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The Histone Chaperone FACT Coordinates H2A.X-Dependent Signaling and Repair of DNA Damage

Safeguarding cell function and identity following a genotoxic stress challenge entails a tight coordination of DNA damage signaling and repair with chromatin maintenance. How this coordination is achieved and with what impact on chromatin integrity remains elusive. Here, we address these questions b...

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Autores principales: Piquet, Sandra, Le Parc, Florent, Bai, Siau-Kun, Chevallier, Odile, Adam, Salomé, Polo, Sophie E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6292839/
https://www.ncbi.nlm.nih.gov/pubmed/30344095
http://dx.doi.org/10.1016/j.molcel.2018.09.010
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author Piquet, Sandra
Le Parc, Florent
Bai, Siau-Kun
Chevallier, Odile
Adam, Salomé
Polo, Sophie E.
author_facet Piquet, Sandra
Le Parc, Florent
Bai, Siau-Kun
Chevallier, Odile
Adam, Salomé
Polo, Sophie E.
author_sort Piquet, Sandra
collection PubMed
description Safeguarding cell function and identity following a genotoxic stress challenge entails a tight coordination of DNA damage signaling and repair with chromatin maintenance. How this coordination is achieved and with what impact on chromatin integrity remains elusive. Here, we address these questions by investigating the mechanisms governing the distribution in mammalian chromatin of the histone variant H2A.X, a central player in damage signaling. We reveal that H2A.X is deposited de novo at sites of DNA damage in a repair-coupled manner, whereas the H2A.Z variant is evicted, thus reshaping the chromatin landscape at repair sites. Our mechanistic studies further identify the histone chaperone FACT (facilitates chromatin transcription) as responsible for the deposition of newly synthesized H2A.X. Functionally, we demonstrate that FACT potentiates H2A.X-dependent signaling of DNA damage. We propose that new H2A.X deposition in chromatin reflects DNA damage experience and may help tailor DNA damage signaling to repair progression.
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spelling pubmed-62928392018-12-21 The Histone Chaperone FACT Coordinates H2A.X-Dependent Signaling and Repair of DNA Damage Piquet, Sandra Le Parc, Florent Bai, Siau-Kun Chevallier, Odile Adam, Salomé Polo, Sophie E. Mol Cell Article Safeguarding cell function and identity following a genotoxic stress challenge entails a tight coordination of DNA damage signaling and repair with chromatin maintenance. How this coordination is achieved and with what impact on chromatin integrity remains elusive. Here, we address these questions by investigating the mechanisms governing the distribution in mammalian chromatin of the histone variant H2A.X, a central player in damage signaling. We reveal that H2A.X is deposited de novo at sites of DNA damage in a repair-coupled manner, whereas the H2A.Z variant is evicted, thus reshaping the chromatin landscape at repair sites. Our mechanistic studies further identify the histone chaperone FACT (facilitates chromatin transcription) as responsible for the deposition of newly synthesized H2A.X. Functionally, we demonstrate that FACT potentiates H2A.X-dependent signaling of DNA damage. We propose that new H2A.X deposition in chromatin reflects DNA damage experience and may help tailor DNA damage signaling to repair progression. Cell Press 2018-12-06 /pmc/articles/PMC6292839/ /pubmed/30344095 http://dx.doi.org/10.1016/j.molcel.2018.09.010 Text en © 2018 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Piquet, Sandra
Le Parc, Florent
Bai, Siau-Kun
Chevallier, Odile
Adam, Salomé
Polo, Sophie E.
The Histone Chaperone FACT Coordinates H2A.X-Dependent Signaling and Repair of DNA Damage
title The Histone Chaperone FACT Coordinates H2A.X-Dependent Signaling and Repair of DNA Damage
title_full The Histone Chaperone FACT Coordinates H2A.X-Dependent Signaling and Repair of DNA Damage
title_fullStr The Histone Chaperone FACT Coordinates H2A.X-Dependent Signaling and Repair of DNA Damage
title_full_unstemmed The Histone Chaperone FACT Coordinates H2A.X-Dependent Signaling and Repair of DNA Damage
title_short The Histone Chaperone FACT Coordinates H2A.X-Dependent Signaling and Repair of DNA Damage
title_sort histone chaperone fact coordinates h2a.x-dependent signaling and repair of dna damage
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6292839/
https://www.ncbi.nlm.nih.gov/pubmed/30344095
http://dx.doi.org/10.1016/j.molcel.2018.09.010
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