris.

[0126] In some embodiments, the polynucleotide encodes an engineered carboxylesterase polypeptide comprising an amino acid sequence selected from the even-numbered sequence identifiers of SEQ ID NOs: 2-536.

[0127] In some embodiments, the polynucleotide encoding the engineered carboxylesterase or functional fragment thereof is selected from polynucleotide sequences that comprise at least 85%, 86%, 87%, 88%, 89%, 90%, 91%, 92%, 93%, 94%, 95%, 96%, 97%, 98%, 99% or more sequence identity to the odd-numbered sequence identifiers of SEQ ID NOs: 1-535.

[0128] In some embodiments, the polynucleotide is capable of hybridizing under highly stringent conditions to a polynucleotide comprising an odd-numbered sequence identifier from SEQ ID NOs: 1-535.

[0129] In some embodiments, the polynucleotide encodes a polypeptide described herein but has about 80% or greater sequence identity, about 85%, 86%, 87%, 88%, 89%, 90%, 91%, 92%, 93%, 94%, 95%, 96%, 97%, 98%, or 99% or greater sequence identity at the nucleotide level to a reference polynucleotide encoding the engineered carboxylesterase. In some embodiments, the reference polynucleotide comprises SEQ ID NO: 1, while in some other embodiments, the reference polynucleotide comprises SEQ ID NO: 81. In some further embodiments, the reference polynucleotide sequence comprises SEQ ID NO: 285. In some further embodiments, the reference polynucleotide sequence comprises SEQ ID NO: 535. In some additional embodiments, the engineered carboxylesterase sequence comprises a sequence that includes positions identified as beneficial, as described in the Examples.

