动力学分辨率
化学
生物催化
选择性
生物转化
分子工程
催化作用
组合化学
酒
合理设计
蛋白质工程
酶
有机化学
反应机理
材料科学
纳米技术
对映选择合成
作者
Kaihao Mou,Yue Guo,Weihua Xu,Danyang Li,Zhiguo Wang,Qi Wu
标识
DOI:10.1002/anie.202318374
摘要
Abstract Stereodivergent engineering of one enzyme to create stereocomplementary variants for synthesizing optically pure molecules with tailor‐made ( R ) or ( S ) configurations on an optional basis is highly desirable and challenging. This study aimed to engineer fatty acid photodecarboxylase from Chlorella variabilis ( Cv FAP) using the focused rational iterative site‐specific mutagenesis (FRISM) strategy to obtain two highly stereocomplementary variants with excellent selectivity (both giving products with up to 99 % e.e.). These variants were used for the Cv FAP‐catalyzed light‐driven kinetic resolution of oxalates or oxamic acids prepared from the corresponding sec ‐alcohols or amines, providing a new biotransformation process for preparing chiral sec ‐alcohols and amines. Molecular dynamics simulation, kinetic data and transient spectra revealed the source of selectivity. This study represents the first example of the kinetic resolution of sec ‐alcohols or amines catalyzed by a pair of stereocomplementary Cv FAPs.
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