Salvia miltiorrhiza P450 mutant for preparing tanshinone compound
A technology of tanshinone and hypotanshinone diene, which is applied in the direction of introducing foreign genetic material, application, fungi, etc. by using a carrier, and can solve the problems of output limitation, low efficiency, and reduced catalytic activity.
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Embodiment 1
[0093] Embodiment 1, the acquisition of mutant
[0094] CYP76AH1 and CYP76AH3 proteins are P450 proteins involved in tanshinone biosynthesis. catalytic pathway see figure 1 . figure 1 In , each protein can catalyze the substrate before the arrow, but with different efficiencies.
[0095] The amino acid sequence of CYP76AH1 is shown in sequence 2 of the sequence listing, and its coding gene (CYP76AH1) is shown in sequence 1 of the sequence listing.
[0096] The amino acid sequence of CYP76AH3 is shown in sequence 4 of the sequence listing, and its coding gene (CYP76AH3) is shown in sequence 3 of the sequence listing.
[0097] Sequence analysis, mutation and functional verification of CYP76AH3 revealed four active sites related to the catalytic efficiency of CYP76AH1, namely amino acid residues 301, 306, 395 and 479. These 4 amino acid sites were mutated in different forms (Table 1), and a total of 15 CYP76AH1 protein mutants were obtained (Table 2).
[0098] Table 1 Four a...
Embodiment 2
[0104] Embodiment 2, preparation of recombinant expression vector
[0105] 1. Construction of wild-type recombinant expression vector
[0106] 1. Insert the double-stranded DNA molecule shown in sequence 1 into the BamHI site of the expression vector pESC-His (circular plasmid shown in sequence 5 of the sequence listing) to obtain the recombinant expression vector pESC-His-H1WT (sequencing verified correctly). The DNA molecule shown in sequence 1 encodes the protein shown in sequence 2.
[0107] 2. Insert the double-stranded DNA molecule shown in Sequence 3 between the BamHI sites of the expression vector pESC-His to obtain the recombinant expression vector pESC-His-H3WT (sequence verification is correct). The DNA molecule shown in sequence 3 encodes the protein shown in sequence 4.
[0108] 2. Construction of mutant recombinant expression vector
[0109] 1. Insert the double-stranded DNA molecule 1 between the BamHI sites of the expression vector pESC-His to obtain the re...
Embodiment 3
[0124] Example 3, preparation of recombinant bacteria and extraction of microsomal protein
[0125] 1. The wild-type recombinant expression vector, mutant recombinant expression vector and expression vector pESC-His prepared in Example 2 were respectively introduced into the yeast expression strain BY4741 integrating the Arabidopsis P450 reductase ATR1 to obtain wild-type recombinant bacteria, 15 species Mutant recombinant bacteria and empty vector recombinant bacteria.
[0126] 2. The wild-type recombinant bacteria obtained in step 1 and 15 kinds of mutant recombinant bacteria were inoculated respectively in the defective SD-His liquid medium for yeast transformation (Ubiquino, SD-His liquid medium formula: 8g / LSD-His powder , 20g / L glucose, sterilized for 15min), cultured at 30°C and 200 rpm for 48 hours, centrifuged at 5000 rpm for 5min to collect the bacteria, and used an equal volume of YPL liquid medium (10g / L yeast extract, 20g / L peptone, 20g / L galactose) after resusp...
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