A trick of the tail: How electrostatics helps a DNA repair enzyme to localize on nucleosomes

Electrostatic interactions are key to the recognition processes of proteins and DNA and have been previously documented for the action of repair enzymes. Uracil-DNA glycosylase (UDG) is the first in a sequence of enzymes that act in the base-excision repair process and whose task is the extraction of uracil bases from nuclear DNA. The question of how the molecule targets uracil bases in chromatin, in particular in the condensed protein-DNA complexes of nucleosomes, has only recently become a subject of detailed studies. Here, we predict that the presence of an arginine anchor motif on the N-terminal tail of UDG can favor its localization on nucleosomes by binding to their acidic patches on their top and bottom surfaces via electrostatic interactions. We argue that this mechanism could play a key role in the detection of uracil defects in nucleosomal DNA.

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Publication Details

Journal
The Journal of Chemical Physics
Published
2026-10-05
DOI
https://doi.org/10.1063/5.0344831
Primary Topic
DNA Repair Mechanisms
Type
article
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article

A trick of the tail: How electrostatics helps a DNA repair enzyme to localize on nucleosomes

Ralf Blossey, Fabrizio Cleri, Guillaume Brysbaert, Safwen Ghediri
The Journal of Chemical Physics
DNA Repair Mechanisms
article

A trick of the tail: How electrostatics helps a DNA repair enzyme to localize on nucleosomes

Ralf Blossey, Fabrizio Cleri, Guillaume Brysbaert, Safwen Ghediri
article en

Abstract

Electrostatic interactions are key to the recognition processes of proteins and DNA and have been previously documented for the action of repair enzymes. Uracil-DNA glycosylase (UDG) is the first in a sequence of enzymes that act in the base-excision repair process and whose task is the extraction of uracil bases from nuclear DNA. The question of how the molecule targets uracil bases in chromatin, in particular in the condensed protein-DNA complexes of nucleosomes, has only recently become a subject of detailed studies. Here, we predict that the presence of an arginine anchor motif on the N-terminal tail of UDG can favor its localization on nucleosomes by binding to their acidic patches on their top and bottom surfaces via electrostatic interactions. We argue that this mechanism could play a key role in the detection of uracil defects in nucleosomal DNA.

The Journal of Chemical PhysicsVol. 165(13)
Unité de Glycobiologie Structurale et Fonctionnelle (FR), Institut d'Electronique, de Microélectronique et de Nanotechnologie (FR)
Openalex Percentile: Top 65%
DNA Repair Mechanisms
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A trick of the tail: How electrostatics helps a DNA repair enzyme to localize on nucleosomes — Ralf Blossey, Fabrizio Cleri, et al. · The Journal of Chemical Physics (2026) | TGRS Research Map | TGRS