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Treating a novel plasticity defect rescues episodic memory in Fragile X model mice

Episodic memory, a fundamental component of human cognition, is significantly impaired in autism. We report the first evidence for this problem in the Fmr1-knockout (KO) mouse model of Fragile X syndrome and describe potentially treatable underlying causes. The hippocampus is critical for the format...

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Autores principales: Wang, Weisheng, Cox, Brittney M., Jia, Yousheng, Le, Aliza A., Cox, Conor D., Jung, Kwang M., Hou, Bowen, Piomelli, Daniele, Gall, Christine M., Lynch, Gary
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5951717/
https://www.ncbi.nlm.nih.gov/pubmed/29133950
http://dx.doi.org/10.1038/mp.2017.221
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author Wang, Weisheng
Cox, Brittney M.
Jia, Yousheng
Le, Aliza A.
Cox, Conor D.
Jung, Kwang M.
Hou, Bowen
Piomelli, Daniele
Gall, Christine M.
Lynch, Gary
author_facet Wang, Weisheng
Cox, Brittney M.
Jia, Yousheng
Le, Aliza A.
Cox, Conor D.
Jung, Kwang M.
Hou, Bowen
Piomelli, Daniele
Gall, Christine M.
Lynch, Gary
author_sort Wang, Weisheng
collection PubMed
description Episodic memory, a fundamental component of human cognition, is significantly impaired in autism. We report the first evidence for this problem in the Fmr1-knockout (KO) mouse model of Fragile X syndrome and describe potentially treatable underlying causes. The hippocampus is critical for the formation and use of episodes, with semantic (cue identity) information relayed to the structure via the lateral perforant path (LPP). The unusual form of synaptic plasticity expressed by the LPP (lppLTP) was profoundly impaired in Fmr1-KOs relative to wild type mice. Two factors contributed to this defect: i) reduced GluN1 subunit levels in synaptic NMDA receptors and related currents, and ii) impaired retrograde synaptic signaling by the endocannabinoid 2-archadonolglycerol (2-AG). Studies using a novel serial cue paradigm showed that episodic encoding is dependent on both the LPP and the endocannabinoid receptor CB(1), and is strikingly impaired in Fmr1-KOs. Enhancing 2-AG signaling rescued both lppLTP and learning in the mutants. Thus, two consequences of the Fragile-X mutation converge on plasticity at one site in hippocampus to prevent encoding of a basic element of cognitive memory. Collectively, the results suggest a clinically plausible approach to treatment.
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spelling pubmed-59517172018-05-14 Treating a novel plasticity defect rescues episodic memory in Fragile X model mice Wang, Weisheng Cox, Brittney M. Jia, Yousheng Le, Aliza A. Cox, Conor D. Jung, Kwang M. Hou, Bowen Piomelli, Daniele Gall, Christine M. Lynch, Gary Mol Psychiatry Article Episodic memory, a fundamental component of human cognition, is significantly impaired in autism. We report the first evidence for this problem in the Fmr1-knockout (KO) mouse model of Fragile X syndrome and describe potentially treatable underlying causes. The hippocampus is critical for the formation and use of episodes, with semantic (cue identity) information relayed to the structure via the lateral perforant path (LPP). The unusual form of synaptic plasticity expressed by the LPP (lppLTP) was profoundly impaired in Fmr1-KOs relative to wild type mice. Two factors contributed to this defect: i) reduced GluN1 subunit levels in synaptic NMDA receptors and related currents, and ii) impaired retrograde synaptic signaling by the endocannabinoid 2-archadonolglycerol (2-AG). Studies using a novel serial cue paradigm showed that episodic encoding is dependent on both the LPP and the endocannabinoid receptor CB(1), and is strikingly impaired in Fmr1-KOs. Enhancing 2-AG signaling rescued both lppLTP and learning in the mutants. Thus, two consequences of the Fragile-X mutation converge on plasticity at one site in hippocampus to prevent encoding of a basic element of cognitive memory. Collectively, the results suggest a clinically plausible approach to treatment. 2017-11-14 2018-08 /pmc/articles/PMC5951717/ /pubmed/29133950 http://dx.doi.org/10.1038/mp.2017.221 Text en 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
Wang, Weisheng
Cox, Brittney M.
Jia, Yousheng
Le, Aliza A.
Cox, Conor D.
Jung, Kwang M.
Hou, Bowen
Piomelli, Daniele
Gall, Christine M.
Lynch, Gary
Treating a novel plasticity defect rescues episodic memory in Fragile X model mice
title Treating a novel plasticity defect rescues episodic memory in Fragile X model mice
title_full Treating a novel plasticity defect rescues episodic memory in Fragile X model mice
title_fullStr Treating a novel plasticity defect rescues episodic memory in Fragile X model mice
title_full_unstemmed Treating a novel plasticity defect rescues episodic memory in Fragile X model mice
title_short Treating a novel plasticity defect rescues episodic memory in Fragile X model mice
title_sort treating a novel plasticity defect rescues episodic memory in fragile x model mice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5951717/
https://www.ncbi.nlm.nih.gov/pubmed/29133950
http://dx.doi.org/10.1038/mp.2017.221
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