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Dual behavior of histidine during sensitized photo-oxidation of model compounds and proteins.

Authors :
Frąckowiak KJ
Ignasiak MT
Grzechowiak M
Fuentes-Lemus E
Gamon LF
Pędziński T
Hägglund PM
Jaskolski M
Davies MJ
Marciniak B
Source :
Free radical biology & medicine [Free Radic Biol Med] 2024 Nov 01; Vol. 224, pp. 393-404. Date of Electronic Publication: 2024 Sep 04.
Publication Year :
2024

Abstract

Histidine (His) photo-oxidation has been widely investigated with several transient and stable products characterized, especially for aerobic conditions. Due to its role and structure, His-side chain can be a key player in the quenching of excited states such as the triplet state of the photosensitizer 3-carboxybenzophenone ( <superscript>3</superscript> CB*). The capacity of His and its derivatives to quench <superscript>3</superscript> CB* under anaerobic conditions are characterized in the current study by laser flash photolysis, with the resulting oxidation products examined by mass spectrometry to determine the reaction mechanism. The latter include adducts of the 3-carboxybenzophenone ketyl radical (CBH <superscript>•</superscript> ) to the imidazole ring (Imid-CH <subscript>2</subscript> -CBH), His-His dimers, and other products with lower yields. The data obtained with model compounds are compared to those obtained with more complicated systems, including the peptide Exendin-4, and the protein MtHpt1. The data obtained from transient spectroscopy and product analyses indicate that two CB* quenching mechanisms occur: (i) proton-coupled electron transfer (as reported previously) yielding radicals that can recombine to give His-His dimers and CBH-adducts, and (ii) energy transfer yielding <superscript>3</superscript> His* undergoing further reaction leading to formation of Imidazyl-CH <subscript>2</subscript> -CBH adduct. The latter, unexpected process only occurs when His and its derivatives have a free α-amino group. This process yielded a novel adduct between the imidazole ring and the CBH <superscript>•</superscript> formed by sensitizer reduction.<br />Competing Interests: Declaration of competing interest The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.<br /> (Copyright © 2024 The Authors. Published by Elsevier Inc. All rights reserved.)

Details

Language :
English
ISSN :
1873-4596
Volume :
224
Database :
MEDLINE
Journal :
Free radical biology & medicine
Publication Type :
Academic Journal
Accession number :
39241987
Full Text :
https://doi.org/10.1016/j.freeradbiomed.2024.08.040