Chromatin accessibility landscape and regulatory network of high-altitude hypoxia adaptation

Tibetan adaptation to the high-altitude environment represents a case of natural selection during recent human evolution. Here the authors investigated the chromatin and transcriptional landscape of umbilical endothelial cells from Tibetan and Han Chinese donors and provide genome-wide characterizat...

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Autores principales: Jingxue Xin, Hui Zhang, Yaoxi He, Zhana Duren, Caijuan Bai, Lang Chen, Xin Luo, Dong-Sheng Yan, Chaoyu Zhang, Xiang Zhu, Qiuyue Yuan, Zhanying Feng, Chaoying Cui, Xuebin Qi, Ouzhuluobu, Wing Hung Wong, Yong Wang, Bing Su
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/5d727e2e509d4204b777b2789c0541c6
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spelling oai:doaj.org-article:5d727e2e509d4204b777b2789c0541c62021-12-02T19:17:00ZChromatin accessibility landscape and regulatory network of high-altitude hypoxia adaptation10.1038/s41467-020-18638-82041-1723https://doaj.org/article/5d727e2e509d4204b777b2789c0541c62020-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-18638-8https://doaj.org/toc/2041-1723Tibetan adaptation to the high-altitude environment represents a case of natural selection during recent human evolution. Here the authors investigated the chromatin and transcriptional landscape of umbilical endothelial cells from Tibetan and Han Chinese donors and provide genome-wide characterization of the hypoxia regulatory network associated high-altitude adaptation.Jingxue XinHui ZhangYaoxi HeZhana DurenCaijuan BaiLang ChenXin LuoDong-Sheng YanChaoyu ZhangXiang ZhuQiuyue YuanZhanying FengChaoying CuiXuebin QiOuzhuluobuWing Hung WongYong WangBing SuNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-20 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Jingxue Xin
Hui Zhang
Yaoxi He
Zhana Duren
Caijuan Bai
Lang Chen
Xin Luo
Dong-Sheng Yan
Chaoyu Zhang
Xiang Zhu
Qiuyue Yuan
Zhanying Feng
Chaoying Cui
Xuebin Qi
Ouzhuluobu
Wing Hung Wong
Yong Wang
Bing Su
Chromatin accessibility landscape and regulatory network of high-altitude hypoxia adaptation
description Tibetan adaptation to the high-altitude environment represents a case of natural selection during recent human evolution. Here the authors investigated the chromatin and transcriptional landscape of umbilical endothelial cells from Tibetan and Han Chinese donors and provide genome-wide characterization of the hypoxia regulatory network associated high-altitude adaptation.
format article
author Jingxue Xin
Hui Zhang
Yaoxi He
Zhana Duren
Caijuan Bai
Lang Chen
Xin Luo
Dong-Sheng Yan
Chaoyu Zhang
Xiang Zhu
Qiuyue Yuan
Zhanying Feng
Chaoying Cui
Xuebin Qi
Ouzhuluobu
Wing Hung Wong
Yong Wang
Bing Su
author_facet Jingxue Xin
Hui Zhang
Yaoxi He
Zhana Duren
Caijuan Bai
Lang Chen
Xin Luo
Dong-Sheng Yan
Chaoyu Zhang
Xiang Zhu
Qiuyue Yuan
Zhanying Feng
Chaoying Cui
Xuebin Qi
Ouzhuluobu
Wing Hung Wong
Yong Wang
Bing Su
author_sort Jingxue Xin
title Chromatin accessibility landscape and regulatory network of high-altitude hypoxia adaptation
title_short Chromatin accessibility landscape and regulatory network of high-altitude hypoxia adaptation
title_full Chromatin accessibility landscape and regulatory network of high-altitude hypoxia adaptation
title_fullStr Chromatin accessibility landscape and regulatory network of high-altitude hypoxia adaptation
title_full_unstemmed Chromatin accessibility landscape and regulatory network of high-altitude hypoxia adaptation
title_sort chromatin accessibility landscape and regulatory network of high-altitude hypoxia adaptation
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/5d727e2e509d4204b777b2789c0541c6
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