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Distribution, recognition and regulation of non-CpG methylation in the adult mammalian brain

DNA methylation plays critical roles in the nervous system and has been traditionally considered to be restricted to CpG dinucleotides in metazoan genomes. Here we show that the single-base resolution DNA methylome from adult mouse dentate neurons consists of both CpG (~75%) and CpH (~25%) methylati...

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Autores principales: Guo, Junjie U., Su, Yijing, Shin, Joo Heon, Shin, Jaehoon, Li, Hongda, Xie, Bin, Zhong, Chun, Hu, Shaohui, Le, Thuc, Fan, Guoping, Zhu, Heng, Chang, Qiang, Gao, Yuan, Ming, Guo-li, Song, Hongjun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3970219/
https://www.ncbi.nlm.nih.gov/pubmed/24362762
http://dx.doi.org/10.1038/nn.3607
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author Guo, Junjie U.
Su, Yijing
Shin, Joo Heon
Shin, Jaehoon
Li, Hongda
Xie, Bin
Zhong, Chun
Hu, Shaohui
Le, Thuc
Fan, Guoping
Zhu, Heng
Chang, Qiang
Gao, Yuan
Ming, Guo-li
Song, Hongjun
author_facet Guo, Junjie U.
Su, Yijing
Shin, Joo Heon
Shin, Jaehoon
Li, Hongda
Xie, Bin
Zhong, Chun
Hu, Shaohui
Le, Thuc
Fan, Guoping
Zhu, Heng
Chang, Qiang
Gao, Yuan
Ming, Guo-li
Song, Hongjun
author_sort Guo, Junjie U.
collection PubMed
description DNA methylation plays critical roles in the nervous system and has been traditionally considered to be restricted to CpG dinucleotides in metazoan genomes. Here we show that the single-base resolution DNA methylome from adult mouse dentate neurons consists of both CpG (~75%) and CpH (~25%) methylation (H = A/C/T). Neuronal CpH methylation is conserved in human brains, enriched in low CpG-density regions, depleted at protein-DNA interaction sites, and anti-correlated with gene expression. Functionally, both mCpGs and mCpHs can repress transcription in vitro and are recognized by MeCP2 in neurons in vivo. Unlike most CpG methylation, CpH methylation is established de novo during neuronal maturation and requires DNMT3A for active maintenance in post-mitotic neurons. These characteristics of CpH methylation suggest a significantly expanded proportion of the neuronal genome under cytosine methylation regulation and provide a new foundation for understanding the role of this key epigenetic modification in the nervous system.
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spelling pubmed-39702192014-08-01 Distribution, recognition and regulation of non-CpG methylation in the adult mammalian brain Guo, Junjie U. Su, Yijing Shin, Joo Heon Shin, Jaehoon Li, Hongda Xie, Bin Zhong, Chun Hu, Shaohui Le, Thuc Fan, Guoping Zhu, Heng Chang, Qiang Gao, Yuan Ming, Guo-li Song, Hongjun Nat Neurosci Article DNA methylation plays critical roles in the nervous system and has been traditionally considered to be restricted to CpG dinucleotides in metazoan genomes. Here we show that the single-base resolution DNA methylome from adult mouse dentate neurons consists of both CpG (~75%) and CpH (~25%) methylation (H = A/C/T). Neuronal CpH methylation is conserved in human brains, enriched in low CpG-density regions, depleted at protein-DNA interaction sites, and anti-correlated with gene expression. Functionally, both mCpGs and mCpHs can repress transcription in vitro and are recognized by MeCP2 in neurons in vivo. Unlike most CpG methylation, CpH methylation is established de novo during neuronal maturation and requires DNMT3A for active maintenance in post-mitotic neurons. These characteristics of CpH methylation suggest a significantly expanded proportion of the neuronal genome under cytosine methylation regulation and provide a new foundation for understanding the role of this key epigenetic modification in the nervous system. 2013-12-22 2014-02 /pmc/articles/PMC3970219/ /pubmed/24362762 http://dx.doi.org/10.1038/nn.3607 Text en http://www.nature.com/authors/editorial_policies/license.html#terms Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Guo, Junjie U.
Su, Yijing
Shin, Joo Heon
Shin, Jaehoon
Li, Hongda
Xie, Bin
Zhong, Chun
Hu, Shaohui
Le, Thuc
Fan, Guoping
Zhu, Heng
Chang, Qiang
Gao, Yuan
Ming, Guo-li
Song, Hongjun
Distribution, recognition and regulation of non-CpG methylation in the adult mammalian brain
title Distribution, recognition and regulation of non-CpG methylation in the adult mammalian brain
title_full Distribution, recognition and regulation of non-CpG methylation in the adult mammalian brain
title_fullStr Distribution, recognition and regulation of non-CpG methylation in the adult mammalian brain
title_full_unstemmed Distribution, recognition and regulation of non-CpG methylation in the adult mammalian brain
title_short Distribution, recognition and regulation of non-CpG methylation in the adult mammalian brain
title_sort distribution, recognition and regulation of non-cpg methylation in the adult mammalian brain
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3970219/
https://www.ncbi.nlm.nih.gov/pubmed/24362762
http://dx.doi.org/10.1038/nn.3607
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