饱和突变
突变
生物信息学
定点突变
蛋白质工程
定向进化
计算生物学
活动站点
定向分子进化
化学
合理设计
生物化学
醇脱氢酶
底物特异性
酶
遗传学
生物
基因
突变体
标识
DOI:10.1007/978-1-0716-1826-4_4
摘要
Directed enzyme evolution has proven to be a powerful means to endow biocatalysts with novel catalytic repertoires. Apart from completely random gene mutagenesis, site-directed or site-saturation mutagenesis requires a semi-rational selection of the amino acid positions or the substituted residues, which can dramatically reduce the screening efforts in protein engineering. To this end, in silico prediction methods play a pivotal role in targeting site-saturation mutagenesis. In this chapter, we provide two distinct computational methods, (a) conformational dynamics-guided design and (b) protein-ligand interaction fingerprinting analysis, to identify specific positions for site-saturation mutagenesis toward manipulating substrate specificity/stereoselectivity of an alcohol dehydrogenase, and improving activity of a carboxylic acid reductase, respectively.
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