化学
对映选择合成
基质(水族馆)
催化作用
电子转移
辅因子
反应性(心理学)
组合化学
立体化学
生物催化
电子受体
氧化还原
酶催化
酶
反应机理
光化学
有机化学
医学
海洋学
替代医学
病理
地质学
作者
Qinglong Shi,Xiu‐Wen Kang,Zhiyong Liu,Pandaram Sakthivel,Hasil Aman,Rui Chang,Xiaoyu Yan,Yubing Pang,Shaobo Dai,Bei Ding,Juntao Ye
摘要
Controlling the enantioselectivity of hydrogen atom transfer (HAT) reactions has been a long-standing synthetic challenge. While recent advances on photoenzymatic catalysis have demonstrated the great potential of non-natural photoenzymes, all of the transformations are initiated by single-electron reduction of the substrate, with only one notable exception. Herein, we report an oxidation-initiated photoenzymatic enantioselective hydrosulfonylation of olefins using a novel mutant of gluconobacter ene-reductase (GluER-W100F-W342F). Compared to known photoenzymatic systems, our approach does not rely on the formation of an electron donor–acceptor complex between the substrates and enzyme cofactor and simplifies the reaction system by obviating the addition of a cofactor regeneration mixture. More importantly, the GluER variant exhibits high reactivity and enantioselectivity and a broad substrate scope. Mechanistic studies support the proposed oxidation-initiated mechanism and reveal that a tyrosine-mediated HAT process is involved.
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