FMRP(1–297)-tat restores ion channel and synaptic function in a model of Fragile X syndrome

Fragile X Mental Retardation Protein regulates synaptic plasticity and its loss results in Fragile X Syndrome. Here, the authors show that the FMRP(1-297)-tat peptide can permeate the BBB, restore protein translation and mossy fiber LTP, and reduce elevated levels of activity in Fmr1 KO mice.

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Autores principales: Xiaoqin Zhan, Hadhimulya Asmara, Ning Cheng, Giriraj Sahu, Eduardo Sanchez, Fang-Xiong Zhang, Gerald W. Zamponi, Jong M. Rho, Ray W. Turner
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/14f1b5ef2d044bbe97bc456fbccfe24c
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spelling oai:doaj.org-article:14f1b5ef2d044bbe97bc456fbccfe24c2021-12-02T15:02:47ZFMRP(1–297)-tat restores ion channel and synaptic function in a model of Fragile X syndrome10.1038/s41467-020-16250-42041-1723https://doaj.org/article/14f1b5ef2d044bbe97bc456fbccfe24c2020-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-16250-4https://doaj.org/toc/2041-1723Fragile X Mental Retardation Protein regulates synaptic plasticity and its loss results in Fragile X Syndrome. Here, the authors show that the FMRP(1-297)-tat peptide can permeate the BBB, restore protein translation and mossy fiber LTP, and reduce elevated levels of activity in Fmr1 KO mice.Xiaoqin ZhanHadhimulya AsmaraNing ChengGiriraj SahuEduardo SanchezFang-Xiong ZhangGerald W. ZamponiJong M. RhoRay W. TurnerNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-16 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Xiaoqin Zhan
Hadhimulya Asmara
Ning Cheng
Giriraj Sahu
Eduardo Sanchez
Fang-Xiong Zhang
Gerald W. Zamponi
Jong M. Rho
Ray W. Turner
FMRP(1–297)-tat restores ion channel and synaptic function in a model of Fragile X syndrome
description Fragile X Mental Retardation Protein regulates synaptic plasticity and its loss results in Fragile X Syndrome. Here, the authors show that the FMRP(1-297)-tat peptide can permeate the BBB, restore protein translation and mossy fiber LTP, and reduce elevated levels of activity in Fmr1 KO mice.
format article
author Xiaoqin Zhan
Hadhimulya Asmara
Ning Cheng
Giriraj Sahu
Eduardo Sanchez
Fang-Xiong Zhang
Gerald W. Zamponi
Jong M. Rho
Ray W. Turner
author_facet Xiaoqin Zhan
Hadhimulya Asmara
Ning Cheng
Giriraj Sahu
Eduardo Sanchez
Fang-Xiong Zhang
Gerald W. Zamponi
Jong M. Rho
Ray W. Turner
author_sort Xiaoqin Zhan
title FMRP(1–297)-tat restores ion channel and synaptic function in a model of Fragile X syndrome
title_short FMRP(1–297)-tat restores ion channel and synaptic function in a model of Fragile X syndrome
title_full FMRP(1–297)-tat restores ion channel and synaptic function in a model of Fragile X syndrome
title_fullStr FMRP(1–297)-tat restores ion channel and synaptic function in a model of Fragile X syndrome
title_full_unstemmed FMRP(1–297)-tat restores ion channel and synaptic function in a model of Fragile X syndrome
title_sort fmrp(1–297)-tat restores ion channel and synaptic function in a model of fragile x syndrome
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/14f1b5ef2d044bbe97bc456fbccfe24c
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