化学
硝基苯
定向进化
酶
对映体
生物催化
双加氧酶
催化作用
蛋白质工程
立体化学
人工酶
酶催化
组合化学
生物化学
对映体过量
突变
烯胺
立体异构
氨基酸
合理设计
动力学分辨率
有机化学
极端微生物
催化循环
有机合成
激进的
作者
Minghui Cheng,Tao Li,Yamei Gan,Wentao Zhang,Xu Chen,Qun Zhao
标识
DOI:10.1002/anie.202515741
摘要
Abstract Nonheme iron enzymes are among nature's most versatile catalysts for molecular functionalization. Engineering nonheme enzymes for abiological reactions unlocks new catalytic possibilities beyond the limits of natural evolution. In this work, we engineered a nonheme enzyme, leucoanthocyanidin dioxygenase from Arabidopsis thaliana ( At LDOX), to catalyze an asymmetric 1,3‐migratory nitrene C(sp 3 )─H insertion reaction. Through directed evolution, the final optimized At LDOX_LS variant efficiently delivers a range of chiral α ‐amino acids derivatives with exceptional activity and enantioselectivity (up to 81% yield, 850 total turnover number, and 98:2 enantiomeric ratio). Preliminary mechanistic studies suggest the involvement of radical intermediates for this transformation. This work advances the biocatalytic toolbox for radical involved transformations and broadens the scope of enzymatic migration chemistry.
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