Epigenetic regulation of the circadian gene Per1 contributes to age-related changes in hippocampal memory

Circadian rhythms are known to modulate memory, but it’s not known whether clock genes in the hippocampus are required for memory consolidation. Here, the authors show that epigenetic regulation of clock gene Period1 in the hippocampus regulates memory and contributes to age-related memory decline,...

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Autores principales: Janine L. Kwapis, Yasaman Alaghband, Enikö A. Kramár, Alberto J. López, Annie Vogel Ciernia, André O. White, Guanhua Shu, Diane Rhee, Christina M. Michael, Emilie Montellier, Yu Liu, Christophe N. Magnan, Siwei Chen, Paolo Sassone-Corsi, Pierre Baldi, Dina P. Matheos, Marcelo A. Wood
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Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/8214879eac4444f79329a0009fdad2ee
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spelling oai:doaj.org-article:8214879eac4444f79329a0009fdad2ee2021-12-02T14:39:07ZEpigenetic regulation of the circadian gene Per1 contributes to age-related changes in hippocampal memory10.1038/s41467-018-05868-02041-1723https://doaj.org/article/8214879eac4444f79329a0009fdad2ee2018-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-05868-0https://doaj.org/toc/2041-1723Circadian rhythms are known to modulate memory, but it’s not known whether clock genes in the hippocampus are required for memory consolidation. Here, the authors show that epigenetic regulation of clock gene Period1 in the hippocampus regulates memory and contributes to age-related memory decline, independent of circadian rhythms.Janine L. KwapisYasaman AlaghbandEnikö A. KramárAlberto J. LópezAnnie Vogel CierniaAndré O. WhiteGuanhua ShuDiane RheeChristina M. MichaelEmilie MontellierYu LiuChristophe N. MagnanSiwei ChenPaolo Sassone-CorsiPierre BaldiDina P. MatheosMarcelo A. WoodNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-14 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Janine L. Kwapis
Yasaman Alaghband
Enikö A. Kramár
Alberto J. López
Annie Vogel Ciernia
André O. White
Guanhua Shu
Diane Rhee
Christina M. Michael
Emilie Montellier
Yu Liu
Christophe N. Magnan
Siwei Chen
Paolo Sassone-Corsi
Pierre Baldi
Dina P. Matheos
Marcelo A. Wood
Epigenetic regulation of the circadian gene Per1 contributes to age-related changes in hippocampal memory
description Circadian rhythms are known to modulate memory, but it’s not known whether clock genes in the hippocampus are required for memory consolidation. Here, the authors show that epigenetic regulation of clock gene Period1 in the hippocampus regulates memory and contributes to age-related memory decline, independent of circadian rhythms.
format article
author Janine L. Kwapis
Yasaman Alaghband
Enikö A. Kramár
Alberto J. López
Annie Vogel Ciernia
André O. White
Guanhua Shu
Diane Rhee
Christina M. Michael
Emilie Montellier
Yu Liu
Christophe N. Magnan
Siwei Chen
Paolo Sassone-Corsi
Pierre Baldi
Dina P. Matheos
Marcelo A. Wood
author_facet Janine L. Kwapis
Yasaman Alaghband
Enikö A. Kramár
Alberto J. López
Annie Vogel Ciernia
André O. White
Guanhua Shu
Diane Rhee
Christina M. Michael
Emilie Montellier
Yu Liu
Christophe N. Magnan
Siwei Chen
Paolo Sassone-Corsi
Pierre Baldi
Dina P. Matheos
Marcelo A. Wood
author_sort Janine L. Kwapis
title Epigenetic regulation of the circadian gene Per1 contributes to age-related changes in hippocampal memory
title_short Epigenetic regulation of the circadian gene Per1 contributes to age-related changes in hippocampal memory
title_full Epigenetic regulation of the circadian gene Per1 contributes to age-related changes in hippocampal memory
title_fullStr Epigenetic regulation of the circadian gene Per1 contributes to age-related changes in hippocampal memory
title_full_unstemmed Epigenetic regulation of the circadian gene Per1 contributes to age-related changes in hippocampal memory
title_sort epigenetic regulation of the circadian gene per1 contributes to age-related changes in hippocampal memory
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/8214879eac4444f79329a0009fdad2ee
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