[0130] The present invention also provides polynucleotide sequences encoding at least one engineered carboxylesterase provided herein. In some embodiments, the polynucleotide sequence encodes at least one engineered carboxylesterase or functional fragment thereof, comprising a polypeptide sequence having at least 80%, 85%, 86%, 87%, 88%, 89%, 90%, 91%, 92%, 93%, 94%, 95%, 96%, 97%, 98%, 99% or more sequence identity to SEQ ID NO:2, wherein the engineered carboxylesterase comprises at least one substitution or set of substitutions within the polypeptide sequence, and wherein the amino acid positions of the polypeptide sequence are numbered with reference to SEQ ID NO:2. In some embodiments, the polynucleotide sequence may contain substitutions of 3 / 4 / 6 / 9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229, 3 / 6 / 9 / 10 / 70 / 99, 3 / 8 / 9 / 10 / 11 / 13 / 70 / 82 / 107 / 229, 3 / 8 / 9 / 10 / 11 / 13 / 70 / 107, 3 / 8 / 9 / 10 / 11 / 70, 3 / 8 / 9 / 10 / 11 / 70 / 229 , 3 / 8 / 9 / 10 / 13 / 70 / 82 / 107, 3 / 8 / 9 / 10 / 13 / 70 / 82 / 229, 3 / 8 / 9 / 10 / 70 / 82, 3 / 8 / 9 / 10 / 70 / 82 / 229, 3 / 8 / 9 / 10 / 70 / 229, 3 / 9 / 10 / 11 / 13 / 82, 3 / 9 / 10 / 11 / 70 / 82 / 107, 3 / 9 / 10 / 11 / 70 / 229, 3 / 9 / 10 / 70 / 82, 3 / 9 / 11 , 3 / 9 / 11 / 70 / 82 / 180, 4 / 6 / 8 / 9 / 10 / 11 / 38 / 70 / 82 / 180 / 186 / 200 / 214 / 229, 4 / 6 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 6 / 9 / 10 / 11 / 38 / 70 / 82 / 180 / 186 / 200 / 214, 4 / 6 / 9 / 10 / 70 / 82 / 229, 4 / 8 / 9 / 10 / 11 / 1 3 / 70 / 82 / 107 / 229, 4 / 8 / 9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 8 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 186 / 200 / 214 / 229, 4 / 8 / 9 / 10 / 11 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 8 / 9 / 10 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229,4 / 9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229、4 / 9 / 10 / 11 / 36 / 65 / 70 / 82 / 180 / 186 / 200 / 214、4 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214、4 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214 / 229、4 / 9 / 10 / 11 / 70 / 82 / 180 / 200 / 214、6 / 8 / 9 / 10 / 38 / 70 / 82 / 180 / 200 / 214、6 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214 / 229、6 / 9 / 10 / 38 / 70 / 82 / 180 / 186 / 200 / 214 / 229、6 / 9 / 10 / 70 / 82 / 180 / 186 / 200 / 214 / 229、8 / 9 / 10、8 / 9 / 10 / 11 / 13 / 70、8 / 9 / 10 / 11 / 13 / 70 / 82、8 / 9 / 10 / 11 / 13 / 70 / 82 / 107 / 229、8 / 9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214、8 / 9 / 10 / 11 / 38 / 70 / 82 / 180 / 200 / 214 / 229、8 / 9 / 10 / 11 / 43 / 70 / 82 / 180 / 200 / 214、8 / 9 / 10 / 11 / 70、8 / 9 / 10 / 11 / 70 / 82 / 107 / 229、8 / 9 / 10 / 11 / 70 / 229、8 / 9 / 10 / 70、8 / 9 / 10 / 70 / 82 / 229、9 / 10、9 / 10 / 11 / 12 / 49 / 51 / 70 / 73 / 82 / 180 / 200 / 225、9 / 10 / 11 / 12 / 49 / 70 / 73 / 82 / 180、9 / 10 / 11 / 12 / 51 / 54 / 70 / 73 / 82 / 108 / 148 / 180 / 225、9 / 10 / 11 / 12 / 51 / 54 / 70 / 73 / 82 / 110 / 180、9 / 10 / 11 / 12 / 51 / 54 / 70 / 73 / 82 / 148 / 180 / 225、9 / 10 / 11 / 12 / 51 / 70 / 73 / 82 / 148 / 180、9 / 10 / 11 / 12 / 51 / 70 / 73 / 82 / 148 / 180 / 200 / 225、9 / 10 / 11 / 12 / 51 / 70 / 73 / 110 / 148 / 180、9 / 10 / 11 / 17 / 49 / 70 / 82 / 180 / 200、9 / 10 / 11 / 17 / 49 / 70 / 82 / 180 / 219、9 / 10 / 11 / 17 / 51 / 54 / 70 / 82 / 148 / 180 / 200、9 / 10 / 11 / 17 / 51 / 54 / 70 / 82 / 180、9 / 10 / 11 / 17 / 70 / 73 / 82 / 87 / 180 / 219、9 / 10 / 11 / 17 / 70 / 82 / 148 / 180 / 219、9 / 10 / 11 / 35 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 36 / 38 / 65 / 70 / 82 / 180 / 200 / 214 / 229、9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229、9 / 10 / 11 / 36 / 70 / 82 / 180 / 196 / 214、9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214 / 229、9 / 10 / 11 / 38 / 70 / 82 / 180 / 186 / 200 / 214、9 / 10 / 11 / 40 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 49 / 51 / 54 / 70 / 82 / 87 / 108 / 110 / 148 / 180 / 219、9 / 10 / 11 / 49 / 51 / 54 / 70 / 82 / 87 / 108 / 180、9 / 10 / 11 / 49 / 51 / 54 / 70 / 82 / 110 / 148 / 180、9 / 10 / 11 / 49 / 51 / 70 / 82 / 108 / 110 / 148 / 180、9 / 10 / 11 / 49 / 54 / 70 / 82 / 87 / 148 / 180、9 / 10 / 11 / 49 / 70 / 82 / 87 / 108 / 110 / 180 / 200、9 / 10 / 11 / 49 / 70 / 82 / 87 / 180、9 / 10 / 11 / 49 / 70 / 82 / 110 / 148 / 180 / 225、9 / 10 / 11 / 51 / 54 / 70 / 73 / 82 / 108 / 110 / 180、9 / 10 / 11 / 51 / 54 / 70 / 73 / 82 / 108 / 180 / 200 / 225、9 / 10 / 11 / 51 / 54 / 70 / 73 / 82 / 110 / 148 / 180、9 / 10 / 11 / 51 / 54 / 70 / 82 / 148 / 180、9 / 10 / 11 / 51 / 70 / 82 / 110 / 180 / 192 / 219、9 / 10 / 11 / 54 / 70 / 82 / 87 / 108 / 180、9 / 10 / 11 / 54 / 70 / 82 / 87 / 180 / 192、9 / 10 / 11 / 54 / 70 / 82 / 148 / 180 / 200、9 / 10 / 11 / 54 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 70、9 / 10 / 11 / 70 / 71 / 82 / 180 / 200 / 214、9 / 10 / 11 / 70 / 73 / 82 / 87 / 110 / 180、9 / 10 / 11 / 70 / 73 / 82 / 108 / 148 / 180、9 / 10 / 11 / 70 / 73 / 82 / 148 / 180、9 / 10 / 11 / 70 / 73 / 82 / 148 / 180 / 192 / 200、9 / 10 / 11 / 70 / 73 / 82 / 180 / 200 / 214、9 / 10 / 11 / 70 / 82、9 / 10 / 11 / 70 / 82 / 87 / 110 / 180 / 219、9 / 10 / 11 / 70 / 82 / 100 / 180 / 200 / 214、9 / 10 / 11 / 70 / 82 / 107、9 / 10 / 11 / 70 / 82 / 108 / 180 / 200 / 214、9 / 10 / 11 / 70 / 82 / 148 / 180、9 / 10 / 11 / 70 / 82 / 148 / 180 / 200 / 214、9 / 10 / 11 / 70 / 82 / 180、9 / 10 / 11 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 70 / 87 / 180 / 200 / 214、9 / 10 / 11 / 70 / 107、9 / 10 / 12 / 49 / 51 / 54 / 70 / 82 / 108 / 148 / 180 / 225、9 / 10 / 12 / 51 / 54 / 70 / 180 / 225、9 / 10 / 12 / 51 / 70 / 73 / 82 / 148 / 180 / 200、9 / 10 / 12 / 70 / 82 / 148 / 180 / 225、9 / 10 / 12 / 70 / 82 / 180 / 200 / 214、9 / 10 / 13 / 70、9 / 10 / 13 / 70 / 82、9 / 10 / 13 / 70 / 229、9 / 10 / 13 / 207、9 / 10 / 17、9 / 10 / 17 / 49 / 51 / 54 / 70 / 73 / 82 / 108 / 110 / 148 / 180 / 192 / 200 / 219、9 / 10 / 17 / 49 / 51 / 54 / 70 / 82 / 87 / 180 / 219、9 / 10 / 17 / 49 / 70 / 82 / 148 / 180、9 / 10 / 17 / 51 / 54 / 70 / 82 / 87 / 108 / 110 / 180 / 200、9 / 10 / 17 / 51 / 70 / 73 / 82 / 87 / 108 / 110 / 148 / 180 / 219、9 / 10 / 17 / 54 / 70 / 73 / 82 / 87 / 108 / 110 / 148 / 180 / 200、9 / 10 / 17 / 54 / 70 / 73 / 82 / 108 / 110 / 148 / 180、9 / 10 / 17 / 54 / 70 / 82 / 87 / 108 / 110 / 180、9 / 10 / 17 / 70 / 73 / 82 / 87 / 180 / 219、9 / 10 / 17 / 70 / 73 / 82 / 108 / 110 / 148 / 180 / 200、9 / 10 / 17 / 70 / 82 / 87 / 148 / 180、9 / 10 / 17 / 70 / 82 / 87 / 148 / 180 / 192 / 219、9 / 10 / 17 / 70 / 82 / 108 / 148 / 180、9 / 10 / 17 / 70 / 82 / 110 / 148 / 180、9 / 10 / 17 / 70 / 82 / 110 / 148 / 180 / 200、9 / 10 / 17 / 70 / 82 / 180 / 200 / 214、9 / 10 / 17 / 70 / 104 / 160 / 165、9 / 10 / 17 / 70 / 139 / 160 / 165、9 / 10 / 26、9 / 10 / 29 / 70、9 / 10 / 36 / 70 / 82 / 180 / 200 / 214、9 / 10 / 37、9 / 10 / 38 / 70 / 82 / 180 / 200 / 214、9 / 10 / 39、9 / 10 / 39 / 186、9 / 10 / 41、9 / 10 / 45 / 70、9 / 10 / 49 / 51 / 54 / 70 / 73 / 82 / 108 / 110 / 148 / 180 / 192、9 / 10 / 49 / 51 / 54 / 70 / 73 / 82 / 148 / 180、9 / 10 / 49 / 51 / 54 / 70 / 82 / 108 / 110 / 148 / 180 / 225、9 / 10 / 49 / 51 / 54 / 70 / 82 / 110 / 148 / 180、9 / 10 / 49 / 51 / 54 / 70 / 82 / 110 / 180、9 / 10 / 49 / 51 / 54 / 70 / 82 / 148 / 180、9 / 10 / 49 / 51 / 54 / 70 / 82 / 148 / 180 / 192、9 / 10 / 49 / 51 / 70 / 82 / 108 / 148 / 180 / 219、9 / 10 / 49 / 51 / 70 / 82 / 110 / 148 / 180、9 / 10 / 49 / 51 / 70 / 82 / 180 / 225、9 / 10 / 49 / 54 / 70 / 73 / 82 / 87 / 110 / 180、9 / 10 / 49 / 54 / 70 / 82 / 87 / 110 / 180、9 / 10 / 49 / 54 / 70 / 82 / 108 / 148 / 180 / 225、9 / 10 / 49 / 70 / 73 / 82 / 87 / 108 / 148 / 180、9 / 10 / 49 / 70 / 73 / 82 / 108 / 110 / 148 / 180 / 225、9 / 10 / 49 / 70 / 82 / 87 / 148 / 180、9 / 10 / 49 / 70 / 82 / 110 / 180 / 219、9 / 10 / 51 / 54 / 70 / 73 / 82 / 108 / 180、9 / 10 / 51 / 54 / 70 / 73 / 82 / 110 / 148 / 180、9 / 10 / 51 / 54 / 70 / 73 / 82 / 110 / 180、9 / 10 / 51 / 54 / 70 / 73 / 82 / 180 / 219、9 / 10 / 51 / 54 / 70 / 73 / 82 / 180 / 225、9 / 10 / 51 / 54 / 70 / 82 / 87 / 180、9 / 10 / 51 / 54 / 70 / 82 / 148 / 180、9 / 10 / 51 / 54 / 70 / 82 / 180、9 / 10 / 51 / 54 / 70 / 82 / 180 / 200、9 / 10 / 51 / 70 / 82 / 108 / 180、9 / 10 / 51 / 70 / 82 / 110 / 180 / 200、9 / 10 / 51 / 70 / 82 / 180 / 219、9 / 10 / 54 / 70 / 73 / 82 / 108 / 148 / 180 / 192、9 / 10 / 54 / 70 / 82 / 87 / 108 / 180 / 200、9 / 10 / 54 / 70 / 、 82 / 180、9 / 10 / 62、9 / 10 / 70、9 / 10 / 70 / 73 / 82 / 87 / 108 / 110 / 180、9 / 10 / 70 / 73 / 82 / 87 / 180 / 192 / 219、9 / 10 / 70 / 73 / 82 / 87 / 180 / 200、9 / 10 / 70 / 73 / 82 / 108 / 110 / 148 / 180、9 / 10 / 70 / 73 / 82 / 108 / 110 / 180 / 200 / 219、9 / 10 / 70 / 73 / 82 / 108 / 148 / 180、9 / 10 / 70 / 73 / 82 / 108 / 148 / 180 / 192、9 / 10 / 70 / 73 / 82 / 108 / 148 / 180 / 192 / 219、9 / 10 / 70 / 73 / 82 / 108 / 180、9 / 10 / 70 / 73 / 82 / 148 / 180、9 / 10 / 70 / 73 / 82 / 148 / 180 / 200、9 / 10 / 70 / 73 / 82 / 180 / 192、9 / 10 / 70 / 73 / 82 / 180 / 192 / 219、9 / 10 / 70 / 82、9 / 10 / 70 / 82 / 87 / 108 / 110 / 148 / 180 / 192 / 219、9 / 10 / 70 / 82 / 87 / 108 / 110 / 180、9 / 10 / 70 / 82 / 87 / 108 / 110 / 180 / 192、9 / 10 / 70 / 82 / 87 / 180、9 / 10 / 70 / 82 / 107、9 / 10 / 70 / 82 / 107 / 229、9 / 10 / 70 / 82 / 108 / 110 / 180 / 219、9 / 10 / 70 / 82 / 108 / 180、9 / 10 / 70 / 82 / 110 / 148 / 180、9 / 10 / 70 / 82 / 110 / 180 / 219、9 / 10 / 70 / 82 / 148 / 180、9 / 10 / 70 / 82 / 148 / 180 / 200、9 / 10 / 70 / 82 / 148 / 180 / 200 / 219、9 / 10 / 70 / 82 / 180、9 / 10 / 70 / 82 / 180 / 192 / 219、9 / 10 / 70 / 82 / 180 / 200 / 214、9 / 10 / 70 / 82 / 229、9 / 10 / 70 / 92、9 / 10 / 70 / 99、9 / 10 / 70 / 99 / 229、9 / 10 / 70 / 107 / 229、9 / 10 / 70 / 156、9 / 10 / 70 / 165、9 / 10 / 70 / 229、9 / 10 / 88、9 / 10 / 90、9 / 10 / 96、9 / 10 / 107、9 / 10 / 110、9 / 10 / 111、9 / 10 / 112、9 / 10 / 133、9 / 10 / 178、9 / 10 / 185、9 / 10 / 186、9 / 10 / 196、9 / 10 / 211、9 / 10 / 226、11 / 24、11 / 24 / 219、and 11 / 36 / 206 / 208, wherein the amino acid positions of the polypeptide sequence are numbered with reference to SEQ ID NO:2. In some additional embodiments, the polynucleotide sequence is 3R / 4R / 6P / 9C / 10I / 11I / 36N / 38Y / 70W / 82Q / 180L / 200A / 214W / 229M, 3R / 6P / 9C / 10I / 70W / 99R, 3R / 8G / 9C / 10I / 11T / 13E / 70W / 82Q / 107F / 229M, 3R / 8G / 9C / 10I / 11T / 13E / 70W / 107F, 3R / 8G / 9C / 10I / 11T / 70W, 3R / 8G / 9C / 10I / 11T / 70W / 229M ... G / 9C / 10I / 13E / 70W / 82Q / 107F, 3R / 8G / 9C / 10I / 13E / 70W / 82Q / 229M, 3R / 8G / 9C / 10I / 70W / 82Q, 3R / 8G / 9C / 10I / 70W / 82Q / 229M, 3R / 8G / 9C / 10I / 70W / 229M, 3R / 9C / 10I / 11I / 13E / 82Q, 3R / 9C / 10I / 11T / 70W / 82Q / 107F, 3R / 9C / 10I / 11T / 70W / 229M, 3R / 9C / 10I / 70W / 82Q, 3R / 9C / 11 I, 3R / 9C / 11I / 70W / 82Q / 180L, 4R / 6P / 8G / 9C / 10I / 11T / 38Y / 70W / 82Q / 180L / 186F / 200A / 214W / 229M, 4R / 6P / 9C / 10I / 11I / 36N / 70W / 82Q / 180L / 200A / 214W / 229M, 4R / 6P / 9C / 10I / 11I / 38Y / 70W / 82Q / 180L / 186F / 200A / 214W, 4R / 6P / 9C / 10I / 70W / 82Q / 229M, 4R / 8G / 9C / 10I / 11T / 13E / 70W / 82Q / 107F / 229M, 4R / 8G / 9C / 10I / 11T / 36N / 38Y / 70W / 82Q / 180L / 200A / 214W / 229M, 4R / 8G / 9C / 10I / 11T / 36N / 70W / 82Q / 180L / 18 6F / 200A / 214W / 229M, 4R / 8G / 9C / 10I / 11T / 70W / 82Q / 180L / 200A / 214W / 229M, 4R / 8G / 9C / 10I / 36N / 38Y / 70W / 82Q / 180L / 200A / 214W / 229M,<h2 style=";text-align:left;direction:ltr">4R / 9C / 10I / 11I / 36N / 38Y / 70W / 82Q / 180L / 200A / 214W / 229M、4R / 9C / 10I / 11T / 36N / 65I / 70W / 82Q / 180L / 186F / 200A / 214W、4R / 9C / 10I / 11T / 36N / 70 W / 82Q / 180L / 200A / 214W、4R / 9C / 10I / 11T / 36N / 70W / 82Q / 180L / 200A / 214 W / 229M、4R / 9C / 10I / 11T / 70W / 82Q / 180L / 200A / 214W、6P / 8G / 9C / 10I / 38Y / 70W / 82Q / 180L / 200A / 214W、6P / 9C / 10I / 11T / 36N / 70W / 82Q / 180L / 200A / 2 14W / 229M、6P / 9C / 10I / 38Y / 70W / 82Q / 180L / 186F / 200A / 214W / 229M、6P / 9C / 10I / 70W / 82Q / 180L / 186F / 200A / 214W / 229M、8A / 9C / 10I、8G / 9C / 10I / 11 T / 13E / 70W、8G / 9C / 10I / 11T / 13E / 70W / 82Q、8G / 9C / 10I / 11T / 13E / 70W / 82Q / 107F / 229M、8G / 9C / 10I / 11T / 36N / 38Y / 70W / 82Q / 180L / 200A / 214W、8G / 9 C / 10I / 11T / 38Y / 70W / 82Q / 180L / 200A / 214W / 229M、8G / 9C / 10I / 11T / 43I / 7 0W / 82Q / 180L / 200A / 214W、8G / 9C / 10I / 11T / 70W、8G / 9C / 10I / 11T / 70W / 82 Q / 107F / 229M、8G / 9C / 10I / 11T / 70W / 229M、8G / 9C / 10I / 70W、8G / 9C / 10I / 70 W / 82Q / 229M、9A / 10I / 70W / 82Q / 180L / 200A / 214W、9C / 10I、9C / 10I / 11E / 12P / 51D / 70W / 73M / 110M / 148L / 180L、9C / 10I / 11E / 17C / 70W / 82Q / 148L / 180 L / 219H、9C / 10I / 11E / 17H / 51D / 54S / 70W / 82Q / 180L、9C / 10I / 11E / 17H / 70 W / 73M / 82Q / 87P / 180L / 219H、9C / 10I / 11E / 17V / 49S / 70W / 82Q / 180L / 200H、9C / 10I / 11E / 49S / 51D / 54S / 70W / 82A / 110M / 148L / 180L、9C / 10I / 11E / 49S / 51D / 54S / 70W / 82Q / 87P / 108H / 110M / 148L / 180L / 219H、9C / 10I / 11E / 49S / 51D / 54S / 70W / 82Q / 87P / 108H / 180L、9C / 10I / 11E / 49S / 51D / 70W / 82Q / 108H / 110M / 148L / 180L、9C / 10I / 11E / 49S / 54S / 70W / 82Q / 87P / 148L / 180L、9C / 10I / 11E / 49S / 70W / 82Q / 87P / 108H / 110M / 180L / 200H、9C / 10I / 11E / 49S / 70W / 82Q / 87P / 180L、9C / 10I / 11E / 49S / 70W / 82Q / 110M / 148L / 180L / 225S、9C / 10I / 11E / 51D / 54S / 70W / 82Q / 148L / 180L、9C / 10I / 11E / 54S / 70W / 82Q / 87P / 180L / 192M、9C / 10I / 11E / 54S / 70W / 82Q / 148L / 180L / 200H、9C / 10I / 11E / 70W / 73L / 82Q / 108H / 148L / 180L、9C / 10I / 11E / 70W / 73L / 82Q / 148L / 180L、9C / 10I / 11E / 70W / 73M / 82Q / 87P / 110M / 180L、9C / 10I / 11E / 70W / 73M / 82Q / 148L / 180L、9C / 10I / 11E / 70W / 73M / 82Q / 148L / 180L / 192M / 200H、9C / 10I / 11E / 70W / 82Q / 87P / 110M / 180L / 219H、9C / 10I / 11E / 70W / 82Q / 148L / 180L、9C / 10I / 11E / 70W / 82Q / 180L、9C / 10I / 11E / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11G / 17C / 49S / 70W / 82Q / 180L / 219H、9C / 10I / 11G / 17V / 51D / 54S / 70W / 82Q / 148L / 180L / 200H、9C / 10I / 11G / 51D / 54S / 70W / 73L / 82Q / 108H / 110M / 180L、9C / 10I / 11G / 51D / 70W / 82Q / 110M / 180L / 192M / 219H、9C / 10I / 11G / 54S / 70W / 82Q / 87P / 108H / 180L、9C / 10I / 11G / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 35G / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 35Q / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 35S / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 36I / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 36N / 38Y / 65I / 70W / 82Q / 180L / 200A / 214W / 229M、9C / 10I / 11I / 36N / 38Y / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 36N / 38Y / 70W / 82Q / 180L / 200A / 214W / 229M、9C / 10I / 11I / 36N / 70W / 82Q / 180L / 196E / 214W、9C / 10I / 11I / 36S / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 40V / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 54D / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 54P / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 54S / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 70V / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 70W、9C / 10I / 11I / 70W / 71H / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 70W / 71R / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 70W / 73L / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 70W / 73M / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 70W / 73R / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 70W / 82A / 180L / 200A / 214W、9C / 10I / 11I / 70W / 82Q / 100S / 180L / 200A / 214W、9C / 10I / 11I / 70W / 82Q / 108R / 180L / 200A / 214W、9C / 10I / 11I / 70W / 82Q / 148L / 180L / 200A / 214W、9C / 10I / 11I / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 11I / 70W / 87V / 180L / 200A / 214W、9C / 10I / 11T / 36N / 38Y / 70W / 82Q / 180L / 200A / 214W / 229M、9C / 10I / 11T / 36N / 70W / 82Q / 180L / 200A / 214W / 229M、9C / 10I / 11T / 38Y / 70W / 82Q / 180L / 186F / 200A / 214W、9C / 10I / 11T / 70W、9C / 10I / 11T / 70W / 82Q、 9C / 10I / 11T / 70W / 82Q / 107F、9C / 10I / 11T / 70W / 107F、9C / 10I / 12P / 49S / 51D / 54S / 70W / 82Q / 108H / 148L / 180L / 225S、9C / 10I / 12P / 51D / 70W / 73L / 82Q / 148L / 180L / 200H、9C / 10I / 12P / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 12V / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 13E / 70W、9C / 10I / 13E / 70W / 82Q、9C / 10I / 13E / 70W / 229M、9C / 10I / 13E / 207Q、9C / 10I / 17A / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 17C / 51D / 54S / 70W / 82Q / 87P / 108H / 110M / 180L / 200H、9C / 10I / 17C / 70W / 73L / 82Q / 108H / 110M / 148L / 180L / 200H、9C / 10I / 17C / 70W / 82Q / 87P / 148L / 180L / 192M / 219H、9C / 10I / 17C / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 17H / 49S / 51D / 54S / 70W / 73M / 82Q / 108H / 110M / 148L / 180L / 192M / 200H / 219H、9C / 10I / 17H / 54S / 70W / 82Q / 87P / 108H / 110M / 180L、9C / 10I / 17H / 70W / 82Q / 110M / 148L / 180L、9C / 10I / 17H / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 17Q / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 17S / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 17V / 49S / 51D / 54S / 70W / 82Q / 87P / 180L / 219H、9C / 10I / 17V / 49S / 70W / 82Q / 148L / 180L、9C / 10I / 17V / 51D / 70W / 73M / 82Q / 87P / 108H / 110M / 148L / 180L / 219H、9C / 10I / 17V / 54S / 70W / 73L / 82Q / 87P / 108H / 110M / 148L / 180L / 200H、9C / 10I / 17V / 54S / 70W / 73L / 82Q / 108H / 110M / 148L / 180L、9C / 10I / 17V / 70W / 73M / 82Q / 87P / 180L / 219H、9C / 10I / 17V / 70W / 82Q / 87P / 148L / 180L、9C / 10I / 17V / 70W / 82Q / 108H / 148L / 180L、9C / 10I / 17V / 70W / 82Q / 110M / 148L / 180L / 200H、9C / 10I / 17V / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 17V / 70W / 104M / 160E / 165Q、9C / 10I / 17V / 70W / 139H / 160G / 165Q、9C / 10I / 17W、9C / 10I / 26G、9C / 10I / 26T、9C / 10I / 29G / 70W、9C / 10I / 36N / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 37P、9C / 10I / 38Y / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 39A / 186T、9C / 10I / 39W、9C / 10I / 41F、9C / 10I / 41G、9C / 10I / 41S、9C / 10I / 45R / 70W、9C / 10I / 45T / 70W、9C / 10I / 49S / 51D / 54S / 70W / 73M / 82Q / 148L / 180L、9C / 10I / 49S / 51D / 54S / 70W / 82G / 108H / 110M / 148L / 180L / 225S、9C / 10I / 49S / 51D / 54S / 70W / 82Q / 110M / 148L / 180L、9C / 10I / 49S / 51D / 54S / 70W / 82Q / 110M / 180L、9C / 10I / 49S / 51D / 54S / 70W / 82Q / 148L / 180L、9C / 10I / 49S / 51D / 54S / 70W / 82Q / 148L / 180L / 192M、9C / 10I / 49S / 51D / 70W / 82Q / 108H / 148L / 180L / 219H、9C / 10I / 49S / 51D / 70W / 82Q / 110M / 148L / 180L、9C / 10I / 49S / 51D / 70W / 82Q / 180L / 225S、9C / 10I / 49S / 54S / 70W / 73L / 82Q / 87P / 110M / 180L、9C / 10I / 49S / 54S / 70W / 82Q / 87P / 110M / 180L、9C / 10I / 49S / 54S / 70W / 82Q / 108H / 148L / 180L / 225S、9C / 10I / 49S / 70W / 73L / 82G / 108H / 110M / 148L / 180L / 225S、9C / 10I / 49S / 70W / 73L / 82Q / 87P / 108H / 148L / 180L、9C / 10I / 49S / 70W / 82Q / 87P / 148L / 180L、9C / 10I / 49S / 70W / 82Q / 110M / 180L / 219H、9C / 10I / 51D / 54S / 70W / 73L / 82Q / 108H / 180L、9C / 10I / 51D / 54S / 70W / 73L / 82Q / 110M / 148L / 180L、9C / 10I / 51D / 54S / 70W / 73M / 82Q / 110M / 180L、9C / 10I / 51D / 54S / 70W / 73M / 82Q / 180L / 219H、9C / 10I / 51D / 54S / 70W / 73M / 82Q / 180L / 225S、9C / 10I / 51D / 54S / 70W / 82Q / 87P / 180L、9C / 10I / 51D / 54S / 70W / 82Q / 148L / 180L、9C / 10I / 51D / 54S / 70W / 82Q / 180L、9C / 10I / 51D / 54S / 70W / 82Q / 180L / 200H、9C / 10I / 51D / 70W / 82Q / 108H / 180L、9C / 10I / 51D / 70W / 82Q / 110M / 180L / 200H、9C / 10I / 51D / 70W / 82Q / 180L / 219H、9C / 10I / 54S / 70W / 73M / 82Q / 108H / 148L / 180L / 192M、9C / 10I / 54S / 70W / 82G / 180L、9C / 10I / 54S / 70W / 82Q / 87P / 108H / 180L / 200H、9C / 10I / 54S / 70W / 82Q / 180L、9C / 10I / 62G、9C / 10I / 70R、9C / 10I / 70W、9C / 10I / 70W / 73L / 82Q / 87P / 108H / 110M / 180L、9C / 10I / 70W / 73L / 82Q / 108H / 148L / 180L、9C / 10I / 70W / 73L / 82Q / 108H / 148L / 180L / 192M、9C / 10I / 70W / 73L / 82Q / 108H / 180L、9C / 10I / 70W / 73L / 82Q / 148L / 180L / 200H、9C / 10I / 70W / 73L / 82Q / 180L / 192M、9C / 10I / 70W / 73L / 82Q / 180L / 192M / 219H、9C / 10I / 70W / 73M / 82Q / 87P / 180L / 192M / 219H、9C / 10I / 70W / 73M / 82Q / 87P / 180L / 200H、9C / 10I / 70W / 73M / 82Q / 108H / 110M / 180L / 200H / 219H、9C / 10I / 70W / 73M / 82Q / 108H / 148L / 180L、9C / 10I / 70W / 73M / 82Q / 108H / 148L / 180L / 192M / 219H、9C / 10I / 70W / 73M / 82Q / 148L / 180L、9C / 10I / 70W / 82Q、9C / 10I / 70W / 82Q / 87P / 108H / 110M / 148L / 180L / 192M / 219H、9C / 10I / 70W / 82Q / 87P / 108H / 110M / 180L、9C / 10I / 70W / 82Q / 87P / 108H / 110M / 180L / 192M、9C / 10I / 70W / 82Q / 87P / 180L、9C / 10I / 70W / 82Q / 107F、9C / 10I / 70W / 82Q / 107F / 229M、9C / 10I / 70W / 82Q / 108H / 110M / 180L / 219H、9C / 10I / 70W / 82Q / 108H / 180L、9C / 10I / 70W / 82Q / 110M / 148L / 180L、9C / 10I / 70W / 82Q / 110M / 180L / 219H、9C / 10I / 70W / 82Q / 148L / 180L、9C / 10I / 70W / 82Q / 148L / 180L / 200H、9C / 10I / 70W / 82Q / 148L / 180L / 200H / 219H、9C / 10I / 70W / 82Q / 180L、9C / 10I / 70W / 82Q / 180L / 192M / 219H、9C / 10I / 70W / 82Q / 180L / 200A / 214W、9C / 10I / 70W / 82Q / 229M、9C / 10I / 70W / 92R、9C / 10I / 70W / 99R、9C / 10I / 70W / 99R / 229M、9C / 10I / 70W / 107F / 229M、9C / 10I / 70W / 156E、9C / 10I / 70W / 165Q、9C / 10I / 70W / 229M、9C / 10I / 88G、9C / 10I / 90S、9C / 10I / 96F、9C / 10I / 107F、9C / 10I / 110V、9C / 10I / 111M、9C / 10I / 112G、9C / 10I / 133E、9C / 10I / 133W、9C / 10I / 178E、9C / 10I / 185E、9C / 10I / 186Q、9C / 10I / 196Q、9C / 10I / 196R、9C / 10I / 196S、9C / 10I / 211E、9C / 10I / 226E、9C / 10I / 226W、9R / 10I / 11E / 12P / 51D / 54S / 70W / 73L / 82Q / 110M / 180L, 9R / 10I / 11E / 12P / 51D / 70W / 73M / 82Q / 148L / 180L / 200H / 225S , 9R / 10I / 11E / 12S / 51D / 54S / 70W / 73M / 82Q / 148L / 180L / 225S, 9R / 10I / 54S / 70W / 82Q / 180L, 9R / 10I / 70W / 82Q / 180L / 2 00A / 214W, 9T / 10I / 11E / 12N / 49S / 70W / 73M / 82Q / 180L, 9T / 10I / 11E / 12P / 51D / 70W / 73L / 82Q / 148L / 180L, 9T / 10I / 11 G / 12S / 49S / 51D / 70W / 73M / 82Q / 180L / 200H / 225S, 9T / 10I / 11G / 51D / 54S / 70W / 73L / 82Q / 108H / 180L / 200H / 225S, 9T / 1 0I / 11G / 51D / 54S / 70W / 73L / 82Q / 110M / 148L / 180L, 9T / 10I / 11R / 12P / 51D / 54S / 70W / 73L / 82Q / 108H / 148L / 180L / 225 S, 9T / 10I / 12P / 70W / 82A / 148L / 180L / 225S, 9T / 10I / 12S / 51D / 54S / 70W / 180L / 225S, 9T / 10I / 49S / 51D / 54S / 70W / 73M / and encoding at least one engineered carboxylesterase comprising at least one substitution or set of substitutions selected from 82Q / 108H / 110M / 148L / 180L / 192M, 9T / 10I / 70W / 73L / 82Q / 108H / 110M / 148L / 180L, 11L / 24T, 11L / 24T / 219D, and 11L / 36S / 206F / 208A, wherein the amino acid positions are numbered based on SEQ ID NO:2. In some further embodiments, the polynucleotide sequence is S3R / P4R / T6P / W9C / M10I / M11I / D36N / S38Y / N70W / V82Q / P180L / T200A / V214W / T229M, S3R / T6P / W9C / M10I / N70W / V99R, S3R / R8G / W9C / M10I / M11T / D13E / N70W / V82Q / A107F / T229M, S3R / R8G / W9C / M10I / M11T / D13E / N70W / A107F, S3R / R8G / W9C / M10I / M11T / N70W,<h2 style=";text-align:left;direction:ltr">S3R / R8G / W9C / M10I / M11T / N70W / T229M、S3R / R8G / W9C / M10I / D13E / N70W / V82Q / A107F、S3R / R8G / W9C / M10I / D13E / N70W / V82Q / T229M、S3R / R8G / W9C / M10I / N70W / V82Q、S3R / R8G / W9C / M10I / N70W / V82Q / T229M、S3R / R8G、<h2 style=";text-align:left;direction:ltr"> <h2 style=";text-align:left;direction:ltr"> <h2 style=";text-align:left;direction:ltr"> <h2 style=";text-align:left;direction:ltr"> / W9C / M10I / N70W / T229M、S3R / W9C / M10I / M11I / D13E / V82Q、S3R / W9C / M10I / M11T / N70W / V82Q / A107F、S3R / W9C / M10I / M11T / N70W / T229M、S3R / W9C / M1 0I / N70W / V82Q、S3R / W9C / M11I、S3R / W9C / M11I / N70W / V82Q / P180L、P4R / T6P / R8G / W9C / M10I / M11T / S38Y / N70W / V82Q / P180L / A186F / T200A / V214W / T22 9M、P4R / T6P / W9C / M10I / M11I / D36N / N70W / V82Q / P180L / T200A / V214W / T22 9M、P4R / T6P / W9C / M10I / M11I / S38Y / N70W / V82Q / P180L / A186F / T200A / V21 4W、P4R / T6P / W9C / M10I / N70W / V82Q / T229M、P4R / R8G / W9C / M10I / M11T / D13 E / N70W / V82Q / A107F / T229M、P4R / R8G / W9C / M10I / M11T / D36N / S38Y / N70W / V 82Q / P180L / T200A / V214W / T229M、P4R / R8G / W9C / M10I / M11T / D36N / N70W / V 82Q / P180L / A186F / T200A / V214W / T229M、P4R / R8G / W9C / M10I / M11T / N70W / V82Q / P180L / T200A / V214W / T229M、P4R / R8G / W9C / M10I / D36N / S38Y / N70W / V82Q / P180L / T200A / V214W / T229M、P4R / W9C / M10I / M11I / D36N / S38Y / N70W / V82Q / P180L / T200A / V214W / T229M、P4R / W9C / M10I / M11T / D36N / R65I / N70W / V82Q / P180L / A186F / T200A / V214W、P4R / W9C / M10I / M11T / D36N / N70W / V82 Q / P180L / T200A / V214W、P4R / W9C / M10I / M11T / D36N / N70W / V82Q / P180L / T2 00A / V214W / T229M、P4R / W9C / M10I / M11T / N70W / V82Q / P180L / T200A / V214W、T6P / R8G / W9C / M10I / S38Y / N70W / V82Q / P180L / T200A / V214W、T6P / W9C / M10I / M11T / D36N / N70W / V82Q / P180L / T200A / V214W / T229M、T6P / W9C / M10I / S38Y / N70W / V82Q / P180L / A186F / T200A / V214W / T229M、T6P / W9C / M10I / N70W / V82Q / P180L / A186F / T200A / V214W / T229M、R8A / W9C / M10I、R8G / W9C / M10I / M11T / D13E / N70W、R8G / W9C / M10I / M11T / D13E / N70W / V82Q、R8G / W9C / M10I / M11T / D13E / N70W / V82Q / A107F / T229M、R8G / W9C / M10I / M11T / D36N / S38Y / N70W / V82Q / P180L / T200A / V214W、R8G / W9C / M10I / M11T / S38Y / N70W / V82Q / P180L / T200A / V214W / T229M、R8G / W9C / M10I / M11T / M43I / N70W / V82Q / P180L / T200A / V214W、R8G / W9C / M10I / M11T / N70W、R8G / W9C / M10I / M11T / N70W / V82Q / A107F / T229M、R8G / W9C / M10I / M11T / N70W / T229M、R8G / W9C / M10I / N70W、R8G / W9C / M10I / N70W / V82Q / T229M、W9A / M10I / N70W / V82Q / P180L / T200A / V214W、W9C / M10I、W9C / M10I / M11E / L12P / Q51D / N70W / V73M / Q110M / M148L / P180L、W9C / M10I / M11E / R17C / N70W / V82Q / M148L / P180L / A219H、W9C / M10I / M11E / R17H / Q51D / A54S / N70W / V82Q / P180L、W9C / M10I / M11E / R17H / N70W / V73M / V82Q / A87P / P180L / A219H、W9C / M10I / M11E / R17V / R49S / N70W / V82Q / P180L / T200H、W9C / M10I / M11E / R49S / Q51D / A54S / N70W / V82A / Q110M / M148L / P180L、W9C / M10I / M11E / R49S / Q51D / A54S / N70W / V82Q / A87P / N108H / Q110M / M148L / P180L / A219H、W9C / M10I / M11E / R49S / Q51D / A54S / N70W / V82Q / A87P / N108H / P180L、W9C / M10I / M11E / R49S / Q51D / N70W / V82Q / N108H / Q110M / M148L / P180L、W9C / M10I / M11E / R49S / A54S / N70W / V82Q / A87P / M148L / P180L、W9C / M10I / M11E / R49S / N70W / V82Q / A87P / N108H / Q110M / P180L / T200H、W9C / M10I / M11E / R49S / N70W / V82Q / A87P / P180L、W9C / M10I / M11E / R49S / N70W / V82Q / Q110M / M148L / P180L / Q225S、W9C / M10I / M11E / Q51D / A54S / N70W / V82Q / M148L / P180L、W9C / M10I / M11E / A54S / N70W / V82Q / A87P / P180L / Q192M、W9C / M10I / M11E / A54S / N70W / V82Q / M148L / P180L / T200H、W9C / M10I / M11E / N70W / V73L / V82Q / N108H / M148L / P180L、W9C / M10I / M11E / N70W / V73L / V82Q / M148L / P180L、W9C / M10I / M11E / N70W / V73M / V82Q / A87P / Q110M / P180L、W9C / M10I / M11E / N70W / V73M / V82Q / M148L / P180L、W9C / M10I / M11E / N70W / V73M / V82Q / M148L / P180L / Q192M / T200H、W9C / M10I / M11E / N70W / V82Q / A87P / Q110M / P180L / A219H、W9C / M10I / M11E / N70W / V82Q / M148L / P180L、W9C / M10I / M11E / N70W / V82Q / P180L、W9C / M10I / M11E / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11G / R17C / R49S / N70W / V82Q / P180L / A219H、W9C / M10I / M11G / R17V / Q51D / A54S / N70W / V82Q / M148L / P180L / T200H、W9C / M10I / M11G / Q51D / A54S / N70W / V73L / V82Q / N108H / Q110M / P180L、W9C / M10I / M11G / Q51D / N70W / V82Q / Q110M / P180L / Q192M / A219H、W9C / M10I / M11G / A54S / N70W / V82Q / A87P / N108H / P180L、W9C / M10I / M11G / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / A35G / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / A35Q / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / A35S / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / D36I / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / D36N / S38Y / R65I / N70W / V82Q / P180L / T200A / V214W / T229M、W9C / M10I / M11I / D36N / S38Y / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / D36N / S38Y / N70W / V82Q / P180L / T200A / V214W / T229M、W9C / M10I / M11I / D36N / N70W / V82Q / P180L / A196E / V214W、W9C / M10I / M11I / D36S / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / F40V / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / A54D / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / A54P / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / A54S / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / N70V / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / N70W、W9C / M10I / M11I / N70W / N71H / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / N70W / N71R / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / N70W / V73L / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / N70W / V73M / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / N70W / V73R / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / N70W / V82A / P180L / T200A / V214W、W9C / M10I / M11I / N70W / V82Q / A100S / P180L / T200A / V214W、W9C / M10I / M11I / N70W / V82Q / N108R / P180L / T200A / V214W、W9C / M10I / M11I / N70W / V82Q / M148L / P180L / T200A / V214W、W9C / M10I / M11I / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / M11I / N70W / A87V / P180L / T200A / V214W、W9C / M10I / M11T / D36N / S38Y / N70W / V82Q / P180L / T200A / V214W / T229M、W9C / M10I / M11T / D36N / N70W / V82Q / P180L / T200A / V214W / T229M、W9C / M10I / M11T / S38Y / N70W / V82Q / P180L / A186F / T200A / V214W、W9C / M10I / M11T / N70W、W9C / M10I / M11T / N70W / V82Q、W9C / M10I / M11T / N70W / V82Q / A107F、W9C / M10I / M11T / N70W / A107F、W9C / M10I / L12P / R49S / Q51D / A54S / N70W / V82Q / N108H / M148L / P180L / Q225S、W9C / M10I / L12P / Q51D / N70W / V73L / V82Q / M148L / P180L / T200H、W9C / M10I / L12P / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / L12V / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / D13E / N70W、W9C / M10I / D13E / N70W / V82Q、W9C / M10I / D13E / N70W / T229M、W9C / M10I / D13E / P207Q、W9C / M10I / R17A / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / R17C / Q51D / A54S / N70W / V82Q / A87P / N108H / Q110M / P180L / T200H、W9C / M10I / R17C / N70W / V73L / V82Q / N108H / Q110M / M148L / P180L / T200H、W9C / M10I / R17C / N70W / V82、 Q / A87P / M148L / P180L / Q192M / A219H、W9C / M10I / R17C / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / R17H / R49S / Q51D / A54S / N70W / V73M / V82Q / N108H / Q110M / M148L / P180L / Q192M / T200H / A219H、W9C / M10I / R17H / A54S / N70W / V82Q / A87P / N108H / Q110M / P180L、W9C / M10I / R17H / N70W / V82Q / Q110M / M148L / P180L、W9C / M10I / R17H / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / R17Q / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / R17S / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / R17V / R49S / Q51D / A54S / N70W / V82Q / A87P / P180L / A219H、W9C / M10I / R17V / R49S / N70W / V82Q / M148L / P180L、W9C / M10I / R17V / Q51D / N70W / V73M / V82Q / A87P / N108H / Q110M / M148L / P180L / A219H、W9C / M10I / R17V / A54S / N70W / V73L / V82Q / A87P / N108H / Q110M / M148L / P180L / T200H、W9C / M10I / R17V / A54S / N70W / V73L / V82Q / N108H / Q110M / M148L / P180L、W9C / M10I / R17V / N70W / V73M / V82Q / A87P / P180L / A219H、W9C / M10I / R17V / N70W / V82Q / A87P / M148L / P180L、W9C / M10I / R17V / N70W / V82Q / N108H / M148L / P180L、W9C / M10I / R17V / N70W / V82Q / Q110M / M148L / P180L / T200H、W9C / M10I / R17V / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / R17V / N70W / A104M / S160E / G165Q、W9C / M10I / R17V / N70W / R139H / S160G / G165Q、W9C / M10I / R17W、W9C / M10I / A26G、W9C / M10I / A26T、W9C / M10I / W29G / N70W、W9C / M10I / D36N / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / G37P、W9C / M10I / S38Y / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / D39A / A186T、W9C / M10I / D39W、W9C / M10I / A41F、W9C / M10I / A41G、W9C / M10I / A41S、W9C / M10I / P45R / N70W、W9C / M10I / P45T / N70W、W9C / M10I / R49S / Q51D / A54S / N70W / V73M / V82Q / M148L / P180L、W9C / M10I / R49S / Q51D / A54S / N70W / V82G / N108H / Q110M / M148L / P180L / Q225S、W9C / M10I / R49S / Q51D / A54S / N70W / V82Q / Q110M / M148L / P180L、W9C / M10I / R49S / Q51D / A54S / N70W / V82Q / Q110M / P180L、W9C / M10I / R49S / Q51D / A54S / N70W / V82Q / M148L / P180L、W9C / M10I / R49S / Q51D / A54S / N70W / V82Q / M148L / P180L / Q192M、W9C / M10I / R49S / Q51D / N70W / V82Q / N108H / M148L / P180L / A219H、W9C / M10I / R49S / Q51D / N70W / V82Q / Q110M / M148L / P180L、W9C / M10I / R49S / Q51D / N70W / V82Q / P180L / Q225S、W9C / M10I / R49S / A54S / N70W / V73L / V82Q / A87P / Q110M / P180L、W9C / M10I / R49S / A54S / N70W / V82Q / A87P / Q110M / P180L、W9C / M10I / R49S / A54S / N70W / V82Q / N108H / M148L / P180L / Q225S、W9C / M10I / R49S / N70W / V73L / V82G / N108H / Q110M / M148L / P180L / Q225S、W9C / M10I / R49S / N70W / V73L / V82Q / A87P / N108H / M148L / P180L、W9C / M10I / R49S / N70W / V82Q / A87P / M148L / P180L、W9C / M10I / R49S / N70W / V82Q / Q110M / P180L / A219H、W9C / M10I / Q51D / A54S / N70W / V73L / V82Q / N108H / P180L、W9C / M10I / Q51D / A54S / N70W / V73L / V82Q / Q110M / M148L / P180L、W9C / M10I / Q51D / A54S / N70W / V73M / V82Q / Q110M / P180L、W9C / M10I / Q51D / A54S / N70W / V73M / V82Q / P180L / A219H、W9C / M10I / Q51D / A54S / N70W / V73M / V82Q / P180L / Q225S、W9C / M10I / Q51D / A54S / N70W / V82Q / A87P / P180L、W9C / M10I / Q51D / A54S / N70W / V82Q / M148L / P180L、W9C / M10I / Q51D / A54S / N70W / V82Q / P180L、W9C / M10I / Q51D / A54S / N70W / V82Q / P180L / T200H、W9C / M10I / Q51D / N70W / V82Q / N108H / P180L、W9C / M10I / Q51D / N70W / V82Q / Q110M / P180L / T200H、W9C / M10I / Q51D / N70W / V82Q / P180L / A219H、W9C / M10I / A54S / N70W / V73M / V82Q / N108H / M148L / P180L / Q192M、W9C / M10I / A54S / N70W / V82G / P180L、W9C / M10I / A54S / N70W / V82Q / A87P / N108H / P180L / T200H、W9C / M10I / A54S / N70W / V82Q / P180L、W9C / M10I / A62G、W9C / M10I / N70R、W9C / M10I / N70W、W9C / M10I / N70W / V73L / V82Q / A87P / N108H / Q110M / P180L、W9C / M10I / N70W / V73L / V82Q / N108H / M148L / P180L、W9C / M10I / N70W / V73L / V82Q / N108H / M148L / P180L / Q192M、W9C / M10I / N70W / V73L / V82Q / N108H / P180L、W9C / M10I / N70W / V73L / V82Q / M148L / P180L / T200H、W9C / M10I / N70W / V73L / V82Q / P180L / Q192M、W9C / M10I / N70W / V73L / V82Q / P180L / Q192M / A219H、W9C / M10I / N70W / V73M / V82Q / A87P / P180L / Q192M / A219H、W9C / M10I / N70W / V73M / V82Q / A87P / P180L / T200H、W9C / M10I / N70W / V73M / V82Q / N108H / Q110M / P180L / T200H / A219H、W9C / M10I / N70W / V73M / V82Q / N108H / M148L / P180L、W9C / M10I / N70W / V73M / V82Q / N108H / M148L / P180L / Q192M / A219H、W9C / M10I / N70W / V73M / V82Q / M148L / P180L、W9C / M10I / N70W / V82Q、W9C / M10I / N70W / V82Q / A87P / N108H / Q110M / M148L / P180L / Q192M / A219H、W9C / M10I / N70W / V82Q / A87P / N108H / Q110M / P180L、W9C / M10I / N70W / V82Q / A87P / N108H / Q110M / P180L / Q192M、W9C / M10I / N70W / V82Q / A87P / P180L、W9C / M10I / N70W / V82Q / A107F、W9C / M10I / N70W / V82Q / A107F / T229M、W9C / M10I / N70W / V82Q / N108H / Q110M / P180L / A219H、W9C / M10I / N70W / V82Q / N108H / P180L、W9C / M10I / N70W / V82Q / Q110M / M148L / P180L、W9C / M10I / N70W / V82Q / Q110M / P180L / A219H、W9C / M10I / N70W / V82Q / M148L / P180L、W9C / M10I / N70W / V82Q / M148L / P180L / T200H、W9C / M10I / N70W / V82Q / M148L / P180L / T200H / A219H、W9C / M10I / N70W / V82Q / P180L、W9C / M10I / N70W / V82Q / P180L / Q192M / A219H、W9C / M10I / N70W / V82Q / P180L / T200A / V214W、W9C / M10I / N70W / V82Q / T229M、W9C / M10I / N70W / K92R、W9C / M10I / N70W / V99R、W9C / M10I / N70W / V99R / T229M、W9C / M10I / N70W / A107F / T229M、W9C / M10I / N70W / A156E、W9C / M10I / N70W / G165Q、W9C / M10I / N70W / T229M、W9C / M10I / Q88G、W9C / M10I / A90S、W9C / M10I / A96F、W9C / M10I / A107F、W9C / M10I / Q110V、W9C / M10I / A111M、W9C / M10I / R112G、W9C / M10I / A133E、W9C / M10I / A133W、W9C / M10I / A178E、W9C / M10I / R185E、W9C / M10I / A186Q、W9C / M10I / A196Q、W9C / M10I / A196R、W9C / M10I / A196S、W9C / M10I / Q211E、W9C / M10I / A226E、W9C / M10I / A226W、W9R / M10I / M11E / L12P / Q51D / A54S / N70W / V73L / V82Q / Q110M / P180L、W9R / M10I / M11E / L12P / Q51D / N70W / V73M / V82Q / M148L / P180L / T200H / Q225S、W9R / M10I / M11E / L12S / Q51D / A54S / N70W / V73M / V82Q / M148L / P180L / Q225S、W9R / M10I / A54S / N70W / V82Q / P180L、W9R / M10I / N70W / V82Q / P180L / T200A / V214W、W9T / M10I / M11E / L12N / R49S / N70W / V73M / V82Q / P180L、W9T / M10I / M11E / L12P / Q51D / N70W / V73L / V82Q / M148L / P180L、W9T / M10I / M11G / L12S / R49S / Q51D / N70W / V73M / V82Q / P180L / T200H / Q225S、W9T / M10I / M11G / Q51D / A54S / N70W / V73L / V82Q / N108H / P180L / T200H / Q225S、W9T / M10I / M11G / Q51D / A54S / N70W / V73L / V82Q / Q110M / M148L / P180L、W9T / M10I / M11R / L12P / Q51D / A54S / N70W / V73L / V82Q / N108H / M148L / P180L / Q225S, W9T / M10I / L12P / N70W / V82A / M148L / P180L / Q225S, W9T / M1 0I / L12S / Q51D / A54S / N70W / P180L / Q225S, W9T / M10I / R49S / Q51D / A54S / N70W / V73M / V82Q / N108H / Q110M / M148L / P180L / Q192M, W9T / M10I / N7, 0W / V73L / V82Q / N108H / Q110M / M148L / P180L, M11L / Q24T, M11L / Q24T / A219D, and M11L / D36S / Y206F / M208A, wherein the amino acids are numbered based on SEQ ID NO:2.

