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

L Liu‐Peng Zhao (Department of Chemistry and Biochemistry University of California Santa Barbara Santa Barbara California 93106 USA) K Ken Lin P Pei‐Pei Xie (Department of Chemistry University of Pittsburgh Pittsburgh Pennsylvania USA) H Huichong Liu (Department of Chemistry and Biochemistry) H Hengye Xiang (Department of Chemistry University of Pittsburgh Pittsburgh PA 15260 USA) X Xin Liu Y Yunlong Zhao P Peng Liu Y Yang Yang

Abstract

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 3 , C─SCN, and C─NCO bond formation via an enzymatic Fe─X intermediate (X═N 3 , 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 3 ‐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.

Article Details

Volume / Issue Vol. 64, Issue 29
Published July 14, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (9)

L

Liu‐Peng Zhao

Department of Chemistry and Biochemistry University of California Santa Barbara Santa Barbara California 93106 USA

K

Ken Lin

P

Pei‐Pei Xie

Department of Chemistry University of Pittsburgh Pittsburgh Pennsylvania USA

H

Huichong Liu

Department of Chemistry and Biochemistry

H

Hengye Xiang

Department of Chemistry University of Pittsburgh Pittsburgh PA 15260 USA

X

Xin Liu

Y

Yunlong Zhao

P

Peng Liu

Y

Yang Yang