Ten-eleven translocation 1 mediated-DNA hydroxymethylation is required for myelination and remyelination in the mouse brain

Myelin formation is regulated by epigenetic mechanisms and ensures proper neuronal function during development and after demyelination. Here, the authors show that TET1, a DNA hydroxymethylase, regulates myelination during development and remyelination in mice.

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Autores principales: Ming Zhang, Jian Wang, Kaixiang Zhang, Guozhen Lu, Yuming Liu, Keke Ren, Wenting Wang, Dazhuan Xin, Lingli Xu, Honghui Mao, Junlin Xing, Xingchun Gao, Weilin Jin, Kalen Berry, Katsuhiko Mikoshiba, Shengxi Wu, Q. Richard Lu, Xianghui Zhao
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/e1cbd11d253c49be9a1549ae252b0873
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spelling oai:doaj.org-article:e1cbd11d253c49be9a1549ae252b08732021-12-02T18:53:15ZTen-eleven translocation 1 mediated-DNA hydroxymethylation is required for myelination and remyelination in the mouse brain10.1038/s41467-021-25353-52041-1723https://doaj.org/article/e1cbd11d253c49be9a1549ae252b08732021-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-25353-5https://doaj.org/toc/2041-1723Myelin formation is regulated by epigenetic mechanisms and ensures proper neuronal function during development and after demyelination. Here, the authors show that TET1, a DNA hydroxymethylase, regulates myelination during development and remyelination in mice.Ming ZhangJian WangKaixiang ZhangGuozhen LuYuming LiuKeke RenWenting WangDazhuan XinLingli XuHonghui MaoJunlin XingXingchun GaoWeilin JinKalen BerryKatsuhiko MikoshibaShengxi WuQ. Richard LuXianghui ZhaoNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-21 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Ming Zhang
Jian Wang
Kaixiang Zhang
Guozhen Lu
Yuming Liu
Keke Ren
Wenting Wang
Dazhuan Xin
Lingli Xu
Honghui Mao
Junlin Xing
Xingchun Gao
Weilin Jin
Kalen Berry
Katsuhiko Mikoshiba
Shengxi Wu
Q. Richard Lu
Xianghui Zhao
Ten-eleven translocation 1 mediated-DNA hydroxymethylation is required for myelination and remyelination in the mouse brain
description Myelin formation is regulated by epigenetic mechanisms and ensures proper neuronal function during development and after demyelination. Here, the authors show that TET1, a DNA hydroxymethylase, regulates myelination during development and remyelination in mice.
format article
author Ming Zhang
Jian Wang
Kaixiang Zhang
Guozhen Lu
Yuming Liu
Keke Ren
Wenting Wang
Dazhuan Xin
Lingli Xu
Honghui Mao
Junlin Xing
Xingchun Gao
Weilin Jin
Kalen Berry
Katsuhiko Mikoshiba
Shengxi Wu
Q. Richard Lu
Xianghui Zhao
author_facet Ming Zhang
Jian Wang
Kaixiang Zhang
Guozhen Lu
Yuming Liu
Keke Ren
Wenting Wang
Dazhuan Xin
Lingli Xu
Honghui Mao
Junlin Xing
Xingchun Gao
Weilin Jin
Kalen Berry
Katsuhiko Mikoshiba
Shengxi Wu
Q. Richard Lu
Xianghui Zhao
author_sort Ming Zhang
title Ten-eleven translocation 1 mediated-DNA hydroxymethylation is required for myelination and remyelination in the mouse brain
title_short Ten-eleven translocation 1 mediated-DNA hydroxymethylation is required for myelination and remyelination in the mouse brain
title_full Ten-eleven translocation 1 mediated-DNA hydroxymethylation is required for myelination and remyelination in the mouse brain
title_fullStr Ten-eleven translocation 1 mediated-DNA hydroxymethylation is required for myelination and remyelination in the mouse brain
title_full_unstemmed Ten-eleven translocation 1 mediated-DNA hydroxymethylation is required for myelination and remyelination in the mouse brain
title_sort ten-eleven translocation 1 mediated-dna hydroxymethylation is required for myelination and remyelination in the mouse brain
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/e1cbd11d253c49be9a1549ae252b0873
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