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Exploring the mechanism responsible for cellulase thermostability by structure-guided recombination

PLoS ONE. 2016; 
Chia-Jung Chang , Cheng-Chung Lee , Yueh-Te Chan, Devin L. Trudeau, Mei-Huey Wu, Chih-Hsuan Tsai, Su-May Yu, Tuan-Hua David Ho, Andrew H.-J. Wang, Chwan-Deng Hsiao, Frances H. Arnold, Yu-Chan Chao
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Bacterial Expression System … Thirteen chimeric GH5 genes were optimized for expression in E. coli, and the gene sequences were synthesized by GenScript, USA The PCR fragments and synthesized gene sequences were cloned into CloneJET ™ PCR cloning vector (Thermo Scientific) and subsequently … Get A Quote

摘要

Cellulases from Bacillus and Geobacillus bacteria are potentially useful in the biofuel and animal feed industries. One of the unique characteristics of these enzymes is that they are usually quite thermostable. We previously identified a cellulase, GsCelA, from thermophilic Geobacillus sp. 70PC53, which is much more thermostable than its Bacillus homolog, BsCel5A. Thus, these two cellulases provide a pair of structures ideal for investigating the mechanism regarding how these cellulases can retain activity at high temperature. In the present study, we applied the SCHEMA non-contiguous recombination algorithm as a novel tool, which assigns protein sequences into blocks for domain swapping in a way that lessens ... More

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