Genetic suppression reveals DNA repair-independent antagonism between BRCA1 and COBRA1 in mammary gland development

COBRA1 is a BRCA1-binding protein and, as part of the negative elongation factor, regulates RNA polymerase II pausing and transcription elongation. Here, the authors show that tissue-specific deletion of mouse Cobra1 inhibits postnatal mammary gland development and that the mammary defects can be re...

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Autores principales: Sreejith J. Nair, Xiaowen Zhang, Huai-Chin Chiang, Md Jamiul Jahid, Yao Wang, Paula Garza, Craig April, Neeraj Salathia, Tapahsama Banerjee, Fahad S. Alenazi, Jianhua Ruan, Jian-Bing Fan, Jeffrey D. Parvin, Victor X. Jin, Yanfen Hu, Rong Li
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/e8b1af6dbaf6435f9056729025693328
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spelling oai:doaj.org-article:e8b1af6dbaf6435f90567290256933282021-12-02T17:31:19ZGenetic suppression reveals DNA repair-independent antagonism between BRCA1 and COBRA1 in mammary gland development10.1038/ncomms109132041-1723https://doaj.org/article/e8b1af6dbaf6435f90567290256933282016-03-01T00:00:00Zhttps://doi.org/10.1038/ncomms10913https://doaj.org/toc/2041-1723COBRA1 is a BRCA1-binding protein and, as part of the negative elongation factor, regulates RNA polymerase II pausing and transcription elongation. Here, the authors show that tissue-specific deletion of mouse Cobra1 inhibits postnatal mammary gland development and that the mammary defects can be rescued by additional deletion of Brca1in a DNA repair-independent manner.Sreejith J. NairXiaowen ZhangHuai-Chin ChiangMd Jamiul JahidYao WangPaula GarzaCraig AprilNeeraj SalathiaTapahsama BanerjeeFahad S. AlenaziJianhua RuanJian-Bing FanJeffrey D. ParvinVictor X. JinYanfen HuRong LiNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-9 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Sreejith J. Nair
Xiaowen Zhang
Huai-Chin Chiang
Md Jamiul Jahid
Yao Wang
Paula Garza
Craig April
Neeraj Salathia
Tapahsama Banerjee
Fahad S. Alenazi
Jianhua Ruan
Jian-Bing Fan
Jeffrey D. Parvin
Victor X. Jin
Yanfen Hu
Rong Li
Genetic suppression reveals DNA repair-independent antagonism between BRCA1 and COBRA1 in mammary gland development
description COBRA1 is a BRCA1-binding protein and, as part of the negative elongation factor, regulates RNA polymerase II pausing and transcription elongation. Here, the authors show that tissue-specific deletion of mouse Cobra1 inhibits postnatal mammary gland development and that the mammary defects can be rescued by additional deletion of Brca1in a DNA repair-independent manner.
format article
author Sreejith J. Nair
Xiaowen Zhang
Huai-Chin Chiang
Md Jamiul Jahid
Yao Wang
Paula Garza
Craig April
Neeraj Salathia
Tapahsama Banerjee
Fahad S. Alenazi
Jianhua Ruan
Jian-Bing Fan
Jeffrey D. Parvin
Victor X. Jin
Yanfen Hu
Rong Li
author_facet Sreejith J. Nair
Xiaowen Zhang
Huai-Chin Chiang
Md Jamiul Jahid
Yao Wang
Paula Garza
Craig April
Neeraj Salathia
Tapahsama Banerjee
Fahad S. Alenazi
Jianhua Ruan
Jian-Bing Fan
Jeffrey D. Parvin
Victor X. Jin
Yanfen Hu
Rong Li
author_sort Sreejith J. Nair
title Genetic suppression reveals DNA repair-independent antagonism between BRCA1 and COBRA1 in mammary gland development
title_short Genetic suppression reveals DNA repair-independent antagonism between BRCA1 and COBRA1 in mammary gland development
title_full Genetic suppression reveals DNA repair-independent antagonism between BRCA1 and COBRA1 in mammary gland development
title_fullStr Genetic suppression reveals DNA repair-independent antagonism between BRCA1 and COBRA1 in mammary gland development
title_full_unstemmed Genetic suppression reveals DNA repair-independent antagonism between BRCA1 and COBRA1 in mammary gland development
title_sort genetic suppression reveals dna repair-independent antagonism between brca1 and cobra1 in mammary gland development
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/e8b1af6dbaf6435f9056729025693328
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