PHC1 maintains pluripotency by organizing genome-wide chromatin interactions of the Nanog locus

Phc1 is a subunit of the polycomb repressive complex 1 (PRC1), which represses gene expression during development. Here the authors show that Phc1 acts independently from PRC1 to activate Nanog transcription by stabilizing genome-wide chromatin interactions of the Nanog locus, and in turn stabilize...

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Autores principales: Li Chen, Qiaoqiao Tong, Xiaowen Chen, Penglei Jiang, Hua Yu, Qianbing Zhao, Lingang Sun, Chao Liu, Bin Gu, Yuping Zheng, Lijiang Fei, Xiao Jiang, Wenjuan Li, Giacomo Volpe, Mazid MD. Abdul, Guoji Guo, Jin Zhang, Pengxu Qian, Qiming Sun, Dante Neculai, Miguel A. Esteban, Chen Li, Feiqiu Wen, Junfeng Ji
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/1bd744e8053240e3be81e1d9849f044b
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spelling oai:doaj.org-article:1bd744e8053240e3be81e1d9849f044b2021-12-02T15:54:54ZPHC1 maintains pluripotency by organizing genome-wide chromatin interactions of the Nanog locus10.1038/s41467-021-22871-02041-1723https://doaj.org/article/1bd744e8053240e3be81e1d9849f044b2021-05-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-22871-0https://doaj.org/toc/2041-1723Phc1 is a subunit of the polycomb repressive complex 1 (PRC1), which represses gene expression during development. Here the authors show that Phc1 acts independently from PRC1 to activate Nanog transcription by stabilizing genome-wide chromatin interactions of the Nanog locus, and in turn stabilize pluripotency.Li ChenQiaoqiao TongXiaowen ChenPenglei JiangHua YuQianbing ZhaoLingang SunChao LiuBin GuYuping ZhengLijiang FeiXiao JiangWenjuan LiGiacomo VolpeMazid MD. AbdulGuoji GuoJin ZhangPengxu QianQiming SunDante NeculaiMiguel A. EstebanChen LiFeiqiu WenJunfeng JiNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-13 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Li Chen
Qiaoqiao Tong
Xiaowen Chen
Penglei Jiang
Hua Yu
Qianbing Zhao
Lingang Sun
Chao Liu
Bin Gu
Yuping Zheng
Lijiang Fei
Xiao Jiang
Wenjuan Li
Giacomo Volpe
Mazid MD. Abdul
Guoji Guo
Jin Zhang
Pengxu Qian
Qiming Sun
Dante Neculai
Miguel A. Esteban
Chen Li
Feiqiu Wen
Junfeng Ji
PHC1 maintains pluripotency by organizing genome-wide chromatin interactions of the Nanog locus
description Phc1 is a subunit of the polycomb repressive complex 1 (PRC1), which represses gene expression during development. Here the authors show that Phc1 acts independently from PRC1 to activate Nanog transcription by stabilizing genome-wide chromatin interactions of the Nanog locus, and in turn stabilize pluripotency.
format article
author Li Chen
Qiaoqiao Tong
Xiaowen Chen
Penglei Jiang
Hua Yu
Qianbing Zhao
Lingang Sun
Chao Liu
Bin Gu
Yuping Zheng
Lijiang Fei
Xiao Jiang
Wenjuan Li
Giacomo Volpe
Mazid MD. Abdul
Guoji Guo
Jin Zhang
Pengxu Qian
Qiming Sun
Dante Neculai
Miguel A. Esteban
Chen Li
Feiqiu Wen
Junfeng Ji
author_facet Li Chen
Qiaoqiao Tong
Xiaowen Chen
Penglei Jiang
Hua Yu
Qianbing Zhao
Lingang Sun
Chao Liu
Bin Gu
Yuping Zheng
Lijiang Fei
Xiao Jiang
Wenjuan Li
Giacomo Volpe
Mazid MD. Abdul
Guoji Guo
Jin Zhang
Pengxu Qian
Qiming Sun
Dante Neculai
Miguel A. Esteban
Chen Li
Feiqiu Wen
Junfeng Ji
author_sort Li Chen
title PHC1 maintains pluripotency by organizing genome-wide chromatin interactions of the Nanog locus
title_short PHC1 maintains pluripotency by organizing genome-wide chromatin interactions of the Nanog locus
title_full PHC1 maintains pluripotency by organizing genome-wide chromatin interactions of the Nanog locus
title_fullStr PHC1 maintains pluripotency by organizing genome-wide chromatin interactions of the Nanog locus
title_full_unstemmed PHC1 maintains pluripotency by organizing genome-wide chromatin interactions of the Nanog locus
title_sort phc1 maintains pluripotency by organizing genome-wide chromatin interactions of the nanog locus
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/1bd744e8053240e3be81e1d9849f044b
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