Pyroglutamate PTMs as Bioorthogonal Reactive Handles: Ru/Ni Photoredox Coupling

R Reyner D. Vargas (Department of Chemistry Rice University 6500 Main Street, Bioscience Research Collaborative Houston Texas 77030 USA) B Baorui Xiang (Department of Chemistry Rice University 6500 Main Street, Bioscience Research Collaborative Houston Texas 77030 USA) Y Yuecheng Jiang (Department of Chemistry Rice University 6500 Main Street, Bioscience Research Collaborative Houston Texas 77030 USA) C Carlos D. Llanos L Laura Segatori Z Zachary T. Ball (Department of Chemistry Rice University 6500 Main Street, Bioscience Research Collaborative Houston Texas 77030 USA)

Abstract

Abstract Post‐translational modifications (PTMs) play essential roles in living systems. However, the biological roles of some PTMs, such as N‐terminal pyroglutamate, are poorly understood due to a dearth of chemical and/or biological tools to label, quantify, or identify pyroglutamate residues. In this report, we describe a photoredox catalysis process that enables direct pyroglutamate N–H arylation in peptides and proteins, using (hetero)aryl bromide reagents. The reactivity demonstrates the potential for multi‐point binding to recognize peptide backbone structures for exquisitely chemoselective modifications in complex polyfunctional environments. The results provide the first chemical tool to modify pyroglutamate residues within complex polypeptides in biocompatible aqueous environments.

Article Details

Volume / Issue Vol. 65, Issue 6
Published February 02, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (6)

R

Reyner D. Vargas

Department of Chemistry Rice University 6500 Main Street, Bioscience Research Collaborative Houston Texas 77030 USA

B

Baorui Xiang

Department of Chemistry Rice University 6500 Main Street, Bioscience Research Collaborative Houston Texas 77030 USA

Y

Yuecheng Jiang

Department of Chemistry Rice University 6500 Main Street, Bioscience Research Collaborative Houston Texas 77030 USA

C

Carlos D. Llanos

L

Laura Segatori

Z

Zachary T. Ball

Department of Chemistry Rice University 6500 Main Street, Bioscience Research Collaborative Houston Texas 77030 USA