吡咯喹啉醌
化学
光催化
氧化还原
辅因子
黄素组
光化学
酶催化
催化作用
吲哚试验
组合化学
黄素腺嘌呤二核苷酸
生物催化
有机化学
光催化
反应机理
酶
作者
Srishti Ballabh Bahukhandi,Andreas Klein,Ghulam Mustafa,Maria Weyh,Alexandra Walter,Erling Thyrhaug,Jürgen Hauer,Golo Storch,Cathleen Zeymer
出处
期刊:Angewandte Chemie
[Wiley]
日期:2025-07-30
卷期号:64 (40): e202505431-e202505431
被引量:4
标识
DOI:10.1002/anie.202505431
摘要
Photoenzymatic catalysis facilitates stereoselective new-to-nature chemistry under mild conditions. In addition to the rational design of artificial photoenzymes, naturally occurring redox enzymes can be repurposed to promote photoredox catalysis in the chiral protein environment. Here, we show that enzymes utilizing the pyrroloquinoline quinone (PQQ) cofactor expand the toolbox of photobiocatalysis. PQQ absorbs visible light and is capable of single-electron transfer. It thus exhibits mechanistic similarities to flavin cofactors, which are widely used for photoenzymatic approaches. First, we established the trimethyl ester PQQMe3 as a stand-alone photoredox catalyst in pure organic solvent. Upon excitation, PQQMe3 enables the redox-neutral radical cyclization of an N-(bromoalkyl)-substituted indole. We then tested a panel of PQQ-dependent sugar and alcohol dehydrogenases for photoenzymatic catalysis in aqueous buffer, focusing on a redox-neutral radical reaction to form oxindoles. Under optimized reaction conditions, we obtained a 69% yield and an 82:18 enantiomeric ratio. Our work thus demonstrates that PQQ enzymes are capable of stereoselective photoredox catalysis. Future enzyme engineering efforts based on computational modeling and directed evolution will fully unlock their synthetic potential.
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