[0131] An isolated polynucleotide encoding an improved carboxylesterase polypeptide may be manipulated in a variety of ways to provide for expression of the polypeptide. Manipulation of the isolated polynucleotide prior to its insertion into a vector may be desirable or necessary, depending on the expression vector. The techniques for modifying polynucleotides and nucleic acid sequences utilizing recombinant DNA methods are well known in the art.

[0132] For bacterial host cells, suitable promoters for directing transcription of the nucleic acid constructs of the invention include promoters obtained from the E. coli lac operon, Streptomyces coelicolor agarase gene (dagA), Bacillus subtilis levansucrase gene (sacB), Bacillus licheniformis alpha-amylase gene (amyL), Bacillus stearothermophilus maltogenic amylase gene (amyM), Bacillus amyloliquefaciens alpha-amylase gene (amyQ), Bacillus licheniformis penicillinase gene (penP), Bacillus subtilis xylA and xylB genes, and prokaryotic beta-lactamase genes (e.g., Villa-Kamaroff et al., Proc. Natl. Acad. Sci. USA 75: 3727-3731).

[1978] ), as well as the tac promoter (see, e.g., DeBoer et al., Proc. Natl. Acad. Sci. USA 80: 21-25

[1983] ). Additional suitable promoters will be known to those skilled in the art.

[0133] For filamentous fungal host cells, suitable promoters for directing transcription of the nucleic acid constructs of the invention include promoters obtained from the genes for Aspergillus oryzae TAKA amylase, Rhizomucor miehei aspartic proteinase, Aspergillus niger neutral alpha-amylase, Aspergillus niger acid-stable alpha-amylase, Aspergillus niger or Aspergillus awamori glucoamylase (glaA), Rhizomucor miehei lipase, Aspergillus oryzae alkaline protease, Aspergillus oryzae triosephosphate isomerase, Aspergillus nidulans acetamidase, and Fusarium oxysporum trypsin-like protease (WO 96 / 00787), as well as the NA2-tpi promoter (Aspergillus niger neutral alpha-amylase and Aspergillus oryzae triosephosphate isomerase gene), as well as mutant, truncated, and hybrid promoters thereof.

[0134] In yeast hosts, useful promoters include, but are not limited to, those derived from the genes for Saccharomyces cerevisiae enolase (ENO-1), Saccharomyces cerevisiae galactokinase (GAL1), Saccharomyces cerevisiae alcohol dehydrogenase / glyceraldehyde-3-phosphate dehydrogenase (ADH2 / GAP), and Saccharomyces cerevisiae 3-phosphoglycerate kinase, as well as other useful promoters for yeast host cells (see, e.g., Romanos, et al., Yeast 8:423-488

[1992] ).

[0135] The control sequence may also be a suitable transcription terminator sequence, which is a sequence recognized by a host cell to terminate transcription. The terminator sequence is operably linked to the 3' end of the nucleic acid sequence encoding the polypeptide. Any terminator that is functional in the selected host cell may be used in the present invention.

[0136] For example, exemplary transcription terminators for filamentous fungal host cells can be obtained from the genes for Aspergillus oryzae TAKA amylase, Aspergillus niger glucoamylase, Aspergillus nidulans anthranilate synthase, Aspergillus niger alpha-glucosidase, and Fusarium oxysporum trypsin-like protease.

[0137] Exemplary terminators for yeast host cells can be those obtained from the genes for Saccharomyces cerevisiae enolase, Saccharomyces cerevisiae cytochrome C (CYC1), and Saccharomyces cerevisiae glyceraldehyde-3-phosphate dehydrogenase, as well as other useful terminators for yeast host cells known in the art (see, e.g., Romanos et al., supra).

[0138] The control sequence may also be a suitable leader sequence, a nontranslated region of an mRNA that is important for translation by the host cell. The leader sequence is operably linked to the 5' end of the nucleic acid sequence encoding the polypeptide. Any leader sequence that is functional in the host cell of choice may be used. Exemplary leaders for filamentous fungal host cells are obtained from the genes for Aspergillus oryzae TAKA amylase and Aspergillus nidulans triosephosphate isomerase. Suitable leaders for yeast host cells are obtained from the genes for Saccharomyces cerevisiae enolase (ENO-1), Saccharomyces cerevisiae 3-phosphoglycerate kinase, Saccharomyces cerevisiae alpha-factor, and Saccharomyces cerevisiae alcohol dehydrogenase / glyceraldehyde-3-phosphate dehydrogenase (ADH2 / GAP).

[0139] The control sequence may also be a polyadenylation sequence, which is a sequence operably linked to the 3' end of a nucleic acid sequence that, when transcribed, is recognized by a host cell as a signal for adding polyadenosine residues to the transcribed mRNA. Any polyadenylation sequence that is functional in the host cell of choice may be used in the present invention. Exemplary polyadenylation sequences for filamentous fungal host cells may be derived from the genes for Aspergillus oryzae TAKA amylase, Aspergillus niger glucoamylase, Aspergillus nidulans anthranilate synthase, Fusarium oxysporum trypsin-like protease, and Aspergillus niger alpha-glucosidase, as well as additional useful polyadenylation sequences for yeast host cells known in the art (see, e.g., Guo et al., Mol. Cell. Biol., 15:5983-5990

[1995] ).

[0140] The control sequence may also be a signal peptide coding region that encodes an amino acid sequence linked to the amino terminus of a polypeptide and directs the encoded polypeptide into the cell's secretory pathway. The 5' end of the coding sequence of a nucleic acid sequence may inherently contain a signal peptide coding region naturally linked in translation reading frame with the segment of the coding region that encodes the secreted polypeptide. Alternatively, the 5' end of the coding sequence may contain a signal peptide coding region that is foreign to the coding sequence. A foreign signal peptide coding region may be required if the coding sequence does not naturally contain a signal peptide coding region.

[0141] Alternatively, the foreign signal peptide coding region may simply replace the natural signal peptide coding region in order to enhance secretion of the polypeptide. However, any signal peptide coding region which directs the expressed polypeptide into the secretory pathway of a host cell of choice may be used in the present invention.

[0142] Useful signal peptide coding regions for bacterial host cells are those obtained from the genes for Bacillus NC1B 11837 maltogenic amylase, Bacillus stearothermophilus alpha-amylase, Bacillus licheniformis subtilisin, Bacillus licheniformis beta-lactamase, Bacillus stearothermophilus neutral protease (nprT, nprS, nprM), and Bacillus subtilis prsA, as well as additional signal peptides known in the art (see, e.g., Simonen et al., Microbiol. Rev., 57:109-137

[1993] ).

[0143] Useful signal peptide coding regions for filamentous fungal host cells include, but are not limited to, the signal peptide coding regions obtained from the genes for Aspergillus oryzae TAKA amylase, Aspergillus niger neutral amylase, Aspergillus niger glucoamylase, Rhizomucor miehei aspartic proteinase, Humicola insolens cellulase, and Humicola lanuginosa lipase. Useful signal peptides for yeast host cells can be derived from the genes for Saccharomyces cerevisiae alpha-factor and Saccharomyces cerevisiae invertase, as well as additional useful signal peptide coding regions (see, e.g., Romanos et al., 1992, supra).

[0144] The control sequence may also be a propeptide coding region that encodes an amino acid sequence positioned at the amino terminus of a polypeptide. The resulting polypeptide is known as a proenzyme or propolypeptide (or in some cases, a zymogen). Propolypeptides are generally inactive and can be converted to a mature, active polypeptide by catalytic or autocatalytic cleavage of the propeptide from the propolypeptide. Propeptide coding regions can be obtained from the genes for Bacillus subtilis alkaline protease (aprE), Bacillus subtilis neutral protease (nprT), Saccharomyces cerevisiae alpha-factor, Rhizomucor miehei aspartic proteinase, and Myceliophthora thermophila lactase (WO 95 / 33836).

[0145] When the signal peptide and propeptide regions are both present at the amino terminus of a polypeptide, the propeptide region is located adjacent to the amino terminus of the polypeptide and the signal peptide region is located adjacent to the amino terminus of the propeptide region.

[0146] It may also be desirable to add regulatory sequences that allow for regulation of polypeptide expression relative to the growth of the host cell. Examples of regulatory systems are those that cause gene expression to be turned on or off in response to chemical or physical stimuli, including the presence of a regulatory compound. In prokaryotic host cells, suitable regulatory sequences include the lac, tac, and trp operator systems. In yeast host cells, suitable regulatory systems include, for example, the ADH2 system or the GAL1 system. In filamentous fungi, suitable regulatory sequences include the TAKA alpha-amylase promoter, the Aspergillus niger glucoamylase promoter, and the Aspergillus oryzae glucoamylase promoter.

[0147] Other examples of regulatory sequences are those that allow for gene amplification. In eukaryotic systems, these include the dihydrofolate reductase gene, which is amplified in the presence of methotrexate, and the metallothionein genes, which are amplified with heavy metals. In these cases, the nucleic acid sequence encoding the carboxylesterase polypeptide of the invention is operably linked to the regulatory sequence.

[0148] Thus, in some embodiments, the present invention also contemplates recombinant expression vectors comprising a polynucleotide encoding an engineered carboxylesterase polypeptide or variant thereof, and one or more expression control regions, e.g., a promoter and terminator, an origin of replication, etc., depending on the type of host into which they will be introduced. The various nucleic acid and control sequences described above may be joined together to generate a recombinant expression vector, which may contain one or more convenient restriction sites that allow for insertion or substitution of a nucleic acid sequence encoding a polypeptide at such site. Alternatively, a nucleic acid sequence of the present invention may be expressed by inserting the nucleic acid sequence, or a nucleic acid construct comprising the sequence, into an appropriate vector for expression. In creating an expression vector, the coding sequence is positioned in the vector such that the coding sequence is operably linked to appropriate control sequences for expression.

[0149] The recombinant expression vector may be any vector (e.g., a plasmid or virus) that can be conveniently subjected to recombinant DNA procedures and result in expression of the polynucleotide sequence. The choice of vector will typically depend on the compatibility of the vector with the host cell into which the vector is to be introduced. The vector may be a linear or closed circular plasmid.

[0150] The expression vector may be an autonomously replicating vector (i.e., a vector that exists as an extrachromosomal entity), the replication of which is independent of chromosomal replication (e.g., a plasmid, an extrachromosomal element, a minichromosome, or an artificial chromosome). The vector may contain any means for ensuring self-replication. Alternatively, the vector may be one that, when introduced into a host cell, is integrated into the genome and replicated together with the chromosome into which it has been integrated. Furthermore, a single vector or plasmid, or two or more vectors or plasmids, which together contain the total DNA to be introduced into the genome of the host cell or a transposon, may be used.

[0151] The expression vectors of the present invention preferably contain one or more selectable markers that allow for easy selection of transformed cells. The selectable marker may be a gene whose product provides biocide or viral resistance, resistance to heavy metals, prototrophy for auxotrophs, etc. Examples of bacterial selectable markers are the dal genes from Bacillus subtilis or Bacillus licheniformis, or markers that confer antibiotic resistance, such as ampicillin, kanamycin, chloramphenicol, or tetracycline resistance. Suitable markers for yeast host cells are ADE2, HIS3, LEU2, LYS2, MET3, TRP1, and URA3.

[0152] Selectable markers for use in filamentous fungal host cells include, but are not limited to, amdS (acetamidase), argB (ornithine carbamoyltransferase), bar (phosphinothricin acetyltransferase), hph (hygromycin phosphotransferase), niaD (nitrate reductase), pyrG (orotidine-5'-phosphate decarboxylase), sC (sulfate adenyltransferase), and trpC (anthranilate synthase), and equivalents thereof. Embodiments for use in Aspergillus cells include the amdS and pyrG genes of Aspergillus nidulans or Aspergillus oryzae, and the bar gene of Streptomyces hygroscopicus.

[0153] The expression vectors of the present invention can contain elements that allow the vector to integrate into the genome of a host cell or to replicate autonomously in the cell independently of the genome. For integration into the genome of a host cell, the vector can rely on a nucleic acid sequence encoding a polypeptide or any other element of the vector for integration into the genome by homologous or non-homologous recombination.

[0154] Alternatively, the expression vector may contain additional nucleic acid sequences to direct integration into the host cell genome by homologous recombination. The additional nucleic acid sequences enable the vector to integrate into the host cell genome at a precise chromosomal location. To increase the likelihood of integration at a precise location, the integration elements should preferably contain a sufficient number of nucleic acids, e.g., 100 to 10,000 base pairs, preferably 400 to 10,000 base pairs, and most preferably 800 to 10,000 base pairs, that are highly homologous to the corresponding target sequence to enhance the probability of homologous recombination. The integration elements may be any sequence that is homologous to the target sequence in the host cell genome. Furthermore, the integration elements may be non-coding or coding nucleic acid sequences. Alternatively, the vector may be integrated into the host cell genome by non-homologous recombination.

[0155] For autonomous replication, the vector may further contain an origin of replication that enables the vector to replicate autonomously in the host cell of interest. Non-limiting examples of bacterial origins of replication are the P15A ori, or the origins of replication of plasmids pBR322, pUC19, pACYC177 (which have a P15A ori), or pACYC184, which allows replication in E. coli, and pUB110, pE194, or pTA1060, which allow replication in Bacillus. Examples of origins of replication for use in yeast host cells are the 2 micron origin of replication, ARS1, ARS4, the combination of ARS1 and CEN3, and the combination of ARS4 and CEN6. The origin of replication may also have a mutation that makes it temperature-sensitive to function in the host cell (see, e.g., Ehrlich, Proc. Natl. Acad. Sci. USA 75:1433

[1978] ).

[0156] More than one copy of a nucleic acid sequence of the present invention may be inserted into a host cell to increase production of the gene product. Increasing the copy number of a nucleic acid sequence can be obtained by integrating at least one additional copy of the sequence into the genome of the host cell, or by including an amplifiable selectable marker gene along with the nucleic acid sequence, where cells containing an amplified copy of the selectable marker gene, and thereby additional copies of the nucleic acid sequence, can be selected by culturing the cells in the presence of an appropriate selectable agent.

