化学
乙烯基
黄素组
反应性(心理学)
酮
生物催化
催化作用
氢化物
光催化
基质(水族馆)
辅因子
酶催化
烯类反应
氧化还原
电子转移
组合化学
光化学
酶
反应机理
二苯甲酮
立体化学
有机化学
氢
生物
替代医学
病理
医学
光催化
生态学
作者
Braddock A. Sandoval,Sarah I. Kurtoic,Megan Chung,Kyle F. Biegasiewicz,Todd K. Hyster
标识
DOI:10.1002/anie.201902005
摘要
Flavin-dependent ene-reductases (EREDs) are known to stereoselectively reduce activated alkenes, but are inactive toward carbonyls. Demonstrated here is that in the presence of photoredox catalysts, these enzymes will reduce aromatic ketones. Mechanistic experiments suggest this reaction proceeds through ketyl radical formation, a reaction pathway that is distinct from the native hydride-transfer mechanism. Furthermore, this reactivity is accessible without modification of either the enzyme or cofactors, allowing both native and non-natural mechanisms to occur simultaneously. Based on control experiments, we hypothesize that binding to the enzyme active site attenuates the reduction potential of the substrate, enabling single-electron reduction. This reactivity highlights opportunities to access new catalytic manifolds by merging photoredox catalysis with biocatalysis.
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