NatD promotes lung cancer progression by preventing histone H4 serine phosphorylation to activate Slug expression

NatD is an acetyltransferase responsible for N-α-terminal acetylation of the histone H4 and H2A and has been linked to cell growth. Here the authors show that NatD-mediated acetylation of histone H4 serine 1 competes with the phosphorylation by CK2α at the same residue thus leading to the upregulati...

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Autores principales: Junyi Ju, Aiping Chen, Yexuan Deng, Ming Liu, Ying Wang, Yadong Wang, Min Nie, Chao Wang, Hong Ding, Bing Yao, Tao Gui, Xinyu Li, Zhen Xu, Chi Ma, Yong Song, Marc Kvansakul, Ke Zen, Chen-Yu Zhang, Cheng Luo, Ming Fang, David C. S. Huang, C. David Allis, Renxiang Tan, Changjiang Kathy Zeng, Jiwu Wei, Quan Zhao
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/6a59395fcee24917b56f36386d89135b
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spelling oai:doaj.org-article:6a59395fcee24917b56f36386d89135b2021-12-02T14:40:48ZNatD promotes lung cancer progression by preventing histone H4 serine phosphorylation to activate Slug expression10.1038/s41467-017-00988-52041-1723https://doaj.org/article/6a59395fcee24917b56f36386d89135b2017-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-017-00988-5https://doaj.org/toc/2041-1723NatD is an acetyltransferase responsible for N-α-terminal acetylation of the histone H4 and H2A and has been linked to cell growth. Here the authors show that NatD-mediated acetylation of histone H4 serine 1 competes with the phosphorylation by CK2α at the same residue thus leading to the upregulation of Slug and tumor progression.Junyi JuAiping ChenYexuan DengMing LiuYing WangYadong WangMin NieChao WangHong DingBing YaoTao GuiXinyu LiZhen XuChi MaYong SongMarc KvansakulKe ZenChen-Yu ZhangCheng LuoMing FangDavid C. S. HuangC. David AllisRenxiang TanChangjiang Kathy ZengJiwu WeiQuan ZhaoNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-14 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Junyi Ju
Aiping Chen
Yexuan Deng
Ming Liu
Ying Wang
Yadong Wang
Min Nie
Chao Wang
Hong Ding
Bing Yao
Tao Gui
Xinyu Li
Zhen Xu
Chi Ma
Yong Song
Marc Kvansakul
Ke Zen
Chen-Yu Zhang
Cheng Luo
Ming Fang
David C. S. Huang
C. David Allis
Renxiang Tan
Changjiang Kathy Zeng
Jiwu Wei
Quan Zhao
NatD promotes lung cancer progression by preventing histone H4 serine phosphorylation to activate Slug expression
description NatD is an acetyltransferase responsible for N-α-terminal acetylation of the histone H4 and H2A and has been linked to cell growth. Here the authors show that NatD-mediated acetylation of histone H4 serine 1 competes with the phosphorylation by CK2α at the same residue thus leading to the upregulation of Slug and tumor progression.
format article
author Junyi Ju
Aiping Chen
Yexuan Deng
Ming Liu
Ying Wang
Yadong Wang
Min Nie
Chao Wang
Hong Ding
Bing Yao
Tao Gui
Xinyu Li
Zhen Xu
Chi Ma
Yong Song
Marc Kvansakul
Ke Zen
Chen-Yu Zhang
Cheng Luo
Ming Fang
David C. S. Huang
C. David Allis
Renxiang Tan
Changjiang Kathy Zeng
Jiwu Wei
Quan Zhao
author_facet Junyi Ju
Aiping Chen
Yexuan Deng
Ming Liu
Ying Wang
Yadong Wang
Min Nie
Chao Wang
Hong Ding
Bing Yao
Tao Gui
Xinyu Li
Zhen Xu
Chi Ma
Yong Song
Marc Kvansakul
Ke Zen
Chen-Yu Zhang
Cheng Luo
Ming Fang
David C. S. Huang
C. David Allis
Renxiang Tan
Changjiang Kathy Zeng
Jiwu Wei
Quan Zhao
author_sort Junyi Ju
title NatD promotes lung cancer progression by preventing histone H4 serine phosphorylation to activate Slug expression
title_short NatD promotes lung cancer progression by preventing histone H4 serine phosphorylation to activate Slug expression
title_full NatD promotes lung cancer progression by preventing histone H4 serine phosphorylation to activate Slug expression
title_fullStr NatD promotes lung cancer progression by preventing histone H4 serine phosphorylation to activate Slug expression
title_full_unstemmed NatD promotes lung cancer progression by preventing histone H4 serine phosphorylation to activate Slug expression
title_sort natd promotes lung cancer progression by preventing histone h4 serine phosphorylation to activate slug expression
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/6a59395fcee24917b56f36386d89135b
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