[0157] Many expression vectors for use in the present invention are commercially available. Suitable commercial expression vectors include, but are not limited to, the p3xFLAG™ expression vector (Sigma-Aldrich), which contains a CMV promoter and an hGH polyadenylation site for expression in mammalian host cells, and a pBR322 origin of replication and an ampicillin resistance marker for amplification in E. coli. Other commercially available suitable expression vectors include, but are not limited to, pBluescriptII SK(-) and pBK-CMV vectors (Stratagene), as well as plasmids derived from pBR322 (Gibco BRL), pUC (Gibco BRL), pREP4, pCEP4 (Invitrogen), or pPoly (see Lathe et al., Gene 57:193-201

[1987] ).

[0158] Those skilled in the art will recognize that post-translational modifications may occur during enzyme production, depending, inter alia, on the cell system used and the specific amino acid sequence of the enzyme. For example, such post-translational modifications may include cleavage of certain leader sequences, addition of various sugar moieties with different glycosylation and phosphorylation patterns, deamidation, oxidation, disulfide bond scrambling, isomerization, C-terminal lysine clipping, and N-terminal glutamine cyclization. The present invention encompasses the use of engineered carboxylesterase enzymes that have been subjected to or have undergone one or more post-translational modifications. Thus, engineered carboxylesterases of the present invention include those that have undergone post-translational modifications, such as those described herein.

[0159] Deamidation is an enzymatic reaction that primarily converts asparagine (N) to isoaspartic acid (isoaspartate) and aspartic acid (aspartate) (D) in a ratio of approximately 3:1. Thus, this deamidation reaction involves the isomerization of aspartate (D) to isoaspartate. Both the deamidation of asparagine and the isomerization of aspartate involve the intermediate succinimide. To a much lesser extent, deamidation can occur at glutamine residues in a similar manner.

[0160] Oxidation can occur during production and storage (i.e., in the presence of oxidizing conditions) and results in the covalent modification of proteins induced directly by reactive oxygen species or indirectly by reaction with secondary by-products of oxidative stress. Oxidation occurs primarily at methionine residues, but can also occur at tryptophan and free cysteine ​​residues.

[0161] Disulfide bond scrambling can occur during production and under basic storage conditions. Under certain circumstances, disulfide bonds can be broken or incorrectly formed, resulting in unpaired cysteine ​​residues (-SH). These free (unpaired) sulfhydryls (-SH) can facilitate shuffling.

[0162] The N-terminal glutamine (Q) and glutamate (E) residues in engineered carboxylesterases can form pyroglutamate (pGlu) via cyclization. Most pGlu formation occurs during production, but it can also be formed non-enzymatically, depending on the pH and temperature of processing and storage conditions.

[0163] C-terminal lysine clipping is an enzymatic reaction catalyzed by carboxypeptidases and is commonly observed in enzymes. A variation of this process involves the removal of lysine from enzymes derived from recombinant host cells.

[0164] In the present invention, the post-translational modifications and changes in primary amino acid sequence described above do not result in a significant change in the activity of the engineered carboxylesterase enzyme. Host Cells for Expression of Carboxylesterase Polypeptides

[0165] In another aspect, the invention provides a host cell comprising a polynucleotide encoding an improved carboxylesterase polypeptide of the invention, wherein the polynucleotide is operatively linked to one or more control sequences for expression of the carboxylesterase enzyme in the host cell. Host cells for use in expressing the carboxylesterase polypeptides encoded by the expression vectors of the invention are well known in the art and include, but are not limited to, bacterial cells, such as E. coli cells, Geobacillus stearothermophilus cells, Lactobacillus kefir cells, Lactobacillus brevis cells, Lactobacillus minor cells, Mycobacterium tuberculosis cells, Streptomyces cells, and Salmonella typhimurium cells; fungal cells, such as yeast cells (e.g., Saccharomyces cerevisiae cells or Pichia pastoris cells (ATCC Accession No. 201178)); insect cells, such as Drosophila S2 cells and Spodoptera Sf9 cells; animal cells, such as CHO cells, COS cells, BHK cells, 293 cells, and Bowes melanoma cells; and plant cells. Appropriate culture media and growth conditions for the host cells described above are well known in the art.

[0166] Polynucleotides for expression of carboxylesterases can be introduced into cells by a variety of methods known in the art. Techniques include electroporation, biolistic bombardment, liposome-mediated transfection, calcium chloride transfection, and protoplast fusion, among others. Various methods for introducing polynucleotides into cells will be apparent to those skilled in the art.

[0167] Escherichia coli W3110 is the host strain used in the present invention, although it is not intended that the present invention be limited to this particular host strain. An expression vector was created by operatively linking a polynucleotide encoding an improved carboxylesterase to plasmid pCK110900, which was operatively linked to a lac promoter under the control of the lacI repressor. The expression vector also contained a P15a origin of replication and a chloramphenicol resistance gene. Cells containing a polynucleotide of interest in Escherichia coli W3110 can be isolated by subjecting the cells to chloramphenicol selection. Methods for Producing Engineered Carboxylesterase Polypeptides

[0168] In some embodiments, to generate the improved carboxylesterase polynucleotides and polypeptides of the present invention, a naturally occurring carboxylesterase enzyme catalyzing the hydrolysis reaction is obtained (or derived) from X. campestris. In some embodiments, the parent polynucleotide sequence is codon-optimized to enhance expression of the carboxylesterase in a particular host cell. By way of example, a parent polynucleotide sequence encoding a wild-type carboxylesterase polypeptide of X. campestris was constructed from oligonucleotides prepared based on the known polypeptide sequence of the X. campestris carboxylesterase sequence available in the Genbank database (Genbank accession number WP_011038606.1). The parent polynucleotide sequence designated as SEQ ID NO: 1 was codon-optimized for expression in E. coli, and the codon-optimized polynucleotide was cloned into an expression vector, placing expression of the carboxylesterase gene under the control of the lac promoter and lacI repressor gene. Clones expressing active carboxylesterase in E. coli were identified, and the gene was sequenced to confirm their identity. The codon-optimized polynucleotide sequence designated as SEQ ID NO: 1 was the parent sequence utilized as the starting point for most of the experiments and library construction of engineered carboxylesterases evolved from the original wild-type carboxylesterase.

[0169] In some embodiments, the engineered carboxylesterase is obtained by subjecting a polynucleotide encoding a naturally occurring carboxylesterase or a codon-optimized version of a polynucleotide encoding a naturally occurring carboxylesterase to mutagenesis and / or directed evolution, as discussed above. Mutagenesis can be performed according to any of the techniques known in the art, including random mutagenesis and site-directed mutagenesis. Directed evolution can be performed using any of the techniques known in the art for screening for improved promoter variants, including shuffling. Mutagenesis and directed evolution methods are well known in the art (e.g., U.S. Pat. Nos. 5,605,793, 5,811,238, 5,830,721, 5,834,252, 5,837,458, 5,928,905, 6,096,548, 6,117,679, 6,132,970, 6,165,793, 6,180,406). , No. 6,251,674, No. 6,265,201, No. 6,277,638, No. 6,287,861, No. 6,287,862, No. 6,291,242, No. 6,297,0 No. 53, No. 6,303,344, No. 6,309,883, No. 6,319,713, No. 6,319,714, No. 6,323,030, No. 6,326,204, No. 6,33 No. 5,160, No. 6,335,198, No. 6,344,356, No. 6,352,859, No. 6,355,484, No. 6,358,740, No. 6,358,742, No. 6 ,365,377, 6,365,408, 6,368,861, 6,372,497, 6,337,186, 6,376,246, 6,379,964, No. 6,387,702, No. 6,391,552, No. 6,391,640, No. 6,395,547, No. 6,406,855, No. 6,406,910, No. 6,413,74 No. 5, No. 6,413,774, No. 6,420,175, No. 6,423,542, No. 6,426,224, No. 6,436,675, No. 6,444,468, No. 6,455,No. 253, same as No. 6,479,652, same as No. 6,482,647, same as No. 6,483,011, same as No. 6,484,105, same as No. 6,489,146, same as No. 6,500,617, same as No. 6,500,639, same as No. 6,506,602, same as No. 6,506,603, same as No. 6 ,518,065, same as No. 6,519,065, same as No. 6,521,453, same as No. 6,528,311, same as No. 6,537,746, same as No. 6,573,098, same as No. 6,576,467, same as No. 6,579,678, same as No. 6,586,182, same as No. 6,602,986 No. 6,605,430, No. 6,613,514, No. 6,653,072, No. 6,686,515, No. 6,703,240, No. 6,716,631, No. 6,825,001, No. 6,902,922, No. 6,917,882, No. 6,94 No. 6,296, same as No. 6,961,664, same as No. 6,995,017, same as No. 7,024,312, same as No. 7,058,515, same as No. 7,105,297, same as No. 7,148,054, same as No. 7,220,566, same as No. 7,288,375, same as No. 7,384,387, same as No. 7,421,347, same as No. 7,430,477, same as No. 7,462,469, same as No. 7,534,564, same as No. 7,620,500, same as No. 7,620,502, same as No. 7,629,170, same as No. 7,702,464, same as No. 7,747,391, same as No. 7,747,3 No. 93, same as No. 7,751,986, same as No. 7,776,598, same as No. 7,783,428, same as No. 7,795,030, same as No. 7,853,410, same as No. 7,868,138, same as No. 7,783,428, same as No. 7,873,477, same as No. 7,873,499, same as No. 7, No. 904,249, same as No. 7,957,912, same as No. 7,981,614, same as No. 8,014,961, same as No. 8,029,988, same as No. 8,048,674, same as No. 8,058,001, same as No. 8,076,138, same as No. 8,108,150, same as No. 8,170,806 , same as No. 8,224,580, same as No. 8,377,681, same as No. 8,383,346, same as No. 8,457,903, same as No. 8,504,498, same as No. 8,589,085, same as No. 8,762,066, same as No. 8,768,871, same as No. 9,593,326, same as No. 9,665,Nos. 694, 9,684,771, and all related non-U.S. counterparts; Ling et al., Anal. Biochem., 254(2):157-78

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[1994] ; WO95 / 22625; WO97 / 0078; WO97 / 35966; WO98 / 27230; WO00 / 42651; WO01 / 75767; and WO2009 / 152336). As various methods are used in the art, it is not intended that the present invention be limited to any particular method.

[0170] In some embodiments, where the desired improved enzyme property is thermal stability, enzyme activity may be measured after subjecting the enzyme preparation to a defined temperature and measuring the amount of enzyme activity remaining after heat treatment. Clones containing the polynucleotide encoding the carboxylesterase are then isolated and sequenced to identify nucleotide sequence changes, if any, and used to express the enzyme in a host cell.

[0171] If the sequence of the engineered polypeptide is known, a polynucleotide encoding the enzyme can be prepared by standard solid-phase synthesis methods according to known synthesis methods. In some embodiments, fragments of up to about 100 bases can be synthesized individually and then joined (e.g., by enzymatic or chemical ligation, or polymerase-mediated methods) to form any desired contiguous sequence. For example, polynucleotides and oligonucleotides of the present invention can be prepared by chemical synthesis (e.g., using the classical phosphoramidite method described by Beaucage et al., Tet. Lett., 22:1859-69

[1981] , or the method described by Matthes et al., EMBO J., 3:801-05

[1984] , as typically performed in automated synthesis methods). According to the phosphoramidite method, oligonucleotides are synthesized (e.g., in an automated DNA synthesizer), purified, annealed, ligated, and cloned into an appropriate vector. Additionally, essentially any nucleic acid can be obtained from any of a variety of commercial sources (e.g., The Midland Certified Reagent Company, Midland, TX; The Great American Gene Company, Ramona, CA; ExpressGen Inc. Chicago, IL; Operon Technologies Inc., Alameda, CA, and many other sources).

[0172] The engineered carboxylesterase enzyme expressed in the host cells can be recovered from the cells and / or culture medium using any one or more of the well-known techniques for protein purification, including lysozyme treatment, sonication, filtration, salting out, ultracentrifugation, and chromatography, among others. A suitable solution for lysis and highly efficient extraction of proteins from bacteria such as E. coli is commercially available under the trade name CelLytic B (Sigma-Aldrich).

[0173] Chromatographic techniques for isolation of carboxylesterase polypeptides include, among others, reverse-phase chromatography, high performance liquid chromatography (HPLC), ion-exchange chromatography, gel electrophoresis, and affinity chromatography. Conditions for purifying a particular enzyme will depend, in part, on factors such as net charge, hydrophobicity, hydrophilicity, molecular weight, molecular shape, etc., and will be apparent to those of skill in the art.

[0174] In some embodiments, affinity techniques may be used to isolate improved carboxylesterase enzymes. For affinity chromatography purification, any antibody that specifically binds to a carboxylesterase polypeptide may be used. For antibody production, various host animals, including but not limited to rabbits, mice, rats, and the like, may be immunized by injection with the carboxylesterase polypeptide. The carboxylesterase polypeptide can be attached to a suitable carrier, such as BSA, by a side-chain functional group or by a linker attached to a side-chain functional group. Various adjuvants, including but not limited to Freund's (complete and incomplete), inorganic gels such as aluminum hydroxide, surfactants such as lysolecithin, Pluronic® polyols, polyanions, peptides, oil emulsions, keyhole limpet hemocyanin, dinitrophenol, and potentially useful human adjuvants such as BCG (Bacillus Calmette-Guerin) and Corynebacterium parvum, may be used depending on the host species to increase the immunological response.

[0175] The carboxylesterase may be prepared and used in the form of cells expressing the enzyme, as a crude extract, or as an isolated or purified preparation. The carboxylesterase may be prepared as a lyophilizate, in powder form (e.g., acetone powder), or as an enzyme solution. In some embodiments, the carboxylesterase may be in the form of a substantially pure preparation.

[0176] In some embodiments, the carboxylesterase polypeptide may be attached to a solid substrate. The substrate may be a solid phase, a surface, and / or a membrane. The solid support may be composed of organic polymers such as polystyrene, polyethylene, polypropylene, polyfluoroethylene, polyethyleneoxy, and polyacrylamide, as well as copolymers and grafts thereof. The solid support may also be inorganic, e.g., glass, silica, controlled pore glass (CPG), reverse-phase silica, or metal, e.g., gold or platinum. The shape of the substrate may be in the form of beads, spheres, particles, granules, gels, membranes, or surfaces. The surface may be planar, substantially planar, or non-planar. The solid support may be porous or non-porous and may have swelling or non-swelling characteristics. The solid support may be configured in the form of a well, depression, or other container, vessel, feature, or location. Multiple supports may be configured in an array, with various locations addressable by robotic delivery of reagents or detection methods and / or devices. Methods of Using Engineered Carboxylesterase Enzymes

[0177] Whole cells transformed with genes encoding engineered carboxylesterase enzymes and / or optional cofactor-regenerating enzymes, or cell extracts and / or lysates thereof, can be used in a variety of different forms, including solid (e.g., lyophilized, spray dried, etc.) or semi-solid (e.g., crude paste).

[0178] Cell extracts or cell lysates may be partially purified by precipitation (ammonium sulfate, polyethyleneimine, heat treatment, etc.), followed by a desalting procedure (e.g., ultrafiltration, dialysis, etc.) before lyophilization. Any of the cell preparations may be stabilized by cross-linking using known cross-linking agents such as glutaraldehyde, or by immobilization on a solid phase (e.g., Eupergit C, etc.).

[0179] Solid reactants (e.g., enzymes, salts, etc.) may be provided to the reaction in a variety of different forms, including powders (e.g., lyophilized, spray-dried, etc.), solutions, emulsions, suspensions, etc. Reactants can be readily lyophilized or spray-dried using methods and equipment known to those of skill in the art. For example, a protein solution can be frozen in small aliquots at -80°C and then added to a pre-chilled lyophilization chamber, followed by application of a vacuum. After removal of water from the sample, the temperature is typically raised to 4°C for 2 hours, after which the vacuum is released and the lyophilized sample is recovered.

[0180] The pH of the reaction mixture may change during the course of the reaction. The pH of the reaction mixture may be maintained at a desired pH or within a desired pH range. This may be done by adding an acid or base before and / or during the course of the reaction. Alternatively, the pH may be controlled by using a buffer. Thus, in some embodiments, the reaction conditions include a buffer. Suitable buffers for maintaining a desired pH range are known in the art and include, but are not limited to, borate, phosphate, 2-(N-morpholino)ethanesulfonic acid (MES), 3-(N-morpholino)propanesulfonic acid (MOPS), acetate, triethanolamine, and 2-amino-2-hydroxymethyl-propane-1,3-diol (Tris). In some embodiments, the buffer is Tris. In some embodiments of the process, suitable reaction conditions include a buffer (e.g., Tris) concentration of about 0.01 to about 0.4 M, 0.05 to about 0.4 M, 0.1 to about 0.3 M, or about 0.1 to about 0.2 M. In some embodiments, the reaction conditions include a buffer (e.g., Tris) concentration of about 0.01, 0.02, 0.03, 0.04, 0.05, 0.07, 0.1, 0.12, 0.14, 0.16, 0.18, 0.2, 0.3, or 0.4 M.

[0181] In process embodiments, reaction conditions can include a suitable pH. The desired pH or desired pH range can be maintained by the use of an acid or base, a suitable buffer, or a combination of buffer and acid or base addition. The pH of the reaction mixture can be controlled before and / or during the course of the reaction. In some embodiments, suitable reaction conditions include solutions with a pH of about 4 to about 10, about 5 to about 10, about 5 to about 9, about 6 to about 9, or about 6 to about 8. In some embodiments, reaction conditions include solutions with a pH of about 4, 4.5, 5, 5.5, 6, 6.5, 7, 7.5, 8, 8.5, 9, 9.5, or 10.

[0182] In embodiments of the processes herein, appropriate temperatures can be used for reaction conditions, taking into account, for example, increased reaction rate at higher temperatures and enzyme activity over the reaction time. Thus, in some embodiments, suitable reaction conditions include temperatures of about 10°C to about 60°C, about 10°C to about 55°C, about 15°C to about 60°C, about 20°C to about 60°C, about 20°C to about 55°C, about 25°C to about 55°C, or about 30°C to about 50°C. In some embodiments, suitable reaction conditions include temperatures of about 10°C, 15°C, 20°C, 25°C, 30°C, 35°C, 40°C, 45°C, 50°C, 55°C, or 60°C. In some embodiments, the temperature during the enzymatic reaction can be maintained at a specific temperature throughout the course of the reaction. In some embodiments, the temperature during the enzymatic reaction can be adjusted over a temperature profile during the course of the reaction.

[0183] In some embodiments, the reaction conditions may include a surfactant to stabilize or enhance the reaction. The surfactant may include a nonionic, cationic, anionic, and / or amphiphilic surfactant. Exemplary surfactants include, but are not limited to, nonylphenoxypolyethoxyethanol (NP40), Triton® X-100, polyoxyethylene-stearylamine, cetyltrimethylammonium bromide, sodium oleylamide sulfate, polyoxyethylene-sorbitan monostearate, hexadecyldimethylamine, and the like. Any surfactant capable of stabilizing or enhancing the reaction may be used. The concentration of the surfactant used in the reaction may generally be 0.1 to 50 mg / ml, particularly 1 to 20 mg / ml.

[0184] In some embodiments, the reaction conditions can include an antifoaming agent, which helps reduce or prevent the formation of bubbles in the reaction solution, such as when the reaction solution is mixed or dispersed. Antifoaming agents include nonpolar oils (e.g., minerals, silicones, etc.), polar oils (e.g., fatty acids, alkylamines, alkylamides, alkyl sulfates, etc.), and hydrophobic oils (e.g., treated with silica, polyethylene, etc.), some of which also function as surfactants. Exemplary antifoaming agents include Y-30® (Dow Corning), polyglycol copolymers, oxy / ethoxylated alcohols, and polydimethylsiloxanes. In some embodiments, the antifoaming agent can be present at about 0.001% (v / v) to about 5% (v / v), about 0.01% (v / v) to about 5% (v / v), about 0.1% (v / v) to about 5% (v / v), or about 0.1% (v / v) to about 2% (v / v). In some embodiments, an antifoaming agent may be present at about 0.001% (v / v), about 0.01% (v / v), about 0.1% (v / v), about 0.5% (v / v), about 1% (v / v), about 2% (v / v), about 3% (v / v), about 4% (v / v), or about 5% (v / v), or more, as desired to facilitate the reaction.

[0185] The amount of reactants used in the hydrolysis reaction generally varies depending on the amount of desired product and, concomitantly, the amount of carboxylesterase substrate used. The following guidelines can be used to determine the amount of carboxylesterase and / or amine. Generally, the ester substrate can be used at a concentration of about 5 to 200 grams / liter, using about 2 g / L to about 100 g / L of carboxylesterase.

[0186] Those skilled in the art will readily understand how to vary these amounts to tailor them to the desired productivity level and scale of production.

[0187] The order of addition of the reactants is not important. The reactants may be added together to the solvent (e.g., a single-phase solvent, a two-phase aqueous co-solvent system, etc.) at the same time, or alternatively, some of the reactants may be added separately and some may be added together at different times. For example, the carboxylesterase and carboxylesterase substrate may be added to the solvent first.

[0188] For improved mixing efficiency when an aqueous co-solvent system is used, the carboxylesterase may be added and mixed with the aqueous phase first. The organic phase may then be added and mixed, followed by the addition of the carboxylesterase substrate. Alternatively, the carboxylesterase substrate may be premixed in the organic phase before addition to the aqueous phase.

[0189] Suitable conditions for carrying out the carboxylesterase-catalyzed hydrolysis reactions described herein include a wide variety of conditions that can be readily optimized by routine experimentation, including, but not limited to, contacting the engineered carboxylesterase enzyme and substrate at the experimental pH and temperature, and detecting the product, for example, using the methods described in the Examples provided herein.

[0190] The hydrolysis reaction is generally allowed to proceed until coupling of the substrates is essentially complete or nearly complete. Acid formation (product) can be monitored using known methods by detecting the substrate and / or product. Suitable methods include, but are not limited to, gas chromatography, HPLC, and the like. The conversion yield of the acid product generated in the reaction mixture is generally greater than about 40%, may be greater than about 45%, may be greater than about 46%, may be greater than about 47%, may be greater than 48%, and often is greater than about 49%, with the maximum conversion of the racemic substrates of compounds (2a) and (2b) to compound (3a) being 50%. [Example]

[0191] Various features and embodiments of the present invention are illustrated in the following representative examples, which are intended to be illustrative and not limiting.

[0192] In the experimental disclosure below, the following abbreviations apply: ppm (parts per million); M (molar); mM (millimolar), uM and μM (micromolar); nM (nanomolar); mol (mole); gm and g (grams); mg (milligrams); ug and μg (micrograms); L and l (liters); ml and mL (milliliters); cm (centimeters); mm (millimeters); um and μm (micrometers); sec. (seconds); min(s) (minutes); h(s) and hr(s) (hours); U (units); MW (molecular weight); rpm (revolutions per minute); °C (degrees Celsius) degrees); RT (room temperature); MWD (multi-wavelength detector); CDS (coding sequence); DNA (deoxyribonucleic acid); RNA (ribonucleic acid); RP-HPLC (reverse-phase high-performance liquid chromatography); FIOP (fold improvement over positive control); HTP (high-throughput); LB (Luria broth); TFA (trifluoroacetic acid); MeCN (acetonitrile); TEoA (triethanolamine); THF (tetrahydrofuran); Sigma-Aldrich (Sigma-Aldrich, St. Louis, MO); Millipore (Millipore, Corp., Billerica Difco (Difco Laboratories, BD Diagnostic Systems, Detroit, MI); Daicel (Daicel, West Chester, PA); Genetix (Genetix USA, Inc., Beaverton, OR); Molecular Devices (Molecular Devices, LLC, Sunnyvale, CA); Applied Biosystems (Grand Island, NY); Agilent (Agilent Technologies, Inc., Santa Clara, CA); Thermo Scientific (a division of Thermo Fisher Scientific, Waltham, MA); Corning (Corning, Inc., Palo Alto, CA); and Bio-Rad (Bio-Rad Laboratories, Hercules, CA); Phenomenex (Phenomenex, Inc., Torrence, CA); Epicentre (Epicentre, Madison, WI). . Example 1 HTP production of engineered carboxylesterase polypeptides in pCK110900

[0193] A polynucleotide (SEQ ID NO: 1) encoding a polypeptide (SEQ ID NO: 2) from Xanthomonas campestris having esterase activity was cloned into the pCK110900 vector system (see, e.g., U.S. Patent No. 9,714,437, which is hereby incorporated by reference in its entirety) and then expressed in E. coli W3110fhuA under the control of the lac promoter.

