化学
对映选择合成
叠氮化物
烯烃
黄素组
催化作用
激进的
组合化学
辅因子
合理设计
活动站点
酶催化
酶
肽
立体化学
激发
人工酶
光化学
生物催化
立体异构
作者
Jinhai Yu,Qiaoyu Zhang,Shiheng Zhang,Yingdi Hao,Bin Chen,Yue Zhao,Yan Zhang,Binju Wang,Xiaoqiang Huang
摘要
While radical azidooxygenation provides a direct route to valuable β -oxy azides, an asymmetric catalytic version remains elusive. Distinct from the previous biocatalytic strategies introducing azide moiety, here, we report a net-oxidative photoenzymatic strategy that leverages direct visible-light excitation of ene-reductases (EREDs) to achieve the highly enantioselective azidooxygenation of alkenes. This system utilizes the photoexcited flavin cofactor as a potent oxidant that, in concert with a TEMPO + -azide complex, initiates the generation of azide radicals. The ensuing N 3 radical and O-centered radicals are then orchestrated within the active site of the engineered enzyme to furnish enantioenriched β -oxy azides in excellent yields (up to 89%) and enantioselectivity (up to 99.5:0.5 e.r.). Mechanistic studies suggest the multifunctional role of 4-AcNH-TEMPO, which facilitates azide radical generation, stereoselectively traps the prochiral carbon-centered radical, and completes the catalysis as the terminal oxidant. Computational simulations further elucidate the origin of the stereocontrol.
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