NOTCH1 activation compensates BRCA1 deficiency and promotes triple-negative breast cancer formation

BRCA1 mutation carriers have higher chances of developing triple-negative breast cancer (TNBC). Here, the authors use the Sleeping Beauty mutagenesis system in Brca1 deficient mice and identify 169 putative driver genes, of which NOTCH1 accelerates TNBC formation through promoting epithelial-mesench...

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Autores principales: Kai Miao, Josh Haipeng Lei, Monica Vishnu Valecha, Aiping Zhang, Jun Xu, Lijian Wang, Xueying Lyu, Si Chen, Zhengqiang Miao, Xin Zhang, Sek Man Su, Fangyuan Shao, Barani Kumar Rajendran, Jiaolin Bao, Jianming Zeng, Heng Sun, Ping Chen, Kaeling Tan, Qiang Chen, Koon Ho Wong, Xiaoling Xu, Chu-Xia Deng
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/638072c49e054dab8744a620ce85ebc9
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spelling oai:doaj.org-article:638072c49e054dab8744a620ce85ebc92021-12-02T17:45:10ZNOTCH1 activation compensates BRCA1 deficiency and promotes triple-negative breast cancer formation10.1038/s41467-020-16936-92041-1723https://doaj.org/article/638072c49e054dab8744a620ce85ebc92020-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-16936-9https://doaj.org/toc/2041-1723BRCA1 mutation carriers have higher chances of developing triple-negative breast cancer (TNBC). Here, the authors use the Sleeping Beauty mutagenesis system in Brca1 deficient mice and identify 169 putative driver genes, of which NOTCH1 accelerates TNBC formation through promoting epithelial-mesenchymal transition and cell cycle progression.Kai MiaoJosh Haipeng LeiMonica Vishnu ValechaAiping ZhangJun XuLijian WangXueying LyuSi ChenZhengqiang MiaoXin ZhangSek Man SuFangyuan ShaoBarani Kumar RajendranJiaolin BaoJianming ZengHeng SunPing ChenKaeling TanQiang ChenKoon Ho WongXiaoling XuChu-Xia DengNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-15 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Kai Miao
Josh Haipeng Lei
Monica Vishnu Valecha
Aiping Zhang
Jun Xu
Lijian Wang
Xueying Lyu
Si Chen
Zhengqiang Miao
Xin Zhang
Sek Man Su
Fangyuan Shao
Barani Kumar Rajendran
Jiaolin Bao
Jianming Zeng
Heng Sun
Ping Chen
Kaeling Tan
Qiang Chen
Koon Ho Wong
Xiaoling Xu
Chu-Xia Deng
NOTCH1 activation compensates BRCA1 deficiency and promotes triple-negative breast cancer formation
description BRCA1 mutation carriers have higher chances of developing triple-negative breast cancer (TNBC). Here, the authors use the Sleeping Beauty mutagenesis system in Brca1 deficient mice and identify 169 putative driver genes, of which NOTCH1 accelerates TNBC formation through promoting epithelial-mesenchymal transition and cell cycle progression.
format article
author Kai Miao
Josh Haipeng Lei
Monica Vishnu Valecha
Aiping Zhang
Jun Xu
Lijian Wang
Xueying Lyu
Si Chen
Zhengqiang Miao
Xin Zhang
Sek Man Su
Fangyuan Shao
Barani Kumar Rajendran
Jiaolin Bao
Jianming Zeng
Heng Sun
Ping Chen
Kaeling Tan
Qiang Chen
Koon Ho Wong
Xiaoling Xu
Chu-Xia Deng
author_facet Kai Miao
Josh Haipeng Lei
Monica Vishnu Valecha
Aiping Zhang
Jun Xu
Lijian Wang
Xueying Lyu
Si Chen
Zhengqiang Miao
Xin Zhang
Sek Man Su
Fangyuan Shao
Barani Kumar Rajendran
Jiaolin Bao
Jianming Zeng
Heng Sun
Ping Chen
Kaeling Tan
Qiang Chen
Koon Ho Wong
Xiaoling Xu
Chu-Xia Deng
author_sort Kai Miao
title NOTCH1 activation compensates BRCA1 deficiency and promotes triple-negative breast cancer formation
title_short NOTCH1 activation compensates BRCA1 deficiency and promotes triple-negative breast cancer formation
title_full NOTCH1 activation compensates BRCA1 deficiency and promotes triple-negative breast cancer formation
title_fullStr NOTCH1 activation compensates BRCA1 deficiency and promotes triple-negative breast cancer formation
title_full_unstemmed NOTCH1 activation compensates BRCA1 deficiency and promotes triple-negative breast cancer formation
title_sort notch1 activation compensates brca1 deficiency and promotes triple-negative breast cancer formation
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/638072c49e054dab8744a620ce85ebc9
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