[0194] In a 96-well format, single colonies were picked and grown in 180 μL of LB containing 1% glucose and 30 μg / mL of CAM at 30°C, 200 rpm, and 85% humidity. After overnight growth, 20 μL of the grown culture was transferred to a deep-well plate containing 380 μL of TB with 30 μg / mL of CAM. The culture was grown at 30°C, 250 rpm, and 85% humidity. The optical density (OD 600When the RI (ratio of RI to RI) reached 0.6-0.8, expression of the esterase gene was induced by the addition of IPTG to a final concentration of 1 mM. Growth was continued for 18-20 hours after induction. Cells were harvested by centrifugation at 4,000 rpm at 4°C for 10 minutes, and the medium was discarded. The cell pellet was stored at -80°C until ready for use. Prior to assay, the cell pellet was resuspended in 400 μL of lysis buffer containing 1 mg / mL lysozyme, 0.5 mg / mL polymyxin B sulfate (PMBS), 0.04 units DNAse, and 50 mM Tris-HCl, pH 7.5. The plate was agitated at medium speed on a microtiter plate shaker at room temperature for 2 hours. The plate was then centrifuged at 4,000 rpm at 4°C for 20 minutes, and the clarified supernatant was used in the HTP assay reaction described below. Example 2 Shake-flask production of engineered carboxylesterase polypeptides

[0195] The shake flask procedure can be used to generate engineered esterase polypeptide shake flask powders (SFPs), useful for secondary screening assays and / or for use in the biocatalytic processes described herein. Shake flask powder (SFP) enzyme preparation results in a purer preparation of the engineered enzyme (e.g., up to 30% total protein) compared to the cell lysates used in HTP assays, and also allows for the use of more concentrated enzyme solutions. To initiate a culture, a single colony of E. coli containing a plasmid encoding the engineered polypeptide of interest was inoculated into 5 mL of LB with 30 μg / mL CAM and 1% glucose. The culture was grown overnight (at least 16 hours) in a 30°C incubator with shaking at 250 rpm. The grown culture was incubated in a 1 L shake flask until a final OD of 0.05 was reached. 600 The 250 mL culture was diluted in 250 mL of TB with 30 μg / mL of CAM until OD 600 The cells were grown at 250 rpm and 30°C until the ρ reached 0.6–0.8.

[0196] Expression of the esterase gene was induced by the addition of IPTG to a final concentration of 1 mM, and growth was continued for an additional 18-20 hours. Cells were harvested by transferring the culture to pre-weighed centrifuge bottles and then centrifuged at 7,000 rpm at 4°C for 10 minutes. The supernatant was discarded, and the remaining cell pellet was weighed. In some embodiments, cells were stored at -80°C until ready for use. For lysis, the cell pellet was resuspended in 6 mL of cold TEoA. The resuspended cells were lysed using a 110 L MICROFLUIDIZER® Processor System (Microfluidics). Cell debris was removed by centrifugation at 10,000 rpm at 4°C for 60 minutes. The clarified lysate was collected, frozen at -80°C, and then lyophilized using standard methods known in the art. Lyophilization of the frozen clarified lysate yields a dry shake-flask powder containing the crude engineered polypeptide. Example 3 Production of engineered carboxylesterase polypeptides: Fermentation procedures

[0197] In an aerated, stirred 15 L fermentor, 6.0 L of growth medium containing 0.88 g / L ammonium sulfate, 0.98 g / L sodium citrate; 12.5 g / L dipotassium hydrogen phosphate trihydrate, 6.25 g / L potassium dihydrogen phosphate, 6.2 g / L Tastone-154 yeast extract, 0.083 g / L ammonium ferric citrate, and 8.3 ml / L of a trace element solution containing 2 g / L calcium chloride dihydrate, 2.2 g / L zinc sulfate heptahydrate, 0.5 g / L manganese sulfate monohydrate, 1 g / L copper sulfate heptahydrate, 0.1 g / L ammonium molybdate tetrahydrate, and 0.02 g / L sodium tetraborate decahydrate was brought to a temperature of 30° C. Fermenters were inoculated with late exponential growth cultures of E. coli W3110 containing a plasmid carrying the esterase gene of interest, and grown in shake flasks as described in Example 2 to a starting OD of 0.5-2.0. 600The fermentor was agitated at 500-1,500 rpm, and air was supplied to the fermentor at 1.0-15.0 L / min to maintain a dissolved oxygen level of 30% or higher saturation.

[0198] The pH of the culture was controlled at 7.0 by the addition of 20% v / v ammonium hydroxide. Culture growth was maintained by the addition of a feed solution containing 500 g / L cerelose, 12 g / L ammonium chloride, and 10.4 g / L magnesium sulfate heptahydrate. When the culture reached an OD of 50, 600 After reaching a final concentration of 1 mM, expression of the ketoreductase was induced by the addition of isopropyl-β-D-thiogalactoside (IPTG). The culture was grown for an additional 14 hours. The culture was then chilled to 4°C and maintained at 4°C until harvest. Cells were harvested by centrifugation at 5,000G for 40 minutes at 4°C in a Sorval RC12BP centrifuge. The harvested cells were either used directly in subsequent downstream recovery processes or stored at 4°C until such use.

[0199] The cell pellet was resuspended at 4°C in two volumes of 100 mM triethanolamine (chloride) buffer, pH 6.8, for each volume of wet cell paste. Intracellular esterases were released from the cells by passing the suspension through a homogenizer equipped with a two-stage homogenizing valve assembly using 12,000 psi pressure. The cell homogenate was cooled to 4°C immediately after disruption. A 10% w / v solution of polyethyleneimine, pH 7.2, was added to the lysate to a final concentration of 0.5% w / v and stirred for 30 minutes. The resulting suspension was clarified by centrifugation at 5,000 g for 30 minutes in a standard laboratory centrifuge. The clear suspension was decanted and concentrated 10-fold using a cellulose ultrafiltration membrane with a molecular weight cutoff of 30 Kd. The final concentrate was dispensed into shallow containers, frozen at -20°C, and lyophilized to a powder. The esterase powder was stored at -80°C. Example 4 HTP screening of engineered polypeptides derived from SEQ ID NO:2 for improved enantiospecificity (E) for compound (3a)

[0200] An engineered polynucleotide (SEQ ID NO: 1) encoding a polypeptide having the esterase activity of SEQ ID NO: 2 was used to generate the engineered polypeptides in Table 4-1. These polypeptides exhibited improved esterase activity and / or selectivity under desired conditions, e.g., improved formation of the acid product (3a) from the ester substrate compound (racemic mixtures 2a and 2b) compared to the starting polypeptide (SEQ ID NO: 2). Engineered polypeptides having amino acid sequences with even-numbered sequence identifiers were generated from the "backbone" amino acid sequence of SEQ ID NO: 2 as described below, along with the HTP assay and analytical methods described in Example 8 (Method 8.4).

[0201] Directed evolution began with the polynucleotide set forth in SEQ ID NO: 1. Libraries of engineered polynucleotides were generated using a variety of well-known techniques (e.g., saturation mutagenesis, recombination of pre-identified beneficial amino acid differences) and screened using HTP assays and analytical methods to measure the ability of the polypeptides to produce compound (3a).

[0202] HTP enzyme assays were performed in 96-well shallow wells (300 μL volume) with a total reaction volume of 100 μL per well. Reactions contained 50 μL of lysate (described in Example 1), 10% DMSO, 50 g / L substrate (racemic mixture of compounds 2a and 2b), and 200 mM triethanolamine (TEoA) buffer, pH 7.5. The reaction plate was heat-sealed and shaken at 600 rpm at 30° C. for 18 hours. The plate was sealed with a heat seal and incubated in a 2-inch throw Kühner at 600 rpm. The reaction plate was quenched with 150 μL of acetonitrile, mixed for 10 minutes, and then run on a chiral HPLC as described in Example 8, Method 8.4. The peak areas of all four analytes (R-ester (2a), S-ester (2b), R-acid (3a), and S-acid (3b)) were determined from chiral HPLC to calculate the % conversion and enantiospecificity (E value). The % conversion was calculated by using the formula (R-acid (3a) + S-acid (3b)) / (R-ester (2a) + S-ester (2b) + R-acid (3a) + S-acid (3b)) × 100. The FIOP activity of each variant relative to SEQ ID NO: 2 was calculated by dividing the % conversion of the variant by the % conversion of SEQ ID NO: 2. To determine the enantiospecificity (E) of each variant, the %ee of the substrate and product was calculated by using the equations %ee(substrate) = ((peak area of ​​S-ester (2b) - peak area of ​​R-ester (2a) / (peak area of ​​R-ester (2a) + peak area of ​​S-ester (2b)) × 100, %ee(product) = (peak area of ​​R-acid (3a) - S-acid (3b) / peak area of ​​R-acid (3a) + peak area of ​​S-acid (3b)) × 100. The enantiospecificity (E) value of each variant was calculated using the equation E = ln[(1 - ee s ) / (1+ee s / ee p )] / ln[(1+ee s ) / (1+ee s / ee p The FIOP E of each variant compared to SEQ ID NO: 2 was calculated, and all hit variants with improved activity and selectivity are listed in Table 4-1. [Table 4-1-1] [Table 4-1-2] [Table 4-1-3] [Table 4-1-4] [Table 4-1-5] [Table 4-1-6] [Table 4-1-7] [Table 4-1-8] [Table 4-1-9] [Table 4-1-10] [Table 4-1-11] [Table 4-1-12] [Table 4-1-13] [Table 4-1-14] Example 5 Testing of shake flask and fermented powders

[0203] The reaction mixture was prepared using a starting substrate concentration of 100 g / L and 10% v / v DMSO according to the following procedure. The volumes of enzyme powder solution and water could be varied to achieve different overall reaction enzyme concentrations. The reaction conditions for a 500 μL reaction included: 50 μL of 1 M potassium phosphate buffer (pH 7.5), 150 μL of DI water, 100 μL of ester substrate (racemic mixture of compounds 2a and 2b) in DMSO (500 g / L stock in DMSO), and 200 μL of diluted enzyme powder solution. A 50 μL aliquot of 1 M potassium phosphate buffer was added to a 4 mL glass vial equipped with a Teflon-coated magnetic stir bar. DI water was then added to the vial, followed by 100 μL of the ester stock solution in DMSO. Finally, a 200 μL aliquot of the enzyme powder solution was added to the vial to achieve the desired enzyme concentration. A PTFE-lined cap was screwed onto the vial, which was stirred in a preheated aluminum block at 30° C. and 900 rpm for 24 hours.

[0204] The reaction was quenched by adding 2.5 mL of 50% v / v acetonitrile in water to each vial. The vials were vortexed thoroughly, and the cloudy suspension was transferred to an Eppendorf tube. The tubes were centrifuged for approximately 10 minutes to form a cell pellet and clarify the supernatant. The solution was decanted into vials / plates and diluted 2x with 50% acetonitrile in water for both chiral HPLC (Method 8.2) and achiral HPLC (Method 8.1) analysis. The results of the shake flask powder testing are shown in Table 5-1. [Table 5-1] Example 6 Fermented powder testing

[0205] A dose response was performed according to the above protocol described in Example 5, comparing fermented and shake-flask powders of SEQ ID NO: 536 in glass vials with magnetic stirring. Samples were processed and analyzed by chiral (Example 8, Method 8.2) and non-chiral (Example 8, Method 8.1) methods. Data showed that the shake-flask and fermented powders showed similar results. [Table 6-1] Example 7 pH stat experiment

[0206] This general procedure was carried out for testing the fermented powders of SEQ ID NO: 268 and SEQ ID NO: 82. The titrant used included 0.2 M NaOH, 200 g / L K2CO3, and 0.2 M K2CO3. The reaction mixture is obtained using a starting substrate concentration of 100 g / L, 10% v / v DMSO, and 1.25 g / L enzyme by the following procedure.

[0207] pH stat test protocol: A Titronic 300 model was used for the pH stat reaction. The conditions for a 500 μL reaction included 1.5 mL of 1 M potassium phosphate buffer (pH 7.5), 10.19 mL of DI water, 3.0 mL of ester substrate (racemic mixture of compounds 2a and 2b) in DMSO, and 313 μL of 60 g / L enzyme powder solution. The potassium phosphate buffer was added to a 40 mL glass vial equipped with a cross-shaped Teflon-coated magnetic stir bar, and DI water was added to the vial, followed by the solution of ester substrate in DMSO. The reaction was placed in an aluminum block and preheated to 40 °C by magnetic stirring at 500 rpm.

[0208] The pH probe in the pH stat was added to the vial, ensuring that the tip was covered with the solution, and stirring was maintained. The probe was threaded through the opening in the PTFE-lined cap. Data collection was initiated in the pH stat, the probe was removed, and the enzyme solution was rapidly added to the reaction. The probe was replaced, the cap was screwed on, and titrant was dispensed through the needle through the cap, ensuring that the needle was submerged in the solution. Titrant was added as the reaction progressed, increasing in volume. As the volume increased, the stirring speed was increased (typically to 700 rpm over 4-6 hours). After 20-24 hours, data collection was terminated. The probe and needle were removed, and the reaction was quenched by dissolving the entire reaction in 50% acetonitrile in 5x v / v water and stirring for 10 minutes. An aliquot of the solution was transferred to an Eppendorf tube and centrifuged for approximately 10 minutes. Results were analyzed by HPLC as described in Analytical Method 8.4 (described below).

[0209] pH Stat Test Results: All reactions with pH stat were carried out according to the procedure described above. The reactions were carried out at 40°C under magnetic stirring (500-700 rpm) for a period of 20-24 hours. [Table 7-1] Example 8 Analysis method

[0210] An achiral UPLC method was used in the SFP study according to the parameters in Method 8-1.

[0211] Chiral HPLC method 8.2 was used to measure the ee of acids for routine shake flask powder testing, and method details are provided below. [Table 8.1] [Table 8.2-1] [Table 8.2-2]

[0212] Chiral (acid) HPLC method 8.3 was used to assess the enantioselectivity of the shake-flask reaction. [Table 8.3]

[0213] Chiral HPLC method 8.4 was used to measure conversion through the acid and ee% of the ester and was used in Example 4 and in the pH stat studies of SEQ ID NO:268 and SEQ ID NO:82. [Table 8.4]

