ZFP161 regulates replication fork stability and maintenance of genomic stability by recruiting the ATR/ATRIP complex

The ATR pathway is active during DNA replication stress to maintain genome stability. Here the authors reveal the role of the zinc finger containing protein 161 (ZFP161) to facilitate replication fork stability by acting as a scaffold to facilitate the interaction between RPA and ATR/ATRIP.

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Autores principales: Wootae Kim, Fei Zhao, Rentian Wu, Sisi Qin, Somaira Nowsheen, Jinzhou Huang, Qin Zhou, Yuping Chen, Min Deng, Guijie Guo, Kuntian Luo, Zhenkun Lou, Jian Yuan
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/76873473e9a04e0794d2cfae1d18dfb3
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spelling oai:doaj.org-article:76873473e9a04e0794d2cfae1d18dfb32021-12-02T16:57:52ZZFP161 regulates replication fork stability and maintenance of genomic stability by recruiting the ATR/ATRIP complex10.1038/s41467-019-13321-z2041-1723https://doaj.org/article/76873473e9a04e0794d2cfae1d18dfb32019-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-13321-zhttps://doaj.org/toc/2041-1723The ATR pathway is active during DNA replication stress to maintain genome stability. Here the authors reveal the role of the zinc finger containing protein 161 (ZFP161) to facilitate replication fork stability by acting as a scaffold to facilitate the interaction between RPA and ATR/ATRIP.Wootae KimFei ZhaoRentian WuSisi QinSomaira NowsheenJinzhou HuangQin ZhouYuping ChenMin DengGuijie GuoKuntian LuoZhenkun LouJian YuanNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-11 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Wootae Kim
Fei Zhao
Rentian Wu
Sisi Qin
Somaira Nowsheen
Jinzhou Huang
Qin Zhou
Yuping Chen
Min Deng
Guijie Guo
Kuntian Luo
Zhenkun Lou
Jian Yuan
ZFP161 regulates replication fork stability and maintenance of genomic stability by recruiting the ATR/ATRIP complex
description The ATR pathway is active during DNA replication stress to maintain genome stability. Here the authors reveal the role of the zinc finger containing protein 161 (ZFP161) to facilitate replication fork stability by acting as a scaffold to facilitate the interaction between RPA and ATR/ATRIP.
format article
author Wootae Kim
Fei Zhao
Rentian Wu
Sisi Qin
Somaira Nowsheen
Jinzhou Huang
Qin Zhou
Yuping Chen
Min Deng
Guijie Guo
Kuntian Luo
Zhenkun Lou
Jian Yuan
author_facet Wootae Kim
Fei Zhao
Rentian Wu
Sisi Qin
Somaira Nowsheen
Jinzhou Huang
Qin Zhou
Yuping Chen
Min Deng
Guijie Guo
Kuntian Luo
Zhenkun Lou
Jian Yuan
author_sort Wootae Kim
title ZFP161 regulates replication fork stability and maintenance of genomic stability by recruiting the ATR/ATRIP complex
title_short ZFP161 regulates replication fork stability and maintenance of genomic stability by recruiting the ATR/ATRIP complex
title_full ZFP161 regulates replication fork stability and maintenance of genomic stability by recruiting the ATR/ATRIP complex
title_fullStr ZFP161 regulates replication fork stability and maintenance of genomic stability by recruiting the ATR/ATRIP complex
title_full_unstemmed ZFP161 regulates replication fork stability and maintenance of genomic stability by recruiting the ATR/ATRIP complex
title_sort zfp161 regulates replication fork stability and maintenance of genomic stability by recruiting the atr/atrip complex
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/76873473e9a04e0794d2cfae1d18dfb3
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