The epigenetic regulator LSH maintains fork protection and genomic stability via MacroH2A deposition and RAD51 filament formation

LSH/HELLS is a chromatin remodeler promoting incorporation of histone variant macroH2A. Here the authors reveal a role for LSH in genome stability, in protecting nascent DNA at stalled forks mediated by macroH2A deposition and RAD51 filament formation.

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Autores principales: Xiaoping Xu, Kai Ni, Yafeng He, Jianke Ren, Chongkui Sun, Yie Liu, Mirit I. Aladjem, Sandra Burkett, Richard Finney, Xia Ding, Shyam K. Sharan, Kathrin Muegge
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/5dd84ce1725948758084a5a36813c4ed
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spelling oai:doaj.org-article:5dd84ce1725948758084a5a36813c4ed2021-12-02T17:47:33ZThe epigenetic regulator LSH maintains fork protection and genomic stability via MacroH2A deposition and RAD51 filament formation10.1038/s41467-021-23809-22041-1723https://doaj.org/article/5dd84ce1725948758084a5a36813c4ed2021-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-23809-2https://doaj.org/toc/2041-1723LSH/HELLS is a chromatin remodeler promoting incorporation of histone variant macroH2A. Here the authors reveal a role for LSH in genome stability, in protecting nascent DNA at stalled forks mediated by macroH2A deposition and RAD51 filament formation.Xiaoping XuKai NiYafeng HeJianke RenChongkui SunYie LiuMirit I. AladjemSandra BurkettRichard FinneyXia DingShyam K. SharanKathrin MueggeNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-16 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Xiaoping Xu
Kai Ni
Yafeng He
Jianke Ren
Chongkui Sun
Yie Liu
Mirit I. Aladjem
Sandra Burkett
Richard Finney
Xia Ding
Shyam K. Sharan
Kathrin Muegge
The epigenetic regulator LSH maintains fork protection and genomic stability via MacroH2A deposition and RAD51 filament formation
description LSH/HELLS is a chromatin remodeler promoting incorporation of histone variant macroH2A. Here the authors reveal a role for LSH in genome stability, in protecting nascent DNA at stalled forks mediated by macroH2A deposition and RAD51 filament formation.
format article
author Xiaoping Xu
Kai Ni
Yafeng He
Jianke Ren
Chongkui Sun
Yie Liu
Mirit I. Aladjem
Sandra Burkett
Richard Finney
Xia Ding
Shyam K. Sharan
Kathrin Muegge
author_facet Xiaoping Xu
Kai Ni
Yafeng He
Jianke Ren
Chongkui Sun
Yie Liu
Mirit I. Aladjem
Sandra Burkett
Richard Finney
Xia Ding
Shyam K. Sharan
Kathrin Muegge
author_sort Xiaoping Xu
title The epigenetic regulator LSH maintains fork protection and genomic stability via MacroH2A deposition and RAD51 filament formation
title_short The epigenetic regulator LSH maintains fork protection and genomic stability via MacroH2A deposition and RAD51 filament formation
title_full The epigenetic regulator LSH maintains fork protection and genomic stability via MacroH2A deposition and RAD51 filament formation
title_fullStr The epigenetic regulator LSH maintains fork protection and genomic stability via MacroH2A deposition and RAD51 filament formation
title_full_unstemmed The epigenetic regulator LSH maintains fork protection and genomic stability via MacroH2A deposition and RAD51 filament formation
title_sort epigenetic regulator lsh maintains fork protection and genomic stability via macroh2a deposition and rad51 filament formation
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/5dd84ce1725948758084a5a36813c4ed
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