[0214] While various specific embodiments have been illustrated and described, it will be recognized that various modifications can be made without departing from the spirit and scope of the invention. In an embodiment of the present invention, for example, the following items are provided: (Item 1) 1. An engineered carboxylesterase or functional fragment thereof comprising a polypeptide sequence having at least 80%, 85%, 86%, 87%, 88%, 89%, 90%, 91%, 92%, 93%, 94%, 95%, 96%, 97%, 98%, 99% sequence identity to SEQ ID NO:2, wherein the engineered carboxylesterase comprises at least one substitution or set of substitutions within said polypeptide sequence, and wherein the amino acid positions of said polypeptide sequence are numbered with reference to SEQ ID NO:2. (Item 2) 2. The engineered carboxylesterase of item 1, wherein the engineered carboxylesterase comprises one or more amino acid substitutions at a position selected from X9, X10, X70, X82, and X180. (Item 3) The at least one substitution or set of substitutions in the polypeptide sequence may comprise substitutions selected from the group consisting of: 3 / 4 / 6 / 9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229, 3 / 6 / 9 / 10 / 70 / 99, 3 / 8 / 9 / 10 / 11 / 13 / 70 / 82 / 107 / 229, 3 / 8 / 9 / 10 / 11 / 13 / 70 / 107, 3 / 8 / 9 / 10 / 11 / 70, 3 / 8 / 9 / 10 / 11 / 70 / 229, 3 / 8 / 9 / 10 / 13 / 70 / 82 / 107, 3 / 8 / 9 / 10 / 13 / 70 / 82 / 229, 3 / 8 / 9 / 10 / 70 / 82, 3 / 8 / 9 / 10 / 70 / 82 / 229, 3 / 8 / 9 / 10 / 70 / 229, 3 / 9 / 10 / 11 / 13 / 82, 3 / 9 / 10 / 11 / 70 / 82 / 107, 3 / 9 / 10 / 11 / 70 / 229, 3 / 9 / 10 / 70 / 82, 3 / 9 / 11, 3 / 9 / 11 / 70 / 82 / 180, 4 / 6 / 8 / 9 / 10 / 11 / 38 / 70 / 82 / 180 / 186 / 200 / 214 / 229, 4 / 6 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 6 / 9 / 10 / 11 / 38 / 70 / 82 / 180 / 186 / 200 / 214, 4 / 6 / 9 / 10 / 70 / 82 / 229, 4 / 8 / 9 / 10 / 11 / 13 / 70 / 82 / 107 / 229, 4 / 8 / 9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 8 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 186 / 200 / 214 / 229, 4 / 8 / 9 / 10 / 1 1 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 8 / 9 / 10 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 9 / 10 / 11 / 36 / 65 / 70 / 82 / 180 / 186 / 200 / 214, 4 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214, 4 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 9 / 10 / 11 / 70 / 82 / 180 / 200 / 214, 6 / 8 / 9 / 10 / 38 / 70 / 82 / 180 / 200 / 214, 6 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214 / 229, 6 / 9 / 10 / 38 / 70 / 82 / 180 / 186 / 200 / 214 / 229, 6 / 9 / 10 / 70 / 82 / 180 / 186 / 200 / 214 / 229, 8 / 9 / 10,8 / 9 / 10 / 11 / 13 / 70、8 / 9 / 10 / 11 / 13 / 70 / 82、8 / 9 / 10 / 11 / 13 / 70 / 82 / 107 / 229、8 / 9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214、8 / 9 / 10 / 11 / 38 / 70 / 82 / 180 / 200 / 214 / 229、8 / 9 / 10 / 11 / 43 / 70 / 82 / 180 / 200 / 214、8 / 9 / 10 / 11 / 70、8 / 9 / 10 / 11 / 70 / 82 / 107 / 229、8 / 9 / 10 / 11 / 70 / 229、8 / 9 / 10 / 70、8 / 9 / 10 / 70 / 82 / 229、9 / 10、9 / 10 / 11 / 12 / 49 / 51 / 70 / 73 / 82 / 180 / 200 / 225、9 / 10 / 11 / 12 / 49 / 70 / 73 / 82 / 180、9 / 10 / 11 / 12 / 51 / 54 / 70 / 73 / 82 / 108 / 148 / 180 / 225、9 / 10 / 11 / 12 / 51 / 54 / 70 / 73 / 82 / 110 / 180、9 / 10 / 11 / 12 / 51 / 54 / 70 / 73 / 82 / 148 / 180 / 225、9 / 10 / 11 / 12 / 51 / 70 / 73 / 82 / 148 / 180、9 / 10 / 11 / 12 / 51 / 70 / 73 / 82 / 148 / 180 / 200 / 225、9 / 10 / 11 / 12 / 51 / 70 / 73 / 110 / 148 / 180、9 / 10 / 11 / 17 / 49 / 70 / 82 / 180 / 200、9 / 10 / 11 / 17 / 49 / 70 / 82 / 180 / 219、9 / 10 / 11 / 17 / 51 / 54 / 70 / 82 / 148 / 180 / 200、9 / 10 / 11 / 17 / 51 / 54 / 70 / 82 / 180、9 / 10 / 11 / 17 / 70 / 73 / 82 / 87 / 180 / 219、9 / 10 / 11 / 17 / 70 / 82 / 148 / 180 / 219、9 / 10 / 11 / 35 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 36 / 38 / 65 / 70 / 82 / 180 / 200 / 214 / 229、9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229、9 / 10 / 11 / 36 / 70 / 82 / 180 / 196 / 214、9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214 / 229、9 / 10 / 11 / 38 / 70 / 82 / 180 / 186 / 200 / 214、9 / 10 / 11 / 40 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 49 / 51 / 54 / 70 / 82 / 87 / 108 / 110 / 148 / 180 / 219、9 / 10 / 11 / 49 / 51 / 54 / 70 / 82 / 87 / 108 / 180、9 / 10 / 11 / 49 / 51 / 54 / 70 / 82 / 110 / 148 / 180、9 / 10 / 11 / 49 / 51 / 70 / 82 / 108 / 110 / 148 / 180、9 / 10 / 11 / 49 / 54 / 70 / 82 / 87 / 148 / 180、9 / 10 / 11 / 49 / 70 / 82 / 87 / 108 / 110 / 180 / 200、9 / 10 / 11 / 49 / 70 / 82 / 87 / 180、9 / 10 / 11 / 49 / 70 / 82 / 110 / 148 / 180 / 225、9 / 10 / 11 / 51 / 54 / 70 / 73 / 82 / 108 / 110 / 180、9 / 10 / 11 / 51 / 54 / 70 / 73 / 82 / 108 / 180 / 200 / 225、9 / 10 / 11 / 51 / 54 / 70 / 73 / 82 / 110 / 148 / 180、9 / 10 / 11 / 51 / 54 / 70 / 82 / 148 / 180、9 / 10 / 11 / 51 / 70 / 82 / 110 / 180 / 192 / 219、9 / 10 / 11 / 54 / 70 / 82 / 87 / 108 / 180、9 / 10 / 11 / 54 / 70 / 82 / 87 / 180 / 192、9 / 10 / 11 / 54 / 70 / 82 / 148 / 180 / 200、9 / 10 / 11 / 54 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 70、9 / 10 / 11 / 70 / 71 / 82 / 180 / 200 / 214、9 / 10 / 11 / 70 / 73 / 82 / 87 / 110 / 180、9 / 10 / 11 / 70 / 73 / 82 / 108 / 148 / 180、9 / 10 / 11 / 70 / 73 / 82 / 148 / 180、9 / 10 / 11 / 70 / 73 / 82 / 148 / 180 / 192 / 200、9 / 10 / 11 / 70 / 73 / 82 / 180 / 200 / 214、9 / 10 / 11 / 70 / 82、9 / 10 / 11 / 70 / 82 / 87 / 110 / 180 / 219、9 / 10 / 11 / 70 / 82 / 100 / 180 / 200 / 214、9 / 10 / 11 / 70 / 82 / 107、9 / 10 / 11 / 70 / 82 / 108 / 180 / 200 / 214、9 / 10 / 11 / 70 / 82 / 148 / 180、9 / 10 / 11 / 70 / 82 / 148 / 180 / 200 / 214、9 / 10 / 11 / 70 / 82 / 180、9 / 10 / 11 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 70 / 87 / 180 / 200 / 214、9 / 10 / 11 / 70 / 107、9 / 10 / 12 / 49 / 51 / 54 / 70 / 82 / 108 / 148 / 180 / 225、9 / 10 / 12 / 51 / 54 / 70 / 180 / 225、9 / 10 / 12 / 51 / 70 / 73 / 82 / 148 / 180 / 200、9 / 10 / 12 / 70 / 82 / 148 / 180 / 225、9 / 10 / 12 / 70 / 82 / 180 / 200 / 214、9 / 10 / 13 / 70、9 / 10 / 13 / 70 / 82、9 / 10 / 13 / 70 / 229、9 / 10 / 13 / 207、9 / 10 / 17、9 / 10 / 17 / 49 / 51 / 54 / 70 / 73 / 82 / 108 / 110 / 148 / 180 / 192 / 200 / 219、9 / 10 / 17 / 49 / 51 / 54 / 70 / 82 / 87 / 180 / 219、9 / 10 / 17 / 49 / 70 / 82 / 148 / 180、9 / 10 / 17 / 51 / 54 / 70 / 82 / 87 / 108 / 110 / 180 / 200、9 / 10 / 17 / 51 / 70 / 73 / 82 / 87 / 108 / 110 / 148 / 180 / 219、9 / 10 / 17 / 54 / 70 / 73 / 82 / 87 / 108 / 110 / 148 / 180 / 200、9 / 10 / 17 / 54 / 70 / 73 / 82 / 108 / 110 / 148 / 180、9 / 10 / 17 / 54 / 70 / 82 / 87 / 108 / 110 / 180、9 / 10 / 17 / 70 / 73 / 82 / 87 / 180 / 219、9 / 10 / 17 / 70 / 73 / 82 / 108 / 110 / 148 / 180 / 200、9 / 10 / 17 / 70 / 82 / 87 / 148 / 180、9 / 10 / 17 / 70 / 82 / 87 / 148 / 180 / 192 / 219、9 / 10 / 17 / 70 / 82 / 108 / 148 / 180、9 / 10 / 17 / 70 / 82 / 110 / 148 / 180、9 / 10 / 17 / 70 / 82 / 110 / 148 / 180 / 200、9 / 10 / 17 / 70 / 82 / 180 / 200 / 214、9 / 10 / 17 / 70 / 104 / 160 / 165、9 / 10 / 17 / 70 / 139 / 160 / 165、9 / 10 / 26、9 / 10 / 29 / 70、9 / 10 / 36 / 70 / 82 / 180 / 200 / 214、9 / 10 / 37、9 / 10 / 38 / 70 / 82 / 180 / 200 / 214、9 / 10 / 39、9 / 10 / 39 / 186、9 / 10 / 41、9 / 10 / 45 / 70、9 / 10 / 49 / 51 / 54 / 70 / 73 / 82 / 108 / 110 / 148 / 180 / 192、9 / 10 / 49 / 51 / 54 / 70 / 73 / 82 / 148 / 180、9 / 10 / 49 / 51 / 54 / 70 / 82 / 108 / 110 / 148 / 180 / 225、9 / 10 / 49 / 51 / 54 / 70 / 82 / 110 / 148 / 180、9 / 10 / 49 / 51 / 54 / 70 / 82 / 110 / 180、9 / 10 / 49 / 51 / 54 / 70 / 82 / 148 / 180、9 / 10 / 49 / 51 / 54 / 70 / 82 / 148 / 180 / 192、9 / 10 / 49 / 51 / 70 / 82 / 108 / 148 / 180 / 219、9 / 10 / 49 / 51 / 70 / 82 / 110 / 148 / 180、9 / 10 / 49 / 51 / 70 / 82 / 180 / 225、9 / 10 / 49 / 54 / 70 / 73 / 82 / 87 / 110 / 180、9 / 10 / 49 / 54 / 70 / 82 / 87 / 110 / 180、9 / 10 / 49 / 54 / 70 / 82 / 108 / 148 / 180 / 225、9 / 10 / 49 / 70 / 73 / 82 / 87 / 108 / 148 / 180、9 / 10 / 49 / 70 / 73 / 82 / 108 / 110 / 148 / 180 / 225、9 / 10 / 49 / 70 / 82 / 87 / 148 / 180、9 / 10 / 49 / 70 / 82 / 110 / 180 / 219、9 / 10 / 51 / 54 / 70 / 73 / 82 / 108 / 180、9 / 10 / 51 / 54 / 70 / 73 / 82 / 110 / 148 / 180、9 / 10 / 51 / 54 / 70 / 73 / 82 / 110 / 180、9 / 10 / 51 / 54 / 70 / 73 / 82 / 180 / 219、9 / 10 / 51 / 54 / 70 / 73 / 82 / 180 / 225、9 / 10 / 51 / 54 / 70 / 82 / 87 / 180、9 / 10 / 51 / 54 / 70 / 82 / 148 / 180、9 / 10 / 51 / 54 / 70 / 82 / 180、9 / 10 / 51 / 54 / 70 / 82 / 180 / 200、9 / 10 / 51 / 70 / 82 / 108 / 180、9 / 10 / 51 / 70 / 82 / 110 / 180 / 200、9 / 10 / 51 / 70 / 82 / 180 / 219、9 / 10 / 54 / 70 / 73 / 82 / 108 / 148 / 180 / 192、9 / 10 / 54 / 70 / 82 / 87 / 108 / 180 / 200、9 / 10 / 54 / 70 / 82 / 180、9 / 10 / 62、9 / 10 / 70、9 / 10 / 70 / 73 / 82 / 87 / 108 / 110 / 180、9 / 10 / 70 / 73 / 82 / 87 / 180 / 192 / 219、9 / 10 / 70 / 73 / 82 / 87 / 180 / 200、9 / 10 / 70 / 73 / 82 / 108 / 110 / 148 / 180、9 / 10 / 70 / 73 / 82 / 108 / 110 / 180 / 200 / 219、9 / 10 / 70 / 73 / 82 / 108 / 148 / 180、9 / 10 / 70 / 73 / 82 / 108 / 148 / 180 / 192、9 / 10 / 70 / 73 / 82 / 108 / 148 / 180 / 192 / 219、9 / 10 / 70 / 73 / 82 / 108 / 180、9 / 10 / 70 / 73 / 82 / 148 / 180、9、 / 10 / 70 / 73 / 82 / 148 / 180 / 200, 9 / 10 / 70 / 73 / 82 / 180 / 192, 9 / 10 / 70 / 73 / 82 / 180 / 192 / 219, 9 / 10 / 70 / 82, 9 / 10 / 70 / 82 / 87 / 108 / 110 / 148 / 180 / 192 / 219, 9 / 10 / 70 / 82 / 87 / 108 / 110 / 180, 9 / 10 / 70 / 82 / 87 / 108 / 110 / 180 / 192, 9 / 10 / 70 / 82 / 87 / 180, 9 / 10 / 70 / 82 / 107, 9 / 10 / 70 / 82 / 107 / 229, 9 / 10 / 70 / 82 / 108 / 110 / 180 / 219, 9 / 10 / 70 / 82 / 108 / 180, 9 / 10 / 70 / 82 / 110 / 148 / 180, 9 / 10 / 70 / 82 / 110 / 180 / 219, 9 / 10 / 70 / 82 / 148 / 180, 9 / 10 / 70 / 82 / 148 / 180 / 200, 9 / 10 / 70 / 82 / 148 / 180 / 200 / 219, 9 / 10 / 70 / 82 / 180, 9 / 10 / 70 / 82 / 180 / 192 / 219, 9 / 10 / 70 / 82 / 180 / 200 / 214, 9 / 10 / 70 / 82 / 229, 9 / 10 / 70 / 92, 9 / 10 / 70 / 99, 9 / 10 / 70 / 99 / 229, 9 / 10 / 70 / 107 / 229, 9 / 10 / 70 / 156, 9 / 10 / 70 / 165, 9 / 10 / 70 / 229, 9 / 10 / 88, 9 / 10 / 90, 9 / 10 / 96, 9 / 10 / 107 9 / 10 / 110, 9 / 10 / 111, 9 / 10 / 112, 9 / 10 / 133, 9 / 10 / 178, 9 / 10 / 185, 9 / 10 / 186, 9 / 10 / 196, 9 / 10 / 211, 9 / 10 / 226, 11 / 24, 11 / 24 / 219, and 11 / 36 / 206 / 208, wherein the amino acid positions of the polypeptide sequence are numbered with reference to SEQ ID NO:2. (Item 4) 82. An engineered carboxylesterase or functional fragment thereof, comprising a polypeptide sequence having at least 80%, 85%, 86%, 87%, 88%, 89%, 90%, 91%, 92%, 93%, 94%, 95%, 96%, 97%, 98%, 99% sequence identity to SEQ ID NO: 82, wherein the engineered carboxylesterase comprises at least one substitution or set of substitutions within said polypeptide sequence, and wherein the amino acid positions of said polypeptide sequence are numbered with reference to SEQ ID NO: 82. (Item 5) The at least one substitution or set of substitutions in the polypeptide sequence may comprise substitutions selected from the group consisting of: 3 / 4 / 6 / 9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229, 3 / 6 / 9 / 10 / 70 / 99, 3 / 8 / 9 / 10 / 11 / 13 / 70 / 82 / 107 / 229, 3 / 8 / 9 / 10 / 11 / 13 / 70 / 107, 3 / 8 / 9 / 10 / 11 / 70, 3 / 8 / 9 / 10 / 11 / 70 / 229, 3 / 8 / 9 / 10 / 13 / 70 / 82 / 107, 3 / 8 / 9 / 10 / 13 / 70 / 82 / 229, 3 / 8 / 9 / 10 / 70 / 82, 3 / 8 / 9 / 10 / 70 / 82 / 229, 3 / 8 / 9 / 10 / 70 / 229, 3 / 9 / 10 / 11 / 13 / 82, 3 / 9 / 10 / 11 / 70 / 82 / 107, 3 / 9 / 10 / 11 / 70 / 229, 3 / 9 / 10 / 70 / 82, 3 / 9 / 11, 3 / 9 / 11 / 70 / 82 / 180, 4 / 6 / 8 / 9 / 10 / 11 / 38 / 70 / 82 / 180 / 186 / 200 / 214 / 229, 4 / 6 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 6 / 9 / 10 / 11 / 38 / 70 / 82 / 180 / 186 / 200 / 214, 4 / 6 / 9 / 10 / 70 / 82 / 229, 4 / 8 / 9 / 10 / 11 / 13 / 70 / 82 / 107 / 229, 4 / 8 / 9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 8 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 186 / 200 / 214 / 229, 4 / 8 / 9 / 10 / 1 1 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 8 / 9 / 10 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 9 / 10 / 11 / 36 / 65 / 70 / 82 / 180 / 186 / 200 / 214, 4 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214, 4 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 9 / 10 / 11 / 70 / 82 / 180 / 200 / 214, 6 / 8 / 9 / 10 / 38 / 70 / 82 / 180 / 200 / 214, 6 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214 / 229, 6 / 9 / 10 / 38 / 70 / 82 / 180 / 186 / 200 / 214 / 229, 6 / 9 / 10 / 70 / 82 / 180 / 186 / 200 / 214 / 229, 8 / 9 / 10,8 / 9 / 10 / 11 / 13 / 70、8 / 9 / 10 / 11 / 13 / 70 / 82、8 / 9 / 10 / 11 / 13 / 70 / 82 / 107 / 229、8 / 9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214、8 / 9 / 10 / 11 / 38 / 70 / 82 / 180 / 200 / 214 / 229、8 / 9 / 10 / 11 / 43 / 70 / 82 / 180 / 200 / 214、8 / 9 / 10 / 11 / 70、8 / 9 / 10 / 11 / 70 / 82 / 107 / 229、8 / 9 / 10 / 11 / 70 / 229、8 / 9 / 10 / 70、8 / 9 / 10 / 70 / 82 / 229、9 / 10、9 / 10 / 11 / 12 / 49 / 51 / 70 / 73 / 82 / 180 / 200 / 225、9 / 10 / 11 / 12 / 49 / 70 / 73 / 82 / 180、9 / 10 / 11 / 12 / 51 / 54 / 70 / 73 / 82 / 108 / 148 / 180 / 225、9 / 10 / 11 / 12 / 51 / 54 / 70 / 73 / 82 / 110 / 180、9 / 10 / 11 / 12 / 51 / 54 / 70 / 73 / 82 / 148 / 180 / 225、9 / 10 / 11 / 12 / 51 / 70 / 73 / 82 / 148 / 180、9 / 10 / 11 / 12 / 51 / 70 / 73 / 82 / 148 / 180 / 200 / 225、9 / 10 / 11 / 12 / 51 / 70 / 73 / 110 / 148 / 180、9 / 10 / 11 / 17 / 49 / 70 / 82 / 180 / 200、9 / 10 / 11 / 17 / 49 / 70 / 82 / 180 / 219、9 / 10 / 11 / 17 / 51 / 54 / 70 / 82 / 148 / 180 / 200、9 / 10 / 11 / 17 / 51 / 54 / 70 / 82 / 180、9 / 10 / 11 / 17 / 70 / 73 / 82 / 87 / 180 / 219、9 / 10 / 11 / 17 / 70 / 82 / 148 / 180 / 219、9 / 10 / 11 / 35 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 36 / 38 / 65 / 70 / 82 / 180 / 200 / 214 / 229、9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229、9 / 10 / 11 / 36 / 70 / 82 / 180 / 196 / 214、9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214 / 229、9 / 10 / 11 / 38 / 70 / 82 / 180 / 186 / 200 / 214、9 / 10 / 11 / 40 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 49 / 51 / 54 / 70 / 82 / 87 / 108 / 110 / 148 / 180 / 219、9 / 10 / 11 / 49 / 51 / 54 / 70 / 82 / 87 / 108 / 180、9 / 10 / 11 / 49 / 51 / 54 / 70 / 82 / 110 / 148 / 180、9 / 10 / 11 / 49 / 51 / 70 / 82 / 108 / 110 / 148 / 180、9 / 10 / 11 / 49 / 54 / 70 / 82 / 87 / 148 / 180、9 / 10 / 11 / 49 / 70 / 82 / 87 / 108 / 110 / 180 / 200、9 / 10 / 11 / 49 / 70 / 82 / 87 / 180、9 / 10 / 11 / 49 / 70 / 82 / 110 / 148 / 180 / 225、9 / 10 / 11 / 51 / 54 / 70 / 73 / 82 / 108 / 110 / 180、9 / 10 / 11 / 51 / 54 / 70 / 73 / 82 / 108 / 180 / 200 / 225、9 / 10 / 11 / 51 / 54 / 70 / 73 / 82 / 110 / 148 / 180、9 / 10 / 11 / 51 / 54 / 70 / 82 / 148 / 180、9 / 10 / 11 / 51 / 70 / 82 / 110 / 180 / 192 / 219、9 / 10 / 11 / 54 / 70 / 82 / 87 / 108 / 180、9 / 10 / 11 / 54 / 70 / 82 / 87 / 180 / 192、9 / 10 / 11 / 54 / 70 / 82 / 148 / 180 / 200、9 / 10 / 11 / 54 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 70、9 / 10 / 11 / 70 / 71 / 82 / 180 / 200 / 214、9 / 10 / 11 / 70 / 73 / 82 / 87 / 110 / 180、9 / 10 / 11 / 70 / 73 / 82 / 108 / 148 / 180、9 / 10 / 11 / 70 / 73 / 82 / 148 / 180、9 / 10 / 11 / 70 / 73 / 82 / 148 / 180 / 192 / 200、9 / 10 / 11 / 70 / 73 / 82 / 180 / 200 / 214、9 / 10 / 11 / 70 / 82、9 / 10 / 11 / 70 / 82 / 87 / 110 / 180 / 219、9 / 10 / 11 / 70 / 82 / 100 / 180 / 200 / 214、9 / 10 / 11 / 70 / 82 / 107、9 / 10 / 11 / 70 / 82 / 108 / 180 / 200 / 214、9 / 10 / 11 / 70 / 82 / 148 / 180、9 / 10 / 11 / 70 / 82 / 148 / 180 / 200 / 214、9 / 10 / 11 / 70 / 82 / 180、9 / 10 / 11 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 70 / 87 / 180 / 200 / 214、9 / 10 / 11 / 70 / 107、9 / 10 / 12 / 49 / 51 / 54 / 70 / 82 / 108 / 148 / 180 / 225、9 / 10 / 12 / 51 / 54 / 70 / 180 / 225、9 / 10 / 12 / 51 / 70 / 73 / 82 / 148 / 180 / 200、9 / 10 / 12 / 70 / 82 / 148 / 180 / 225、9 / 10 / 12 / 70 / 82 / 180 / 200 / 214、9 / 10 / 13 / 70、9 / 10 / 13 / 70 / 82、9 / 10 / 13 / 70 / 229、9 / 10 / 13 / 207、9 / 10 / 17、9 / 10 / 17 / 49 / 51 / 54 / 70 / 73 / 82 / 108 / 110 / 148 / 180 / 192 / 200 / 219、9 / 10 / 17 / 49 / 51 / 54 / 70 / 82 / 87 / 180 / 219、9 / 10 / 17 / 49 / 70 / 82 / 148 / 180、9 / 10 / 17 / 51 / 54 / 70 / 82 / 87 / 108 / 110 / 180 / 200、9 / 10 / 17 / 51 / 70 / 73 / 82 / 87 / 108 / 110 / 148 / 180 / 219、9 / 10 / 17 / 54 / 70 / 73 / 82 / 87 / 108 / 110 / 148 / 180 / 200、9 / 10 / 17 / 54 / 70 / 73 / 82 / 108 / 110 / 148 / 180、9 / 10 / 17 / 54 / 70 / 82 / 87 / 108 / 110 / 180、9 / 10 / 17 / 70 / 73 / 82 / 87 / 180 / 219、9 / 10 / 17 / 70 / 73 / 82 / 108 / 110 / 148 / 180 / 200、9 / 10 / 17 / 70 / 82 / 87 / 148 / 180、9 / 10 / 17 / 70 / 82 / 87 / 148 / 180 / 192 / 219、9 / 10 / 17 / 70 / 82 / 108 / 148 / 180、9 / 10 / 17 / 70 / 82 / 110 / 148 / 180、9 / 10 / 17 / 70 / 82 / 110 / 148 / 180 / 200、9 / 10 / 17 / 70 / 82 / 180 / 200 / 214、9 / 10 / 17 / 70 / 104 / 160 / 165、9 / 10 / 17 / 70 / 139 / 160 / 165、9 / 10 / 26、9 / 10 / 29 / 70、9 / 10 / 36 / 70 / 82 / 180 / 200 / 214、9 / 10 / 37、9 / 10 / 38 / 70 / 82 / 180 / 200 / 214、9 / 10 / 39、9 / 10 / 39 / 186、9 / 10 / 41、9 / 10 / 45 / 70、9 / 10 / 49 / 51 / 54 / 70 / 73 / 82 / 108 / 110 / 148 / 180 / 192、9 / 10 / 49 / 51 / 54 / 70 / 73 / 82 / 148 / 180、9 / 10 / 49 / 51 / 54 / 70 / 82 / 108 / 110 / 148 / 180 / 225、9 / 10 / 49 / 51 / 54 / 70 / 82 / 110 / 148 / 180、9 / 10 / 49 / 51 / 54 / 70 / 82 / 110 / 180、9 / 10 / 49 / 51 / 54 / 70 / 82 / 148 / 180、9 / 10 / 49 / 51 / 54 / 70 / 82 / 148 / 180 / 192、9 / 10 / 49 / 51 / 70 / 82 / 108 / 148 / 180 / 219、9 / 10 / 49 / 51 / 70 / 82 / 110 / 148 / 180、9 / 10 / 49 / 51 / 70 / 82 / 180 / 225、9 / 10 / 49 / 54 / 70 / 73 / 82 / 87 / 110 / 180、9 / 10 / 49 / 54 / 70 / 82 / 87 / 110 / 180、9 / 10 / 49 / 54 / 70 / 82 / 108 / 148 / 180 / 225、9 / 10 / 49 / 70 / 73 / 82 / 87 / 108 / 148 / 180、9 / 10 / 49 / 70 / 73 / 82 / 108 / 110 / 148 / 180 / 225、9 / 10 / 49 / 70 / 82 / 87 / 148 / 180、9 / 10 / 49 / 70 / 82 / 110 / 180 / 219、9 / 10 / 51 / 54 / 70 / 73 / 82 / 108 / 180、9 / 10 / 51 / 54 / 70 / 73 / 82 / 110 / 148 / 180、9 / 10 / 51 / 54 / 70 / 73 / 82 / 110 / 180、9 / 10 / 51 / 54 / 70 / 73 / 82 / 180 / 219、9 / 10 / 51 / 54 / 70 / 73 / 82 / 180 / 225、9 / 10 / 51 / 54 / 70 / 82 / 87 / 180、9 / 10 / 51 / 54 / 70 / 82 / 148 / 180、9 / 10 / 51 / 54 / 70 / 82 / 180、9 / 10 / 51 / 54 / 70 / 82 / 180 / 200、9 / 10 / 51 / 70 / 82 / 108 / 180、9 / 10 / 51 / 70 / 82 / 110 / 180 / 200、9 / 10 / 51 / 70 / 82 / 180 / 219、9 / 10 / 54 / 70 / 73 / 82 / 108 / 148 / 180 / 192、9 / 10 / 54 / 70 / 82 / 87 / 108 / 180 / 200、9 / 10 / 54 / 70 / 82 / 180、9 / 10 / 62、9 / 10 / 70、9 / 10 / 70 / 73 / 82 / 87 / 108 / 110 / 180、9 / 10 / 70 / 73 / 82 / 87 / 180 / 192 / 219、9 / 10 / 70 / 73 / 82 / 87 / 180 / 200、9 / 10 / 70 / 73 / 82 / 108 / 110 / 148 / 180、9 / 10 / 70 / 73 / 82 / 108 / 110 / 180 / 200 / 219、9 / 10 / 70 / 73 / 82 / 108 / 148 / 180、9 / 10 / 70 / 73 / 82 / 108 / 148 / 180 / 192、9 / 10 / 70 / 73 / 82 / 108 / 148 / 180 / 192 / 219、9 / 10 / 70 / 73 / 82 / 108 / 180、9 / 10 / 70 / 73 / 82 / 148 / 180、9、 / 10 / 70 / 73 / 82 / 148 / 180 / 200, 9 / 10 / 70 / 73 / 82 / 180 / 192, 9 / 10 / 70 / 73 / 82 / 180 / 192 / 219, 9 / 10 / 70 / 82, 9 / 10 / 70 / 82 / 87 / 108 / 110 / 148 / 180 / 192 / 219, 9 / 10 / 70 / 82 / 87 / 108 / 110 / 180, 9 / 10 / 70 / 82 / 87 / 108 / 110 / 180 / 192, 9 / 10 / 70 / 82 / 87 / 180, 9 / 10 / 70 / 82 / 107, 9 / 10 / 70 / 82 / 107 / 229, 9 / 10 / 70 / 82 / 108 / 110 / 180 / 219, 9 / 10 / 70 / 82 / 108 / 180, 9 / 10 / 70 / 82 / 110 / 148 / 180, 9 / 10 / 70 / 82 / 110 / 180 / 219, 9 / 10 / 70 / 82 / 148 / 180, 9 / 10 / 70 / 82 / 148 / 180 / 200, 9 / 10 / 70 / 82 / 148 / 180 / 200 / 219, 9 / 10 / 70 / 82 / 180, 9 / 10 / 70 / 82 / 180 / 192 / 219, 9 / 10 / 70 / 82 / 180 / 200 / 214, 9 / 10 / 70 / 82 / 229, 9 / 10 / 70 / 92, 9 / 10 / 70 / 99, 9 / 10 / 70 / 99 / 229, 9 / 10 / 70 / 107 / 229, 9 / 10 / 70 / 156, 9 / 10 / 70 / 165, 9 / 10 / 70 / 229, 9 / 10 / 88, 9 / 10 / 90, 9 / 10 / 96, 9 / 10 / 107, 5. The engineered carboxylesterase of item 4, comprising at a position selected from 9 / 10 / 110, 9 / 10 / 111, 9 / 10 / 112, 9 / 10 / 133, 9 / 10 / 178, 9 / 10 / 185, 9 / 10 / 186, 9 / 10 / 196, 9 / 10 / 211, 9 / 10 / 226, 11 / 24, 11 / 24 / 219, and 11 / 36 / 206 / 208, wherein the amino acid positions of the polypeptide sequence are numbered with reference to SEQ ID NO: 82. (Item 6) 1. An engineered