化学
半醌
氧化还原
黄素组
醌
电子转移
半反应
激进的
光化学
立体化学
有机化学
酶
作者
Michael J. Black,Kyle F. Biegasiewicz,Andrew J. Meichan,Daniel G. Oblinsky,Bryan Kudisch,Gregory D. Scholes,Todd K. Hyster
出处
期刊:Nature Chemistry
[Springer Nature]
日期:2019-12-02
卷期号:12 (1): 71-75
被引量:148
标识
DOI:10.1038/s41557-019-0370-2
摘要
Flavin-dependent ‘ene’-reductases (EREDs) are exquisite catalysts for effecting stereoselective reductions. Although these reactions typically proceed through a hydride transfer mechanism, we recently found that EREDs can also catalyse reductive dehalogenations and cyclizations via single electron transfer mechanisms. Here, we demonstrate that these enzymes can catalyse redox-neutral radical cyclizations to produce enantioenriched oxindoles from α-haloamides. This transformation is a C–C bond-forming reaction currently unknown in nature and one for which there are no catalytic asymmetric examples. Mechanistic studies indicate the reaction proceeds via the flavin semiquinone/quinone redox couple, where ground-state flavin semiquinone provides the electron for substrate reduction and flavin quinone oxidizes the vinylogous α-amido radical formed after cyclization. This mechanistic manifold was previously unknown for this enzyme family, highlighting the versatility of EREDs in asymmetric synthesis. Flavin-dependent ‘ene’-reductases have now been shown to catalyse redox-neutral radical cyclizations of α-haloamides to form enantioenriched oxindoles. Mechanistic studies indicate the reaction proceeds via the flavin semiquinone/quinone redox couple, where a ground state flavin semiquinone provides the electron for substrate reduction and flavin quinone oxidizes the radical formed after cyclization.
科研通智能强力驱动
Strongly Powered by AbleSci AI