A kind of alkaline cellulase and its dna sequence and application
A cellulase and alkaline technology, applied in the field of polypeptides, can solve the problems of glucose difficulty, cellulose regeneration and utilization limitations, etc., and achieve the effect of good alkali-resistant cellulase activity and broad industrial application prospects
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Embodiment 1
[0043] The acquisition of metagenomic DNA in the soil sample of embodiment 1
[0044] Papermaking wastewater sediment samples were collected from the outfall of a paper mill in Xuchang City, Henan Province.
[0045] Take two 50 mL centrifuge tubes, weigh papermaking wastewater sediment samples, 6 g in each tube, add 13.5 mL of DNA extraction buffer (containing 100 mM EDTA, 100 mM sodium phosphate, 1.5 M NaCl, 1% CTAB and 100 mM Tris -Hcl, pH 8.0), vortexed to mix, placed on a shaker at 220 rpm, activated at 37°C for 30 min, and then added 1.5 mL of 20% SDS to each tube to make the final concentration 2% (w / v). Then, bathe in a water bath at 65°C for 2 h, and gently invert up and down several times every 15 min to mix well. Centrifuge at 6,000 g at room temperature for 10 min. After collecting the supernatant, transfer it to a clean centrifuge tube, add an equal volume of chloroform:isoamyl alcohol (24:1, V / V), and gently invert up and down to mix. Then centrifuge at 11,000 g...
Embodiment 2
[0046] Example 2 Construction of the Metagenome Library of Papermaking Wastewater Sediments and Acquisition of DNA Sequences
[0047] 1. Construction of metagenomic library of papermaking wastewater sediment
[0048] The metagenomic DNA of the papermaking wastewater sediment extracted in Example 1 was partially digested with EcoRI enzyme, and a 2.5-7.5 kb digested fragment was recovered by electrophoresis. The recovered DNA fragments were connected to the pUC118 vector (Takara Company) that had been digested and dephosphorylated by EcoRI, transformed into E.coli DH5α competent cells by electric shock, and coated with 100 μg / mL ampicillin (Amp), 40 LB solid plate of μg / mL X-gal and 0.5 mM IPTG, thereby constructing a library with a capacity of 10 7 Metagene library with multiple transformants and good diversity.
[0049] 2. Screening and sequence analysis of target genes
[0050] Randomly pick the clones on the plate and transfer them in parallel to CMC plates containing 100...
Embodiment 3
[0052] Example 3 Obtaining of recombinant protein expressed by DNA sequence
[0053] 1. Inoculate the positive clones obtained in Example 2 into 5 mL LB medium (100 μg / mL Amp), culture on a shaker at 220 rpm at 37 °C for 12 h, and extract the plasmid.
[0054] 2. Design primers P1 and P2. The two ends of the primers are respectively introduced with EcoRI and Xho I restriction sites that can be inserted into the Saccharomyces cerevisiae expression vector pyes2.
[0055] The nucleotide sequence of primer P1 (upstream primer) is shown in SEQ ID NO:3:
[0056] The nucleotide sequence of primer P2 (downstream primer) is shown in SEQ ID NO:4:
[0057] 3. Using the extracted plasmid as a template, PCR amplification was performed using primers P1 and P2.
[0058] The total volume of the PCR system is 50 μL, including Prime STAR TM Max Premix 25 µL (2.5 U), two primers each 2 µL (10 µM), sterilized distilled water 20 µL and template DNA 1 µL (1 ng).
[0059] PCR amplification condi...
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