EGR1 recruits TET1 to shape the brain methylome during development and upon neuronal activity

It is unclear why neuronal activity induced methylation changes are limited to specific loci in the genome. Here, authors show that the DNA demethylation enzyme, TET1, gains its specificity via the interaction with EGR1, a sequence specific DNA binding protein.

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Autores principales: Zhixiong Sun, Xiguang Xu, Jianlin He, Alexander Murray, Ming-an Sun, Xiaoran Wei, Xia Wang, Emmarose McCoig, Evan Xie, Xi Jiang, Liwu Li, Jinsong Zhu, Jianjun Chen, Alexei Morozov, Alicia M. Pickrell, Michelle H. Theus, Hehuang Xie
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/833197c688f54d60ab4edcc1365addf1
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spelling oai:doaj.org-article:833197c688f54d60ab4edcc1365addf12021-12-02T15:35:54ZEGR1 recruits TET1 to shape the brain methylome during development and upon neuronal activity10.1038/s41467-019-11905-32041-1723https://doaj.org/article/833197c688f54d60ab4edcc1365addf12019-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-11905-3https://doaj.org/toc/2041-1723It is unclear why neuronal activity induced methylation changes are limited to specific loci in the genome. Here, authors show that the DNA demethylation enzyme, TET1, gains its specificity via the interaction with EGR1, a sequence specific DNA binding protein.Zhixiong SunXiguang XuJianlin HeAlexander MurrayMing-an SunXiaoran WeiXia WangEmmarose McCoigEvan XieXi JiangLiwu LiJinsong ZhuJianjun ChenAlexei MorozovAlicia M. PickrellMichelle H. TheusHehuang XieNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-12 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Zhixiong Sun
Xiguang Xu
Jianlin He
Alexander Murray
Ming-an Sun
Xiaoran Wei
Xia Wang
Emmarose McCoig
Evan Xie
Xi Jiang
Liwu Li
Jinsong Zhu
Jianjun Chen
Alexei Morozov
Alicia M. Pickrell
Michelle H. Theus
Hehuang Xie
EGR1 recruits TET1 to shape the brain methylome during development and upon neuronal activity
description It is unclear why neuronal activity induced methylation changes are limited to specific loci in the genome. Here, authors show that the DNA demethylation enzyme, TET1, gains its specificity via the interaction with EGR1, a sequence specific DNA binding protein.
format article
author Zhixiong Sun
Xiguang Xu
Jianlin He
Alexander Murray
Ming-an Sun
Xiaoran Wei
Xia Wang
Emmarose McCoig
Evan Xie
Xi Jiang
Liwu Li
Jinsong Zhu
Jianjun Chen
Alexei Morozov
Alicia M. Pickrell
Michelle H. Theus
Hehuang Xie
author_facet Zhixiong Sun
Xiguang Xu
Jianlin He
Alexander Murray
Ming-an Sun
Xiaoran Wei
Xia Wang
Emmarose McCoig
Evan Xie
Xi Jiang
Liwu Li
Jinsong Zhu
Jianjun Chen
Alexei Morozov
Alicia M. Pickrell
Michelle H. Theus
Hehuang Xie
author_sort Zhixiong Sun
title EGR1 recruits TET1 to shape the brain methylome during development and upon neuronal activity
title_short EGR1 recruits TET1 to shape the brain methylome during development and upon neuronal activity
title_full EGR1 recruits TET1 to shape the brain methylome during development and upon neuronal activity
title_fullStr EGR1 recruits TET1 to shape the brain methylome during development and upon neuronal activity
title_full_unstemmed EGR1 recruits TET1 to shape the brain methylome during development and upon neuronal activity
title_sort egr1 recruits tet1 to shape the brain methylome during development and upon neuronal activity
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/833197c688f54d60ab4edcc1365addf1
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