Regioselective Zr <sub>5</sub> Nanocluster Photocatalyst for Precise Protein Editing Under Mild Conditions

S Siqi Xie S Stamatis S. Passadis (Department of Chemistry KU Leuven Celestijnenlaan 200F Leuven 3001 Belgium) M Mark Gray (School of Chemistry University of Glasgow Glasgow G12 8QQ UK) N Nuno A. G. Bandeira (BioISI–Instituto de Biossistemas e Ciências Integrativas, Departamento de Química e Bioquímica, Faculdade de Ciências, Universidade de Lisboa 1 , Campo Grande, 1749-016 Lisboa,) H Haralampos N. Miras (School of Chemistry University of Glasgow Glasgow UK) T Tatjana N. Parac‐Vogt (Department of Chemistry KU Leuven Leuven Belgium)

Abstract

Abstract Understanding the impact of oxidative modifications on protein structure and function is of central importance in protein chemistry, necessitating precise and controlled methods for introducing such modifications. Herein, we report a strategy for regioselective chemical editing of a protein using a novel Zr 5  nanocluster as a visible‐light photocatalyst. The  [Zr IV 5 (μ─ΟΗ) 2 (μ─Ο) 2 (μ 3 ─Ο)Cl 2 (H 2 O) 6 (μ‐η 1 ,η 2 ,η 1 ‐tBu‐dihyde‐O,O′,O″) 5 ] (Zr 5 ) cluster features a unique [Zr 5 O 5 ] structural motif and its electronic structure and light absorption properties were fully analyzed and reproduced through Time‐dependent density functional theory (DFT) calculations. Zr 5  exhibits exceptional photophysical properties, including the optical gap of 2.01 eV, the lowest reported to date for a zirconium‐oxo cluster. Under light irradiation at 370 nm, Zr 5  mediates the regioselective cleavage and oxidative side‐chain modification of hen egg white lysozyme, producing fragments which are ideal for middle‐down proteomics applications. Combined DFT and experimental approaches indicate that Zr 5  efficiently produces reactive oxygen species that mediate protein oxidation and cleavage. Comprehensive characterization confirmed the cluster's stability under reaction conditions, with no detectable structural changes or dissolution, enabling its reuse for multiple times without loss of catalytic efficiency. The unique photocatalytic properties of Zr 5  offer new opportunities for precise protein functionalization and pave the way for extending them to other classes of molecular transformations.

Article Details

Volume / Issue Vol. 64, Issue 45
Published November 03, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (6)

S

Siqi Xie

S

Stamatis S. Passadis

Department of Chemistry KU Leuven Celestijnenlaan 200F Leuven 3001 Belgium

M

Mark Gray

School of Chemistry University of Glasgow Glasgow G12 8QQ UK

N

Nuno A. G. Bandeira

BioISI–Instituto de Biossistemas e Ciências Integrativas, Departamento de Química e Bioquímica, Faculdade de Ciências, Universidade de Lisboa 1 , Campo Grande, 1749-016 Lisboa,

H

Haralampos N. Miras

School of Chemistry University of Glasgow Glasgow UK

T

Tatjana N. Parac‐Vogt

Department of Chemistry KU Leuven Leuven Belgium