carboxylesterase or functional fragment thereof comprising a polypeptide sequence having greater than 80%, 85%, 86%, 87%, 88%, 89%, 90%, 91%, 92%, 93%, 94%, 95%, 96%, 97%, 98%, 99% sequence identity to SEQ ID NO:268, wherein the engineered carboxylesterase comprises at least one substitution or set of substitutions within said polypeptide sequence, and wherein the amino acid positions of said polypeptide sequence are numbered with reference to SEQ ID NO:268. (Item 7) The at least one substitution or set of substitutions in the polypeptide sequence may comprise substitutions selected from the group consisting of: 3 / 4 / 6 / 9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229, 3 / 6 / 9 / 10 / 70 / 99, 3 / 8 / 9 / 10 / 11 / 13 / 70 / 82 / 107 / 229, 3 / 8 / 9 / 10 / 11 / 13 / 70 / 107, 3 / 8 / 9 / 10 / 11 / 70, 3 / 8 / 9 / 10 / 11 / 70 / 229, 3 / 8 / 9 / 10 / 13 / 70 / 82 / 107, 3 / 8 / 9 / 10 / 13 / 70 / 82 / 229, 3 / 8 / 9 / 10 / 70 / 82, 3 / 8 / 9 / 10 / 70 / 82 / 229, 3 / 8 / 9 / 10 / 70 / 229, 3 / 9 / 10 / 11 / 13 / 82, 3 / 9 / 10 / 11 / 70 / 82 / 107, 3 / 9 / 10 / 11 / 70 / 229, 3 / 9 / 10 / 70 / 82, 3 / 9 / 11, 3 / 9 / 11 / 70 / 82 / 180, 4 / 6 / 8 / 9 / 10 / 11 / 38 / 70 / 82 / 180 / 186 / 200 / 214 / 229, 4 / 6 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 6 / 9 / 10 / 11 / 38 / 70 / 82 / 180 / 186 / 200 / 214, 4 / 6 / 9 / 10 / 70 / 82 / 229, 4 / 8 / 9 / 10 / 11 / 13 / 70 / 82 / 107 / 229, 4 / 8 / 9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 8 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 186 / 200 / 214 / 229, 4 / 8 / 9 / 10 / 1 1 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 8 / 9 / 10 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 9 / 10 / 11 / 36 / 65 / 70 / 82 / 180 / 186 / 200 / 214, 4 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214, 4 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 9 / 10 / 11 / 70 / 82 / 180 / 200 / 214, 6 / 8 / 9 / 10 / 38 / 70 / 82 / 180 / 200 / 214, 6 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214 / 229, 6 / 9 / 10 / 38 / 70 / 82 / 180 / 186 / 200 / 214 / 229, 6 / 9 / 10 / 70 / 82 / 180 / 186 / 200 / 214 / 229, 8 / 9 / 10,8 / 9 / 10 / 11 / 13 / 70、8 / 9 / 10 / 11 / 13 / 70 / 82、8 / 9 / 10 / 11 / 13 / 70 / 82 / 107 / 229、8 / 9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214、8 / 9 / 10 / 11 / 38 / 70 / 82 / 180 / 200 / 214 / 229、8 / 9 / 10 / 11 / 43 / 70 / 82 / 180 / 200 / 214、8 / 9 / 10 / 11 / 70、8 / 9 / 10 / 11 / 70 / 82 / 107 / 229、8 / 9 / 10 / 11 / 70 / 229、8 / 9 / 10 / 70、8 / 9 / 10 / 70 / 82 / 229、9 / 10、9 / 10 / 11 / 12 / 49 / 51 / 70 / 73 / 82 / 180 / 200 / 225、9 / 10 / 11 / 12 / 49 / 70 / 73 / 82 / 180、9 / 10 / 11 / 12 / 51 / 54 / 70 / 73 / 82 / 108 / 148 / 180 / 225、9 / 10 / 11 / 12 / 51 / 54 / 70 / 73 / 82 / 110 / 180、9 / 10 / 11 / 12 / 51 / 54 / 70 / 73 / 82 / 148 / 180 / 225、9 / 10 / 11 / 12 / 51 / 70 / 73 / 82 / 148 / 180、9 / 10 / 11 / 12 / 51 / 70 / 73 / 82 / 148 / 180 / 200 / 225、9 / 10 / 11 / 12 / 51 / 70 / 73 / 110 / 148 / 180、9 / 10 / 11 / 17 / 49 / 70 / 82 / 180 / 200、9 / 10 / 11 / 17 / 49 / 70 / 82 / 180 / 219、9 / 10 / 11 / 17 / 51 / 54 / 70 / 82 / 148 / 180 / 200、9 / 10 / 11 / 17 / 51 / 54 / 70 / 82 / 180、9 / 10 / 11 / 17 / 70 / 73 / 82 / 87 / 180 / 219、9 / 10 / 11 / 17 / 70 / 82 / 148 / 180 / 219、9 / 10 / 11 / 35 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 36 / 38 / 65 / 70 / 82 / 180 / 200 / 214 / 229、9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229、9 / 10 / 11 / 36 / 70 / 82 / 180 / 196 / 214、9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214 / 229、9 / 10 / 11 / 38 / 70 / 82 / 180 / 186 / 200 / 214、9 / 10 / 11 / 40 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 49 / 51 / 54 / 70 / 82 / 87 / 108 / 110 / 148 / 180 / 219、9 / 10 / 11 / 49 / 51 / 54 / 70 / 82 / 87 / 108 / 180、9 / 10 / 11 / 49 / 51 / 54 / 70 / 82 / 110 / 148 / 180、9 / 10 / 11 / 49 / 51 / 70 / 82 / 108 / 110 / 148 / 180、9 / 10 / 11 / 49 / 54 / 70 / 82 / 87 / 148 / 180、9 / 10 / 11 / 49 / 70 / 82 / 87 / 108 / 110 / 180 / 200、9 / 10 / 11 / 49 / 70 / 82 / 87 / 180、9 / 10 / 11 / 49 / 70 / 82 / 110 / 148 / 180 / 225、9 / 10 / 11 / 51 / 54 / 70 / 73 / 82 / 108 / 110 / 180、9 / 10 / 11 / 51 / 54 / 70 / 73 / 82 / 108 / 180 / 200 / 225、9 / 10 / 11 / 51 / 54 / 70 / 73 / 82 / 110 / 148 / 180、9 / 10 / 11 / 51 / 54 / 70 / 82 / 148 / 180、9 / 10 / 11 / 51 / 70 / 82 / 110 / 180 / 192 / 219、9 / 10 / 11 / 54 / 70 / 82 / 87 / 108 / 180、9 / 10 / 11 / 54 / 70 / 82 / 87 / 180 / 192、9 / 10 / 11 / 54 / 70 / 82 / 148 / 180 / 200、9 / 10 / 11 / 54 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 70、9 / 10 / 11 / 70 / 71 / 82 / 180 / 200 / 214、9 / 10 / 11 / 70 / 73 / 82 / 87 / 110 / 180、9 / 10 / 11 / 70 / 73 / 82 / 108 / 148 / 180、9 / 10 / 11 / 70 / 73 / 82 / 148 / 180、9 / 10 / 11 / 70 / 73 / 82 / 148 / 180 / 192 / 200、9 / 10 / 11 / 70 / 73 / 82 / 180 / 200 / 214、9 / 10 / 11 / 70 / 82、9 / 10 / 11 / 70 / 82 / 87 / 110 / 180 / 219、9 / 10 / 11 / 70 / 82 / 100 / 180 / 200 / 214、9 / 10 / 11 / 70 / 82 / 107、9 / 10 / 11 / 70 / 82 / 108 / 180 / 200 / 214、9 / 10 / 11 / 70 / 82 / 148 / 180、9 / 10 / 11 / 70 / 82 / 148 / 180 / 200 / 214、9 / 10 / 11 / 70 / 82 / 180、9 / 10 / 11 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 70 / 87 / 180 / 200 / 214、9 / 10 / 11 / 70 / 107、9 / 10 / 12 / 49 / 51 / 54 / 70 / 82 / 108 / 148 / 180 / 225、9 / 10 / 12 / 51 / 54 / 70 / 180 / 225、9 / 10 / 12 / 51 / 70 / 73 / 82 / 148 / 180 / 200、9 / 10 / 12 / 70 / 82 / 148 / 180 / 225、9 / 10 / 12 / 70 / 82 / 180 / 200 / 214、9 / 10 / 13 / 70、9 / 10 / 13 / 70 / 82、9 / 10 / 13 / 70 / 229、9 / 10 / 13 / 207、9 / 10 / 17、9 / 10 / 17 / 49 / 51 / 54 / 70 / 73 / 82 / 108 / 110 / 148 / 180 / 192 / 200 / 219、9 / 10 / 17 / 49 / 51 / 54 / 70 / 82 / 87 / 180 / 219、9 / 10 / 17 / 49 / 70 / 82 / 148 / 180、9 / 10 / 17 / 51 / 54 / 70 / 82 / 87 / 108 / 110 / 180 / 200、9 / 10 / 17 / 51 / 70 / 73 / 82 / 87 / 108 / 110 / 148 / 180 / 219、9 / 10 / 17 / 54 / 70 / 73 / 82 / 87 / 108 / 110 / 148 / 180 / 200、9 / 10 / 17 / 54 / 70 / 73 / 82 / 108 / 110 / 148 / 180、9 / 10 / 17 / 54 / 70 / 82 / 87 / 108 / 110 / 180、9 / 10 / 17 / 70 / 73 / 82 / 87 / 180 / 219、9 / 10 / 17 / 70 / 73 / 82 / 108 / 110 / 148 / 180 / 200、9 / 10 / 17 / 70 / 82 / 87 / 148 / 180、9 / 10 / 17 / 70 / 82 / 87 / 148 / 180 / 192 / 219、9 / 10 / 17 / 70 / 82 / 108 / 148 / 180、9 / 10 / 17 / 70 / 82 / 110 / 148 / 180、9 / 10 / 17 / 70 / 82 / 110 / 148 / 180 / 200、9 / 10 / 17 / 70 / 82 / 180 / 200 / 214、9 / 10 / 17 / 70 / 104 / 160 / 165、9 / 10 / 17 / 70 / 139 / 160 / 165、9 / 10 / 26、9 / 10 / 29 / 70、9 / 10 / 36 / 70 / 82 / 180 / 200 / 214、9 / 10 / 37、9 / 10 / 38 / 70 / 82 / 180 / 200 / 214、9 / 10 / 39、9 / 10 / 39 / 186、9 / 10 / 41、9 / 10 / 45 / 70、9 / 10 / 49 / 51 / 54 / 70 / 73 / 82 / 108 / 110 / 148 / 180 / 192、9 / 10 / 49 / 51 / 54 / 70 / 73 / 82 / 148 / 180、9 / 10 / 49 / 51 / 54 / 70 / 82 / 108 / 110 / 148 / 180 / 225、9 / 10 / 49 / 51 / 54 / 70 / 82 / 110 / 148 / 180、9 / 10 / 49 / 51 / 54 / 70 / 82 / 110 / 180、9 / 10 / 49 / 51 / 54 / 70 / 82 / 148 / 180、9 / 10 / 49 / 51 / 54 / 70 / 82 / 148 / 180 / 192、9 / 10 / 49 / 51 / 70 / 82 / 108 / 148 / 180 / 219、9 / 10 / 49 / 51 / 70 / 82 / 110 / 148 / 180、9 / 10 / 49 / 51 / 70 / 82 / 180 / 225、9 / 10 / 49 / 54 / 70 / 73 / 82 / 87 / 110 / 180、9 / 10 / 49 / 54 / 70 / 82 / 87 / 110 / 180、9 / 10 / 49 / 54 / 70 / 82 / 108 / 148 / 180 / 225、9 / 10 / 49 / 70 / 73 / 82 / 87 / 108 / 148 / 180、9 / 10 / 49 / 70 / 73 / 82 / 108 / 110 / 148 / 180 / 225、9 / 10 / 49 / 70 / 82 / 87 / 148 / 180、9 / 10 / 49 / 70 / 82 / 110 / 180 / 219、9 / 10 / 51 / 54 / 70 / 73 / 82 / 108 / 180、9 / 10 / 51 / 54 / 70 / 73 / 82 / 110 / 148 / 180、9 / 10 / 51 / 54 / 70 / 73 / 82 / 110 / 180、9 / 10 / 51 / 54 / 70 / 73 / 82 / 180 / 219、9 / 10 / 51 / 54 / 70 / 73 / 82 / 180 / 225、9 / 10 / 51 / 54 / 70 / 82 / 87 / 180、9 / 10 / 51 / 54 / 70 / 82 / 148 / 180、9 / 10 / 51 / 54 / 70 / 82 / 180、9 / 10 / 51 / 54 / 70 / 82 / 180 / 200、9 / 10 / 51 / 70 / 82 / 108 / 180、9 / 10 / 51 / 70 / 82 / 110 / 180 / 200、9 / 10 / 51 / 70 / 82 / 180 / 219、9 / 10 / 54 / 70 / 73 / 82 / 108 / 148 / 180 / 192、9 / 10 / 54 / 70 / 82 / 87 / 108 / 180 / 200、9 / 10 / 54 / 70 / 82 / 180、9 / 10 / 62、9 / 10 / 70、9 / 10 / 70 / 73 / 82 / 87 / 108 / 110 / 180、9 / 10 / 70 / 73 / 82 / 87 / 180 / 192 / 219、9 / 10 / 70 / 73 / 82 / 87 / 180 / 200、9 / 10 / 70 / 73 / 82 / 108 / 110 / 148 / 180、9 / 10 / 70 / 73 / 82 / 108 / 110 / 180 / 200 / 219、9 / 10 / 70 / 73 / 82 / 108 / 148 / 180、9 / 10 / 70 / 73 / 82 / 108 / 148 / 180 / 192、9 / 10 / 70 / 73 / 82 / 108 / 148 / 180 / 192 / 219、9 / 10 / 70 / 73 / 82 / 108 / 180、9 / 10 / 70 / 73 / 82 / 148 / 180、9、 / 10 / 70 / 73 / 82 / 148 / 180 / 200, 9 / 10 / 70 / 73 / 82 / 180 / 192, 9 / 10 / 70 / 73 / 82 / 180 / 192 / 219, 9 / 10 / 70 / 82, 9 / 10 / 70 / 82 / 87 / 108 / 110 / 148 / 180 / 192 / 219, 9 / 10 / 70 / 82 / 87 / 108 / 110 / 180, 9 / 10 / 70 / 82 / 87 / 108 / 110 / 180 / 192, 9 / 10 / 70 / 82 / 87 / 180, 9 / 10 / 70 / 82 / 107, 9 / 10 / 70 / 82 / 107 / 229, 9 / 10 / 70 / 82 / 108 / 110 / 180 / 219, 9 / 10 / 70 / 82 / 108 / 180, 9 / 10 / 70 / 82 / 110 / 148 / 180, 9 / 10 / 70 / 82 / 110 / 180 / 219, 9 / 10 / 70 / 82 / 148 / 180, 9 / 10 / 70 / 82 / 148 / 180 / 200, 9 / 10 / 70 / 82 / 148 / 180 / 200 / 219, 9 / 10 / 70 / 82 / 180, 9 / 10 / 70 / 82 / 180 / 192 / 219, 9 / 10 / 70 / 82 / 180 / 200 / 214, 9 / 10 / 70 / 82 / 229, 9 / 10 / 70 / 92, 9 / 10 / 70 / 99, 9 / 10 / 70 / 99 / 229, 9 / 10 / 70 / 107 / 229, 9 / 10 / 70 / 156, 9 / 10 / 70 / 165, 9 / 10 / 70 / 229, 9 / 10 / 88, 9 / 10 / 90, 9 / 10 / 96, 9 / 10 / 107, 9 7. The engineered carboxylesterase of item 6, wherein the amino acid positions of the polypeptide sequence are numbered based on SEQ ID NO: 268. (Item 8) 1. An engineered carboxylesterase or functional fragment thereof comprising a polypeptide sequence having at least 80%, 85%, 86%, 87%, 88%, 89%, 90%, 91%, 92%, 93%, 94%, 95%, 96%, 97%, 98%, 99% sequence identity to SEQ ID NO:536, wherein the engineered carboxylesterase comprises at least one substitution or set of substitutions within said polypeptide sequence, and wherein the amino acid positions of said polypeptide sequence are numbered with reference to SEQ ID NO:536. (Item 9) The at least one substitution or set of substitutions in the polypeptide sequence may comprise substitutions selected from the group consisting of: 3 / 4 / 6 / 9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229, 3 / 6 / 9 / 10 / 70 / 99, 3 / 8 / 9 / 10 / 11 / 13 / 70 / 82 / 107 / 229, 3 / 8 / 9 / 10 / 11 / 13 / 70 / 107, 3 / 8 / 9 / 10 / 11 / 70, 3 / 8 / 9 / 10 / 11 / 70 / 229, 3 / 8 / 9 / 10 / 13 / 70 / 82 / 107, 3 / 8 / 9 / 10 / 13 / 70 / 82 / 229, 3 / 8 / 9 / 10 / 70 / 82, 3 / 8 / 9 / 10 / 70 / 82 / 229, 3 / 8 / 9 / 10 / 70 / 229, 3 / 9 / 10 / 11 / 13 / 82, 3 / 9 / 10 / 11 / 70 / 82 / 107, 3 / 9 / 10 / 11 / 70 / 229, 3 / 9 / 10 / 70 / 82, 3 / 9 / 11, 3 / 9 / 11 / 70 / 82 / 180, 4 / 6 / 8 / 9 / 10 / 11 / 38 / 70 / 82 / 180 / 186 / 200 / 214 / 229, 4 / 6 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 6 / 9 / 10 / 11 / 38 / 70 / 82 / 180 / 186 / 200 / 214, 4 / 6 / 9 / 10 / 70 / 82 / 229, 4 / 8 / 9 / 10 / 11 / 13 / 70 / 82 / 107 / 229, 4 / 8 / 9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 8 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 186 / 200 / 214 / 229, 4 / 8 / 9 / 10 / 1 1 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 8 / 9 / 10 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 9 / 10 / 11 / 36 / 65 / 70 / 82 / 180 / 186 / 200 / 214, 4 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214, 4 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 9 / 10 / 11 / 70 / 82 / 180 / 200 / 214, 6 / 8 / 9 / 10 / 38 / 70 / 82 / 180 / 200 / 214, 6 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214 / 229, 6 / 9 / 10 / 38 / 70 / 82 / 180 / 186 / 200 / 214 / 229, 6 / 9 / 10 / 70 / 82 / 180 / 186 / 200 / 214 / 229, 8 / 9 / 10,8 / 9 / 10 / 11 / 13 / 70、8 / 9 / 10 / 11 / 13 / 70 / 82、8 / 9 / 10 / 11 / 13 / 70 / 82 / 107 / 229、8 / 9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214、8 / 9 / 10 / 11 / 38 / 70 / 82 / 180 / 200 / 214 / 229、8 / 9 / 10 / 11 / 43 / 70 / 82 / 180 / 200 / 214、8 / 9 / 10 / 11 / 70、8 / 9 / 10 / 11 / 70 / 82 / 107 / 229、8 / 9 / 10 / 11 / 70 / 229、8 / 9 / 10 / 70、8 / 9 / 10 / 70 / 82 / 229、9 / 10、9 / 10 / 11 / 12 / 49 / 51 / 70 / 73 / 82 / 180 / 200 / 225、9 / 10 / 11 / 12 / 49 / 70 / 73 / 82 / 180、9 / 10 / 11 / 12 / 51 / 54 / 70 / 73 / 82 / 108 / 148 / 180 / 225、9 / 10 / 11 / 12 / 51 / 54 / 70 / 73 / 82 / 110 / 180、9 / 10 / 11 / 12 / 51 / 54 / 70 / 73 / 82 / 148 / 180 / 225、9 / 10 / 11 / 12 / 51 / 70 / 73 / 82 / 148 / 180、9 / 10 / 11 / 12 / 51 / 70 / 73 / 82 / 148 / 180 / 200 / 225、9 / 10 / 11 / 12 / 51 / 70 / 73 / 110 / 148 / 180、9 / 10 / 11 / 17 / 49 / 70 / 82 / 180 / 200、9 / 10 / 11 / 17 / 49 / 70 / 82 / 180 / 219、9 / 10 / 11 / 17 / 51 / 54 / 70 / 82 / 148 / 180 / 200、9 / 10 / 11 / 17 / 51 / 54 / 70 / 82 / 180、9 / 10 / 11 / 17 / 70 / 73 / 82 / 87 / 180 / 219、9 / 10 / 11 / 17 / 70 / 82 / 148 / 180 / 219、9 / 10 / 11 / 35 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 36 / 38 / 65 / 70 / 82 / 180 / 200 / 214 / 229、9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229、9 / 10 / 11 / 36 / 70 / 82 / 180 / 196 / 214、9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214 / 229、9 / 10 / 11 / 38 / 70 / 82 / 180 / 186 / 200 / 214、9 / 10 / 11 / 40 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 49 / 51 / 54 / 70 / 82 / 87 / 108 / 110 / 148 / 180 / 219、9 / 10 / 11 / 49 / 51 / 54 / 70 / 82 / 87 / 108 / 180、9 / 10 / 11 / 49 / 51 / 54 / 70 / 82 / 110 / 148 / 180、9 / 10 / 11 / 49 / 51 / 70 / 82 / 108 / 110 / 148 / 180、9 / 10 / 11 / 49 / 54 / 70 / 82 / 87 / 148 / 180、9 / 10 / 11 / 49 / 70 / 82 / 87 / 108 / 110 / 180 / 200、9 / 10 / 11 / 49 / 70 / 82 / 87 / 180、9 / 10 / 11 / 49 / 70 / 82 / 110 / 148 / 180 / 225、9 / 10 / 11 / 51 / 54 / 70 / 73 / 82 / 108 / 110 / 180、9 / 10 / 11 / 51 / 54 / 70 / 73 / 82 / 108 / 180 / 200 / 225、9 / 10 / 11 / 51 / 54 / 70 / 73 / 82 / 110 / 148 / 180、9 / 10 / 11 / 51 / 54 / 70 / 82 / 148 / 180、9 / 10 / 11 / 51 / 70 / 82 / 110 / 180 / 192 / 219、9 / 10 / 11 / 54 / 70 / 82 / 87 / 108 / 180、9 / 10 / 11 / 54 / 70 / 82 / 87 / 180 / 192、9 / 10 / 11 / 54 / 70 / 82 / 148 / 180 / 200、9 / 10 / 11 / 54 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 70、9 / 10 / 11 / 70 / 71 / 82 / 180 / 200 / 214、9 / 10 / 11 / 70 / 73 / 82 / 87 / 110 / 180、9 / 10 / 11 / 70 / 73 / 82 / 108 / 148 / 180、9 / 10 / 11 / 70 / 73 / 82 / 148 / 180、9 / 10 / 11 / 70 / 73 / 82 / 148 / 180 / 192 / 200、9 / 10 / 11 / 70 / 73 / 82 / 180 / 200 / 214、9 / 10 / 11 / 70 / 82、9 / 10 / 11 / 70 / 82 / 87 / 110 / 180 / 219、9 / 10 / 11 / 70 / 82 / 100 / 180 / 200 / 214、9 / 10 / 11 / 70 / 82 / 107、9 / 10 / 11 / 70 / 82 / 108 / 180 / 200 / 214、9 / 10 / 11 / 70 / 82 / 148 / 180、9 / 10 / 11 / 70 / 82 / 148 / 180 / 200 / 214、9 / 10 / 11 / 70 / 82 / 180、9 / 10 / 11 / 70 / 82 / 180 / 200 / 214、9 / 10 / 11 / 70 / 87 / 180 / 200 / 214、9 / 10 / 11 / 70 / 107、9 / 10 / 12 / 49 / 51 / 54 / 70 / 82 / 108 / 148 / 180 / 225、9 / 10 / 12 / 51 / 54 / 70 / 180 / 225、9 / 10 / 12 / 51 / 70 / 73 / 82 / 148 / 180 / 200、9 / 10 / 12 / 70 / 82 / 148 / 180 / 225、9 / 10 / 12 / 70 / 82 / 180 / 200 / 214、9 / 10 / 13 / 70、9 / 10 / 13 / 70 / 82、9 / 10 / 13 / 70 / 229、9 / 10 / 13 / 207、9 / 10 / 17、9 / 10 / 17 / 49 / 51 / 54 / 70 / 73 / 82 / 108 / 110 / 148 / 180 / 192 / 200 / 219、9 / 10 / 17 / 49 / 51 / 54 / 70 / 82 / 87 / 180 / 219、9 / 10 / 17 / 49 / 70 / 82 / 148 / 180、9 / 10 / 17 / 51 / 54 / 70 / 82 / 87 / 108 / 110 / 180 / 200、9 / 10 / 17 / 51 / 70 / 73 / 82 / 87 / 108 / 110 / 148 / 180 / 219、9 / 10 / 17 / 54 / 70 / 73 / 82 / 87 / 108 / 110 / 148 / 180 / 200、9 / 10 / 17 / 54 / 70 / 73 / 82 / 108 / 110 / 148 / 180、9 / 10 / 17 / 54 / 70 / 82 / 87 / 108 / 110 / 180、9 / 10 / 17 / 70 / 73 / 82 / 87 / 180 / 219、9 / 10 / 17 / 70 / 73 / 82 / 108 / 110 / 148 / 180 / 200、9 / 10 / 17 / 70 / 82 / 87 / 148 / 180、9 / 10 / 17 / 70 / 82 / 87 / 148 / 180 / 192 / 219、9 / 10 / 17 / 70 / 82 / 108 / 148 / 180、9 / 10 / 17 / 70 / 82 / 110 / 148 / 180、9 / 10 / 17 / 70 / 82 / 110 / 148 / 180 / 200、9 / 10 / 17 / 70 / 82 / 180 / 200 / 214、9 / 10 / 17 / 70 / 104 / 160 / 165、9 / 10 / 17 / 70 / 139 / 160 / 165、9 / 10 / 26、9 / 10 / 29 / 70、9 / 10 / 36 / 70 / 82 / 180 / 200 / 214、9 / 10 / 37、9 / 10 / 38 / 70 / 82 / 180 / 200 / 214、9 / 10 / 39、9 / 10 / 39 / 186、9 / 10 / 41、9 / 10 / 45 / 70、9 / 10 / 49 / 51 / 54 / 70 / 73 / 82 / 108 / 110 / 148 / 180 / 192、9 / 10 / 49 / 51 / 54 / 70 / 73 / 82 / 148 / 180、9 / 10 / 49 / 51 / 54 / 70 / 82 / 108 / 110 / 148 / 180 / 225、9 / 10 / 49 / 51 / 54 / 70 / 82 / 110 / 148 / 180、9 / 10 / 49 / 51 / 54 / 70 / 82 / 110 / 180、9 / 10 / 49 / 51 / 54 / 70 / 82 / 148 / 180、9 / 10 / 49 / 51 / 54 / 70 / 82 / 148 / 180 / 192、9 / 10 / 49 / 51 / 70 / 82 / 108 / 148 / 180 / 219、9 / 10 / 49 / 51 / 70 / 82 / 110 / 148 / 180、9 / 10 / 49 / 51 / 70 / 82 / 180 / 225、9 / 10 / 49 / 54 / 70 / 73 / 82 / 87 / 110 / 180、9 / 10 / 49 / 54 / 70 / 82 / 87 / 110 / 180、9 / 10 / 49 / 54 / 70 / 82 / 108 / 148 / 180 / 225、9 / 10 / 49 / 70 / 73 / 82 / 87 / 108 / 148 / 180、9 / 10 / 49 / 70 / 73 / 82 / 108 / 110 / 148 / 180 / 225、9 / 10 / 49 / 70 / 82 / 87 / 148 / 180、9 / 10 / 49 / 70 / 82 / 110 / 180 / 219、9 / 10 / 51 / 54 / 70 / 73 / 82 / 108 / 180、9 / 10 / 51 / 54 / 70 / 73 / 82 / 110 / 148 / 180、9 / 10 / 51 / 54 / 70 / 73 / 82 / 110 / 180、9 / 10 / 51 / 54 / 70 / 73 / 82 / 180 / 219、9 / 10 / 51 / 54 / 70 / 73 / 82 / 180 / 225、9 / 10 / 51 / 54 / 70 / 82 / 87 / 180、9 / 10 / 51 / 54 / 70 / 82 / 148 / 180、9 / 10 / 51 / 54 / 70 / 82 / 180、9 / 10 / 51 / 54 / 70 / 82 / 180 / 200、9 / 10 / 51 / 70 / 82 / 108 / 180、9 / 10 / 51 / 70 / 82 / 110 / 180 / 200、9 / 10 / 51 / 70 / 82 / 180 / 219、9 / 10 / 54 / 70 / 73 / 82 / 108 / 148 / 180 / 192、9 / 10 / 54 / 70 / 82 / 87 / 108 / 180 / 200、9 / 10 / 54 / 70 / 82 / 180、9 / 10 / 62、9 / 10 / 70、9 / 10 / 70 / 73 / 82 / 87 / 108 / 110 / 180、9 / 10 / 70 / 73 / 82 / 87 / 180 / 192 / 219、9 / 10 / 70 / 73 / 82 / 87 / 180 / 200、9 / 10 / 70 / 73 / 82 / 108 / 110 / 148 / 180、9 / 10 / 70 / 73 / 82 / 108 / 110 / 180 / 200 / 219、9 / 10 / 70 / 73 / 82 / 108 / 148 / 180、9 / 10 / 70 / 73 / 82 / 108 / 148 / 180 / 192、9 / 10 / 70 / 73 / 82 / 108 / 148 / 180 / 192 / 219、9 / 10 / 70 / 73 / 82 / 108 / 180、9 / 10 / 70 / 73 / 82 / 148 / 180、9、 / 10 / 70 / 73 / 82 / 148 / 180 / 200, 9 / 10 / 70 / 73 / 82 / 180 / 192, 9 / 10 / 70 / 73 / 82 / 180 / 192 / 219, 9 / 10 / 70 / 82, 9 / 10 / 70 / 82 / 87 / 108 / 110 / 148 / 180 / 192 / 219, 9 / 10 / 70 / 82 / 87 / 108 / 110 / 180, 9 / 10 / 70 / 82 / 87 / 108 / 110 / 180 / 192, 9 / 10 / 70 / 82 / 87 / 180, 9 / 10 / 70 / 82 / 107, 9 / 10 / 70 / 82 / 107 / 229, 9 / 10 / 70 / 82 / 108 / 110 / 180 / 219, 9 / 10 / 70 / 82 / 108 / 180, 9 / 10 / 70 / 82 / 110 / 148 / 180, 9 / 10 / 70 / 82 / 110 / 180 / 219, 9 / 10 / 70 / 82 / 148 / 180, 9 / 10 / 70 / 82 / 148 / 180 / 200, 9 / 10 / 70 / 82 / 148 / 180 / 200 / 219, 9 / 10 / 70 / 82 / 180, 9 / 10 / 70 / 82 / 180 / 192 / 219, 9 / 10 / 70 / 82 / 180 / 200 / 214, 9 / 10 / 70 / 82 / 229, 9 / 10 / 70 / 92, 9 / 10 / 70 / 99, 9 / 10 / 70 / 99 / 229, 9 / 10 / 70 / 107 / 229, 9 / 10 / 70 / 156, 9 / 10 / 70 / 165, 9 / 10 / 70 / 229, 9 / 10 / 88, 9 / 10 / 90, 9 / 10 / 96, 9 / 10 / 107, 9 9. The engineered carboxylesterase of item 8, wherein the amino acid positions of the polypeptide sequence are numbered based on SEQ ID NO: 536. (Item 10) 2. The engineered carboxylesterase according to item 1, wherein the polypeptide sequence is selected from the even-numbered sequence identifiers of SEQ ID NOs: 4 to 536. (Item 11) 2. The engineered carboxylesterase of claim 1, wherein the engineered carboxylesterase comprises at least one improved property compared to the wild-type Xanthomonas campestris carboxylesterase of SEQ ID NO:2. (Item 12) 12. The engineered carboxylesterase of item 11, wherein the improved property is selected from improved hydrolytic activity, solvent tolerance, thermostability, pH stability, enantioselectivity, regioselectivity, stereoselectivity, substrate range, and / or reduced substrate or product inhibition, and reduced toxicity to a bacterial host cell producing the engineered carboxylesterase. (Item 13) 13. The engineered carboxylesterase of claim 12, wherein the bacterial host cell comprises E. coli. (Item 14) Compound (2a)

