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Cell cycle-linked MeCP2 phosphorylation modulates adult neurogenesis involving the Notch signaling pathway

Neuronal activity regulates the phosphorylation states at multiple sites on MeCP2 in postmitotic neurons. The precise control of the phosphorylation status of MeCP2 in neurons is critical for the normal development and function of the mammalian brain. However, it is unknown whether phosphorylation a...

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Autores principales: Li, Hongda, Zhong, Xiaofen, Chau, Kevin Fongching, Santistevan, Nicholas J., Guo, Weixiang, Kong, Guangyao, Li, Xuekun, Kadakia, Mitul, Masliah, Jamie, Chi, Jingyi, Jin, Peng, Zhang, Jing, Zhao, Xinyu, Chang, Qiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4288926/
https://www.ncbi.nlm.nih.gov/pubmed/25420914
http://dx.doi.org/10.1038/ncomms6601
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author Li, Hongda
Zhong, Xiaofen
Chau, Kevin Fongching
Santistevan, Nicholas J.
Guo, Weixiang
Kong, Guangyao
Li, Xuekun
Kadakia, Mitul
Masliah, Jamie
Chi, Jingyi
Jin, Peng
Zhang, Jing
Zhao, Xinyu
Chang, Qiang
author_facet Li, Hongda
Zhong, Xiaofen
Chau, Kevin Fongching
Santistevan, Nicholas J.
Guo, Weixiang
Kong, Guangyao
Li, Xuekun
Kadakia, Mitul
Masliah, Jamie
Chi, Jingyi
Jin, Peng
Zhang, Jing
Zhao, Xinyu
Chang, Qiang
author_sort Li, Hongda
collection PubMed
description Neuronal activity regulates the phosphorylation states at multiple sites on MeCP2 in postmitotic neurons. The precise control of the phosphorylation status of MeCP2 in neurons is critical for the normal development and function of the mammalian brain. However, it is unknown whether phosphorylation at any of the previously identified sites on MeCP2 can be induced by signals other than neuronal activity in other cell types, and what functions MeCP2 phosphorylation may have in those contexts. Here we show that, in neural progenitor cells isolated from the adult mouse hippocampus, cell cycle-linked phosphorylation at serine 421 on MeCP2 is directly regulated by aurora kinase B, and modulates the balance between proliferation and neural differentiation through the Notch signaling pathway. Our findings suggest MeCP2 S421 phosphorylation may function as a general epigenetic switch accessible by different extracellular stimuli through different signaling pathways for regulating diverse biological functions in different cell types.
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spelling pubmed-42889262015-05-25 Cell cycle-linked MeCP2 phosphorylation modulates adult neurogenesis involving the Notch signaling pathway Li, Hongda Zhong, Xiaofen Chau, Kevin Fongching Santistevan, Nicholas J. Guo, Weixiang Kong, Guangyao Li, Xuekun Kadakia, Mitul Masliah, Jamie Chi, Jingyi Jin, Peng Zhang, Jing Zhao, Xinyu Chang, Qiang Nat Commun Article Neuronal activity regulates the phosphorylation states at multiple sites on MeCP2 in postmitotic neurons. The precise control of the phosphorylation status of MeCP2 in neurons is critical for the normal development and function of the mammalian brain. However, it is unknown whether phosphorylation at any of the previously identified sites on MeCP2 can be induced by signals other than neuronal activity in other cell types, and what functions MeCP2 phosphorylation may have in those contexts. Here we show that, in neural progenitor cells isolated from the adult mouse hippocampus, cell cycle-linked phosphorylation at serine 421 on MeCP2 is directly regulated by aurora kinase B, and modulates the balance between proliferation and neural differentiation through the Notch signaling pathway. Our findings suggest MeCP2 S421 phosphorylation may function as a general epigenetic switch accessible by different extracellular stimuli through different signaling pathways for regulating diverse biological functions in different cell types. 2014-11-25 /pmc/articles/PMC4288926/ /pubmed/25420914 http://dx.doi.org/10.1038/ncomms6601 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
Li, Hongda
Zhong, Xiaofen
Chau, Kevin Fongching
Santistevan, Nicholas J.
Guo, Weixiang
Kong, Guangyao
Li, Xuekun
Kadakia, Mitul
Masliah, Jamie
Chi, Jingyi
Jin, Peng
Zhang, Jing
Zhao, Xinyu
Chang, Qiang
Cell cycle-linked MeCP2 phosphorylation modulates adult neurogenesis involving the Notch signaling pathway
title Cell cycle-linked MeCP2 phosphorylation modulates adult neurogenesis involving the Notch signaling pathway
title_full Cell cycle-linked MeCP2 phosphorylation modulates adult neurogenesis involving the Notch signaling pathway
title_fullStr Cell cycle-linked MeCP2 phosphorylation modulates adult neurogenesis involving the Notch signaling pathway
title_full_unstemmed Cell cycle-linked MeCP2 phosphorylation modulates adult neurogenesis involving the Notch signaling pathway
title_short Cell cycle-linked MeCP2 phosphorylation modulates adult neurogenesis involving the Notch signaling pathway
title_sort cell cycle-linked mecp2 phosphorylation modulates adult neurogenesis involving the notch signaling pathway
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4288926/
https://www.ncbi.nlm.nih.gov/pubmed/25420914
http://dx.doi.org/10.1038/ncomms6601
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