Biocatalytic Regioselective C‐Formylation of Resorcinol Derivatives

L Lilla Gal (Institute of Chemistry University of Graz Graz Austria) S Suresh Rohan (Department of Molecular Enzymology Georg‐August University Göttingen Göttingen Germany) A Anna Żądło‐Dobrowolska (Institute of Chemistry University of Graz Graz Austria) B Bianca Hilweg (Institute of Chemistry University of Graz Graz Austria) J Judith Müller K Kai Tittmann W Wolfgang Kroutil

Abstract

ABSTRACT Although aromatic formylation reactions are highly valuable from a synthetic perspective, a biocatalytic version has not yet been reported. Here, the cofactor‐independent multimeric three‐component acyltransferase from Chromobacterium sphagni ( Cs ATase) was identified to enable the nonnatural promiscuous regioselective C‐formylation of polyphenolic substrates, especially resorcinol derivatives, and thus extending the reaction scope of acyltransferases. Formylation of 4‐ and 5‐substituted resorcinol derivatives gave access to regioselectively mono‐formylated products with up to 99% conversion and up to 74% isolated yield. Formylation of phloroglucinol led to the di‐formylated product with 99% conversion, outperforming chemical methods. Structural analysis of Cs ATase by X‐ray crystallography provided insights into its active site.

Article Details

Volume / Issue Vol. 65, Issue 10
Published March 02, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (7)

L

Lilla Gal

Institute of Chemistry University of Graz Graz Austria

S

Suresh Rohan

Department of Molecular Enzymology Georg‐August University Göttingen Göttingen Germany

A

Anna Żądło‐Dobrowolska

Institute of Chemistry University of Graz Graz Austria

B

Bianca Hilweg

Institute of Chemistry University of Graz Graz Austria

J

Judith Müller

K

Kai Tittmann

W

Wolfgang Kroutil