蛋白质工程
突变
水解酶
定向进化
计算生物学
脯氨酸
化学
生物化学
变性(裂变材料)
突变
蛋白质结构
热稳定性
酶
生物
氨基酸
突变体
基因
核化学
作者
Bryan J. Jones,Huey Yee Lim,Jun Huang,Romas J. Kazlauskas
出处
期刊:Biochemistry
[American Chemical Society]
日期:2017-10-31
卷期号:56 (50): 6521-6532
被引量:68
标识
DOI:10.1021/acs.biochem.7b00571
摘要
A review of the previous stabilization of α/β-hydrolase fold enzymes revealed many different strategies, but no comparison of strategies on the same enzyme. For this reason, we compared five strategies to identify stabilizing mutations in a model α/β-hydrolase fold enzyme, salicylic acid binding protein 2, to reversible denaturation by urea and to irreversible denaturation by heat. The five strategies included one location agnostic approach (random mutagenesis using error-prone polymerase chain reaction), two structure-based approaches [computational design (Rosetta, FoldX) and mutation of flexible regions], and two sequence-based approaches (addition of proline at locations where a more stable homologue has proline and mutation to consensus). All strategies identified stabilizing mutations, but the best balance of success rate, degree of stabilization, and ease of implementation was mutation to consensus. A web-based automated program that predicts substitutions needed to mutate to consensus is available at http://kazlab.umn.edu .
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