FMRP regulates an ethanol-dependent shift in GABABR function and expression with rapid antidepressant properties

Alcohol is thought to lead to neuroadaptive changes, although the underlying molecular mechanisms are unclear. Here, the authors find ethanol treatment alters GABAB-receptor expression via fragile-X mental retardation protein in mice, leading to antidepressant-like behaviours.

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Autores principales: Sarah A. Wolfe, Emily R. Workman, Chelcie F. Heaney, Farr Niere, Sanjeev Namjoshi, Luisa P. Cacheaux, Sean P. Farris, Michael R. Drew, Boris V. Zemelman, R. Adron Harris, Kimberly F. Raab-Graham
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/e5cec5c74cef40f9abc05988792bd8e3
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spelling oai:doaj.org-article:e5cec5c74cef40f9abc05988792bd8e32021-12-02T14:40:16ZFMRP regulates an ethanol-dependent shift in GABABR function and expression with rapid antidepressant properties10.1038/ncomms128672041-1723https://doaj.org/article/e5cec5c74cef40f9abc05988792bd8e32016-09-01T00:00:00Zhttps://doi.org/10.1038/ncomms12867https://doaj.org/toc/2041-1723Alcohol is thought to lead to neuroadaptive changes, although the underlying molecular mechanisms are unclear. Here, the authors find ethanol treatment alters GABAB-receptor expression via fragile-X mental retardation protein in mice, leading to antidepressant-like behaviours.Sarah A. WolfeEmily R. WorkmanChelcie F. HeaneyFarr NiereSanjeev NamjoshiLuisa P. CacheauxSean P. FarrisMichael R. DrewBoris V. ZemelmanR. Adron HarrisKimberly F. Raab-GrahamNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-13 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Sarah A. Wolfe
Emily R. Workman
Chelcie F. Heaney
Farr Niere
Sanjeev Namjoshi
Luisa P. Cacheaux
Sean P. Farris
Michael R. Drew
Boris V. Zemelman
R. Adron Harris
Kimberly F. Raab-Graham
FMRP regulates an ethanol-dependent shift in GABABR function and expression with rapid antidepressant properties
description Alcohol is thought to lead to neuroadaptive changes, although the underlying molecular mechanisms are unclear. Here, the authors find ethanol treatment alters GABAB-receptor expression via fragile-X mental retardation protein in mice, leading to antidepressant-like behaviours.
format article
author Sarah A. Wolfe
Emily R. Workman
Chelcie F. Heaney
Farr Niere
Sanjeev Namjoshi
Luisa P. Cacheaux
Sean P. Farris
Michael R. Drew
Boris V. Zemelman
R. Adron Harris
Kimberly F. Raab-Graham
author_facet Sarah A. Wolfe
Emily R. Workman
Chelcie F. Heaney
Farr Niere
Sanjeev Namjoshi
Luisa P. Cacheaux
Sean P. Farris
Michael R. Drew
Boris V. Zemelman
R. Adron Harris
Kimberly F. Raab-Graham
author_sort Sarah A. Wolfe
title FMRP regulates an ethanol-dependent shift in GABABR function and expression with rapid antidepressant properties
title_short FMRP regulates an ethanol-dependent shift in GABABR function and expression with rapid antidepressant properties
title_full FMRP regulates an ethanol-dependent shift in GABABR function and expression with rapid antidepressant properties
title_fullStr FMRP regulates an ethanol-dependent shift in GABABR function and expression with rapid antidepressant properties
title_full_unstemmed FMRP regulates an ethanol-dependent shift in GABABR function and expression with rapid antidepressant properties
title_sort fmrp regulates an ethanol-dependent shift in gababr function and expression with rapid antidepressant properties
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/e5cec5c74cef40f9abc05988792bd8e3
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