化学
生物催化
定向进化
氨基酸
立体化学
酶催化
苏氨酸
吡哆醛
酶
激进的
立体选择性
催化作用
电子顺磁共振
立体异构
磷酸吡哆醛
组合化学
核磁共振波谱
电子顺磁共振波谱
催化循环
活动站点
有机化学
作者
Tian-Ci Wang,X Zhang,Zheng Zhang,G Gangadhareswar Rao,Zhiyu Bo,Pei‐Pei Xie,Jiedong Li,Qiang Yang,Xiaoyong Li,R. David Britt,Jiang Wang,Peng Liu,Yang Yang
摘要
threonine aldolases, we transformed a traditionally two-electron pyridoxal phosphate (PLP)-dependent enzyme into a highly active and stereoselective biocatalyst for single-electron C-C bond formation, enabling enantioconvergent conversion of a broad range of racemic organoboron substrates. Mechanistic studies using radical clock probes and electron paramagnetic resonance (EPR) spectroscopy uncovered an unexpected role of free PLP in oxidative radical generation under photochemical conditions, highlighting the unique photochemical properties of this natural cofactor. Molecular dynamics (MD) simulations further elucidated the origin of enantio- and diastereoselectivity in the key radical addition step between the enzymatic quinonoid and the carbon-centered radical. Collectively, these results underscore the power of pyridoxal radical biocatalysis to access a broad spectrum of valuable noncanonical amino acid products via intermolecular, enzyme-controlled asymmetric radical chemistry─a transformation that remains elusive to both state-of-the-art small-molecule catalysis and native enzymology.
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