生物催化
生化工程
催化作用
定向进化
突变
化学
定向分子进化
酶
蛋白质工程
人工酶
酶催化
生物化学
工程类
反应机理
突变
突变体
基因
作者
Yufei Cao,Xiaoyang Li,Jun Ge
标识
DOI:10.1016/j.tibtech.2021.01.002
摘要
Enzymatic catalysis, which has been driving biological processes in a green, mild, and efficient manner for billions of years, is increasingly being used in industrial processes to manufacture chemicals, pharmaceuticals, and materials for human society. Since enzymes were discovered, strategies to adapt enzymes for use as catalysts for industrial processes, such as chemical modification, immobilization, site-directed mutagenesis, directed evolution of enzymes, artificial metalloenzymes, and computational design, have been continuously pursued. In contrast to these strategies, editing enzymes to easily integrate biocatalysis with chemocatalysis is a potential way to apply enzymes in industry. Enzyme catalyst editing focuses on fine-tuning the microenvironment surrounding the enzyme or achieving a new catalytic function to construct better biocatalysis under non-natural conditions for the enzyme.
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