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Claims

1. 1. An engineered carboxylesterase comprising a polypeptide sequence having at least 90% sequence identity to SEQ ID NO:2, wherein said engineered carboxylesterase comprises one set of substitutions within said polypeptide sequence at positions 9 / 10 / 70 / 82 / 180, said set of substitutions comprising: W9C, W9A, W9R or W9T; M10I; N70W or N70R; V82Q, V82G or V82A; and P180L wherein the amino acid positions of the polypeptide sequence are numbered with reference to SEQ ID NO:2, and wherein the engineered carboxylesterase exhibits improved esterase activity and / or selectivity compared to the wild-type Xanthomonas campestris carboxylesterase of SEQ ID NO:

2.

2. The at least one substitution or set of substitutions in the polypeptide sequence may comprise substitutions of: 3 / 4 / 6 / 9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 6 / 8 / 9 / 10 / 11 / 38 / 70 / 82 / 180 / 186 / 200 / 214 / 229, 4 / 6 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 6 / 9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 8 ... / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 186 / 200 / 214 / 229, 4 / 8 / 9 / 10 / 11 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 8 / 9 / 10 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214 / 229, 4 / 9 / 10 / 11 / 36 / 65 / 70 / 82 / 180 / 186 / 200 / 214, 4 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214, 4 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 20 0 / 214 / 229, 4 / 9 / 10 / 11 / 70 / 82 / 180 / 200 / 214, 6 / 8 / 9 / 10 / 38 / 70 / 82 / 180 / 200 / 214, 6 / 9 / 10 / 11 / 36 / 70 / 82 / 180 / 200 / 214 / 229, 6 / 9 / 10 / 38 / 70 / 82 / 180 / 186 / 200 / 214 / 229, 6 / 9 / 10 / 70 / 82 / 180 / 186 / 200 / 214 / 229, 8 / 9 / 10 / 11 / 36 / 38 / 70 / 82 / 180 / 200 / 214, 8 / 9 / 10 / 11 / 38 / 70 / 82 / 180 / 200 / 214 / 229, 8 / 9 / 10 / 11 / 43 / 70 / 82 / 180 / 200 / 214, 9 / 10 / 11 / 12 / 49 / 51 / 70 / 73 / 82 / 180 / 200 / 225, 9 / 10 / 11 / 12 / 49 / 70 / 73 / 82 / 180, 9 / 10 / 11 / 12 / 51 / 54 / 70 / 73 / 82 / 108 / 148 / 180 / 225, 9 / 10 / 11 / 12 / 51 / 54 / 70 / 73 / 82 / 110 / 180, 9 / 10 / 11 / 12 / 51 / 54 / 70 / 73 / 82 / 148 / 180 / 225, 9 / 10 / 11 / 12 / 51 / 70 / 73 / 82 / 148 / 180,9/10/11/12/51/70/73/82/148/180/200/225、9/10/11/17/49/70/82/180/200、9/10/11/17/49/70/82/180/219、9/10/11/17/51/54/70/82/148/180/200、9/10/11/17/51/54/70/82/180、9/10/11/17/70/73/82/87/180/219、9/10/11/17/70/82/148/180/219、9/10/11/35/70/82/180/200/214、9/10/11/36/38/65/70/82/180/200/214/229、9/10/11/36/38/70/82/180/200/214、9/10/11/36/38/70/82/180/200/214/229、9/10/11/36/70/82/180/196/214、9/10/11/36/70/82/180/200/214、9/10/11/36/70/82/180/200/214/229、9/10/11/38/70/82/180/186/200/214、9/10/11/40/70/82/180/200/214、9/10/11/49/51/54/70/82/87/108/110/148/180/219、9/10/11/49/51/54/70/82/87/108/180、9/10/11/49/51/54/70/82/110/148/180、9/10/11/49/51/70/82/108/110/148/180、9/10/11/49/54/70/82/87/148/180、9/10/11/49/70/82/87/108/110/180/200、9/10/11/49/70/82/87/180、9/10/11/49/70/82/110/148/180/225、9/10/11/51/54/70/73/82/108/110/180、9/10/11/51/54/70/73/82/108/180/200/225、9/10/11/51/54/70/73/82/110/148/180、9/10/11/51/54/70/82/148/180、9/10/11/51/70/82/110/180/192/219、9/10/11/54/70/82/87/108/180、9/10/11/54/70/82/87/180/192、9/10/11/54/70/82/148/180/200、9/10/11/54/70/82/180/200/214、9/10/11/70/71/82/180/200/214、9/10/11/70/73/82/87/110/180、9/10/11/70/73/82/108/148/180、9/10/11/70/73/82/148/180、9/10/11/70/73/82/148/180/192/200、9/10/11/70/73/82/180/200/214、9/10/11/70/82/87/110/180/219、9/10/11/70/82/100/180/200/214、9/10/11/70/82/108/180/200/214、9/10/11/70/82/148/180、9/10/11/70/82/148/180/200/214、9/10/11/70/82/180、9/10/11/70/82/180/200/214、9/10/12/49/51/54/70/82/108/148/180/225、9/10/12/51/70/73/82/148/180/200、9/10/12/70/82/148/180/225、9/10/12/70/82/180/200/214、9/10/17/49/51/54/70/73/82/108/110/148/180/192/200/219、9/10/17/49/51/54/70/82/87/180/219、9/10/17/49/70/82/148/180、9/10/17/51/54/70/82/87/108/110/180/200、9/10/17/51/70/73/82/87/108/110/148/180/219、9/10/17/54/70/73/82/87/108/110/148/180/200、9/10/17/54/70/73/82/108/110/148/180、9/10/17/54/70/82/87/108/110/180、9/10/17/70/73/82/87/180/219、9/10/17/70/73/82/108/110/148/180/200、9/10/17/70/82/87/148/180、9/10/17/70/82/87/148/180/192/219、9/10/17/70/82/108/148/180、9/10/17/70/82/110/148/180、9/10/17/70/82/110/148/180/200、9/10/17/70/82/180/200/214、9/10/36/70/82/180/200/214、9/10/38/70/82/180/200/214、9/10/49/51/54/70/73/82/108/110/148/180/192、9/10/49/51/54/70/73/82/148/180、9/10/49/51/54/70/82/108/110/148/180/225、9/10/49/51/54/70/82/110/148/180、9/10/49/51/54/70/82/110/180、9/10/49/51/54/70/82/148/180、9/10/49/51/54/70/82/148/180/192、9/10/49/51/70/82/108/148/180/219、9/10/49/51/70/82/110/148/180、9/10/49/51/70/82/180/225、9/10/49/54/70/73/82/87/110/180、9/10/49/54/70/82/87/110/180、9/10/49/54/70/82/108/148/180/225、9/10/49/70/73/82/87/108/148/180、9/10/49/70/73/82/108/110/148/180/225、9/10/49/70/82/87/148/180、9/10/49/70/82/110/180/219、9/10/51/54/70/73/82/108/180、9/10/51/54/70/73/82/110/148/180、9/10/51/54/70/73/82/110/180、9/10/51/54/70/73/82/180/219、9/10/51/54/70/73/82/180/225、9/10/51/54/70/82/87/180、9/10/51/54/70/82/148/180、9/10/51/54/70/82/180、9/10/51/54/70/82/180/200、9/10/51/70/82/108/180、9/10/51/70/82/110/180/200、9 / 10 / 51 / 70 / 82 / 180 / 219, 9 / 10 / 54 / 70 / 73 / 82 / 108 / 148 / 180 / 192, 9 / 10 / 54 / 70 / 82 / 87 / 108 / 180 / 200, 9 / 10 / 54 / 70 / 82 / 180, 9 / 10 / 70 / 73 / 82 / 87 / 108 / 110 / 180, 9 / 10 / 70 / 73 / 82 / 87 / 180 / 192 / 219, 9 / 10 / 70 / 73 / 82 / 87 / 180 / 200, 9 / 10 / 70 / 73 / 82 / 108 / 110 / 148 / 180, 9 / 10 / 70 / 73 / 82 / 108 / 110 / 180 / 200 / 219, 9 / 10 / 70 / 73 / 82 / 108 / 148 / 180, 9 / 10 / 70 / 73 / 82 / 108 / 148 / 180 / 192, 9 / 10 / 70 / 73 / 82 / 108 / 148 / 180 / 192 / 219, 9 / 10 / 70 / 73 / 82 / 108 / 180, 9 / 10 / 70 / 73 / 82 / 148 / 180, 9 / 10 / 70 / 73 / 82 / 148 / 180 / 200, 9 / 10 / 70 / 73 / 82 / 180 / 192, 9 / 10 / 70 / 73 / 82 / 180 / 192 / 219, 9 / 10 / 70 / 82 / 87 / 108 / 110 / 180, 9 / 10 / 70 / 82 / 87 / 108 / 110 / 180 / 192, 9 / 10 / 70 / 82 / 87 / 180, 9 / 10 / 70 / 82 / 108 / 110 / 180 / 219, 9 / 10 / 70 / 82 / 108 / 180, 9 / 10 / 70 / 82 / 110 / 148 / 180, 9 / 10 / 70 / 82 / 110 / 10. The engineered carboxylesterase of claim 1, further comprising at a position selected from: 180 / 219, 9 / 10 / 70 / 82 / 148 / 180, 9 / 10 / 70 / 82 / 148 / 180 / 200, 9 / 10 / 70 / 82 / 148 / 180 / 200 / 219, 9 / 10 / 70 / 82 / 180, 9 / 10 / 70 / 82 / 180 / 192 / 219, and 9 / 10 / 70 / 82 / 180 / 200 / 214, wherein the amino acid positions of the polypeptide sequence are numbered with reference to SEQ ID NO:

2.

3. The polypeptide sequences are selected from the group consisting of SEQ ID NOs: 6, 10-40, 44-160, 164, 168-178, 184-194, 198-214, 220, 222, 226, 228, 232-238, 246-258, 266-274, 278, 288-298, 302, 308, 316-322, 326, 328, 332, 336-340, 348, 356, 372, 374, 2. The engineered carboxylesterase of claim 1, wherein the engineered carboxylesterase is selected from the even-numbered sequence identifiers: 382, ​​384, 388-392, 406, 412, 416, 424, 428-434, 456-460, 466, 468, 474, 478, 480, 486, 490, 494, 496, 502-506, 512, 516, 520, 524, 528-532, and 536.

4. 2. The engineered carboxylesterase of claim 1, wherein the engineered carboxylesterase comprises at least one improved property compared to the wild-type Xanthomonas campestris carboxylesterase of SEQ ID NO:

2.

5. 5. The engineered carboxylesterase of claim 4, wherein the improved properties are selected from improved hydrolytic activity, solvent tolerance, thermostability, pH stability, enantioselectivity, regioselectivity, stereoselectivity, substrate range, and / or reduced substrate or product inhibition, and reduced toxicity to a bacterial host cell producing the engineered carboxylesterase.

6. 6. The engineered carboxylesterase of claim 5, wherein the bacterial host cell comprises E. coli.

7. Compound (2a) 【Chemistry 4】 Compound (3a) 【Chemistry 5】 2. The engineered carboxylesterase of claim 1, which exhibits greater activity in the conversion of

8. Compound (2a) 【Chemistry 6】 Compound (3a) 【Chemistry 7】 2. The engineered carboxylesterase of claim 1, which exhibits greater enantioselectivity in the conversion of

9. 10. The engineered carboxylesterase of claim 1, which is purified.

10. 10. The engineered carboxylesterase of claim 1, which is immobilized.

11. 10. A composition comprising at least one engineered carboxylesterase of claim 1.

12. A polynucleotide encoding the engineered carboxylesterase of claim 1.

13. 1. A polynucleotide encoding at least one engineered carboxylesterase comprising a polypeptide sequence having at least 90% sequence identity to SEQ ID NO:2, wherein said engineered carboxylesterase comprises one set of substitutions in said polypeptide sequence at positions 9 / 10 / 70 / 82 / 180, said set of substitutions comprising: W9C, W9A, W9R or W9T; M10I; N70W or N70R; V82Q, V82G or V82A; and P180L wherein the amino acid positions of said polypeptide sequence are numbered based on SEQ ID NO:

2.

14. 14. The polynucleotide of claim 12 or 13, operably linked to a control sequence.

15. 14. The polynucleotide of claim 12 or 13, which is codon-optimized.

16. 14. An expression vector comprising at least one polynucleotide according to claim 12 or 13.

17. A host cell comprising at least one expression vector according to claim 16.

18. A host cell comprising at least one polynucleotide according to claim 12 or 13.

19. 19. The host cell of claim 17 or 18, which is E. coli.

20. 19. A method for producing an engineered carboxylesterase in a host cell, the method comprising culturing a host cell of claim 17 or claim 18 under suitable conditions such that at least one engineered carboxylesterase is produced.

21. 21. The method of claim 20, further comprising recovering the at least one engineered carboxylesterase from the culture and / or host cell.

22. 22. The method of claim 21, further comprising purifying the at least one engineered carboxylesterase.

Citation Information

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