ARID1A promotes genomic stability through protecting telomere cohesion

Cells with ARID1A mutations exhibit mitotic defects, yet show surprisingly low levels of copy number defects. Here, Zhao et al. resolve this issue by showing that ARID1A loss causes defects in telomere cohesion, which selects against gross alterations in copy number.

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Autores principales: Bo Zhao, Jianhuang Lin, Lijie Rong, Shuai Wu, Zhong Deng, Nail Fatkhutdinov, Joseph Zundell, Takeshi Fukumoto, Qin Liu, Andrew Kossenkov, Stephanie Jean, Mark G. Cadungog, Mark E. Borowsky, Ronny Drapkin, Paul M. Lieberman, Cory T. Abate-Shen, Rugang Zhang
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/3213993b084647d5b37ab0de3d259d0b
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spelling oai:doaj.org-article:3213993b084647d5b37ab0de3d259d0b2021-12-02T16:57:06ZARID1A promotes genomic stability through protecting telomere cohesion10.1038/s41467-019-12037-42041-1723https://doaj.org/article/3213993b084647d5b37ab0de3d259d0b2019-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-12037-4https://doaj.org/toc/2041-1723Cells with ARID1A mutations exhibit mitotic defects, yet show surprisingly low levels of copy number defects. Here, Zhao et al. resolve this issue by showing that ARID1A loss causes defects in telomere cohesion, which selects against gross alterations in copy number.Bo ZhaoJianhuang LinLijie RongShuai WuZhong DengNail FatkhutdinovJoseph ZundellTakeshi FukumotoQin LiuAndrew KossenkovStephanie JeanMark G. CadungogMark E. BorowskyRonny DrapkinPaul M. LiebermanCory T. Abate-ShenRugang ZhangNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-13 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Bo Zhao
Jianhuang Lin
Lijie Rong
Shuai Wu
Zhong Deng
Nail Fatkhutdinov
Joseph Zundell
Takeshi Fukumoto
Qin Liu
Andrew Kossenkov
Stephanie Jean
Mark G. Cadungog
Mark E. Borowsky
Ronny Drapkin
Paul M. Lieberman
Cory T. Abate-Shen
Rugang Zhang
ARID1A promotes genomic stability through protecting telomere cohesion
description Cells with ARID1A mutations exhibit mitotic defects, yet show surprisingly low levels of copy number defects. Here, Zhao et al. resolve this issue by showing that ARID1A loss causes defects in telomere cohesion, which selects against gross alterations in copy number.
format article
author Bo Zhao
Jianhuang Lin
Lijie Rong
Shuai Wu
Zhong Deng
Nail Fatkhutdinov
Joseph Zundell
Takeshi Fukumoto
Qin Liu
Andrew Kossenkov
Stephanie Jean
Mark G. Cadungog
Mark E. Borowsky
Ronny Drapkin
Paul M. Lieberman
Cory T. Abate-Shen
Rugang Zhang
author_facet Bo Zhao
Jianhuang Lin
Lijie Rong
Shuai Wu
Zhong Deng
Nail Fatkhutdinov
Joseph Zundell
Takeshi Fukumoto
Qin Liu
Andrew Kossenkov
Stephanie Jean
Mark G. Cadungog
Mark E. Borowsky
Ronny Drapkin
Paul M. Lieberman
Cory T. Abate-Shen
Rugang Zhang
author_sort Bo Zhao
title ARID1A promotes genomic stability through protecting telomere cohesion
title_short ARID1A promotes genomic stability through protecting telomere cohesion
title_full ARID1A promotes genomic stability through protecting telomere cohesion
title_fullStr ARID1A promotes genomic stability through protecting telomere cohesion
title_full_unstemmed ARID1A promotes genomic stability through protecting telomere cohesion
title_sort arid1a promotes genomic stability through protecting telomere cohesion
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/3213993b084647d5b37ab0de3d259d0b
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