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协同光金属生物催化:非血红素铁酶催化氧化还原活性酯的对映汇聚自由基脱羧叠氮化、硫氰化和异氰化反应

Cooperative Photometallobiocatalysis: Nonheme Fe Enzyme-Catalyzed Enantioconvergent Radical Decarboxylative Azidation, Thiocyanation, and Isocyanation of Redox-Active Esters.

作者信息

Zhao Liu-Peng, Lin Ken, Xie Pei-Pei, Liu Huichong, Xiang Hengye, Liu Xin, Zhao Yunlong, Liu Peng, Yang Yang

机构信息

Department of Chemistry and Biochemistry, University of California Santa Barbara, Santa Barbara, CA, 93106, USA.

Department of Chemistry, University of Pittsburgh, Pittsburgh, PA, 15260, USA.

出版信息

Angew Chem Int Ed Engl. 2025 Jul;64(29):e202506361. doi: 10.1002/anie.202506361. Epub 2025 May 23.

Abstract

Cooperative catalysis with an enzyme and a small-molecule photocatalyst has recently emerged as a potentially general activation mode to advance novel biocatalytic reactions with synthetic utility. Herein, we report cooperative photobiocatalysis involving an engineered nonheme Fe enzyme and a tailored photoredox catalyst to achieve enantioconvergent decarboxylative azidation, thiocyanation, and isocyanation of redox-active esters via a radical mechanism. We repurposed and further evolved metapyrocatechase (MPC), a nonheme Fe extradiol dioxygenase not previously studied in new-to-nature biocatalysis, for the enantioselective C─N, C─SCN, and C─NCO bond formation via an enzymatic Fe─X intermediate (X═N, NCS, and NCO). A range of primary, secondary, and tertiary alkyl radical precursors were effectively converted by our engineered MPC, allowing the syntheses of organic azides, thiocyanates, and isocyanates with good to excellent enantiocontrol. Further derivatization of these products furnished valuable compounds including enantioenriched amines, triazoles, ureas, and SCF-containing products. DFT and MD simulations shed light on the mechanism as well as the binding poses of the alkyl radical intermediate in the enzyme active site and the π-facial selectivity in the enantiodetermining radical rebound. Overall, cooperative photometallobiocatalysis with nonheme Fe enzymes provides a means to develop challenging asymmetric radical transformations eluding small-molecule catalysis.

摘要

酶与小分子光催化剂的协同催化最近已成为一种潜在的通用活化模式,可推动具有合成实用性的新型生物催化反应。在此,我们报道了一种协同光生物催化,涉及一种工程化的非血红素铁酶和一种定制的光氧化还原催化剂,通过自由基机制实现氧化还原活性酯的对映收敛脱羧叠氮化、硫氰化和异氰化反应。我们对间苯二酚酶(MPC)进行了重新利用和进一步改造,MPC是一种非血红素铁外二醇双加氧酶,此前未在新型生物催化中进行过研究,用于通过酶促铁-X中间体(X═N、NCS和NCO)形成对映选择性的C─N、C─SCN和C─NCO键。我们改造后的MPC有效地转化了一系列伯、仲和叔烷基自由基前体,能够以良好到优异的对映体控制合成有机叠氮化物、硫氰酸盐和异氰酸酯。这些产物的进一步衍生化提供了有价值的化合物,包括对映体富集的胺、三唑、脲和含SCF的产物。DFT和MD模拟揭示了该机制以及烷基自由基中间体在酶活性位点的结合构象和对映体决定自由基反弹中的π-面选择性。总体而言,非血红素铁酶的协同光金属生物催化提供了一种手段,可用于开发具有挑战性的不对称自由基转化,而小分子催化难以实现这些转化。

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