羟基化
合成子
立体选择性
化学
细胞色素P450
突变
定向进化
立体化学
细胞色素
蛋白质工程
突变体
组合化学
酶
生物化学
催化作用
基因
作者
Ling-Zhi Xie,Yun Zhang,Ruyue Zhang,Haibo Cui,Bao‐Dong Cui,Wen‐Yong Han,Nan‐Wei Wan,Zhi Li,Yong‐Zheng Chen
标识
DOI:10.1016/j.gresc.2023.01.005
摘要
Chiral methyl mandelates are useful synthons in organic transformation and pharmaceutical synthesis. Green synthesis of these valuable compounds by direct C–H activating oxidative hydroxylation has attracted keen interest. Described herein is achieving the stereoselective and efficient bio-hydroxylation of methyl 2-phenylacetates to the chiral methyl mandelates by directed evolution of the cytochrome P450DA hydroxylase. In the present study, a new colorimetric high-throughput screening assay was successfully developed based on a dual-enzyme cascade for the engineering of the P450DA's hydroxylation activity. Several beneficial variants with enhanced bio-hydroxylation activity were created by combining random mutagenesis and site-saturated/directed mutagenesis strategies. Whole-cell bio-hydroxylation of various methyl 2-phenylacetates using the best septuplet-mutant P450DA-11 yielded the corresponding chiral methyl mandelates in up to 92% isolated yields and >99% ee.
科研通智能强力驱动
Strongly Powered by AbleSci AI