Altered steady state and activity-dependent de novo protein expression in fragile X syndrome

Elevated protein synthesis, and dysregulated mGluR signalling, are documented in fragile X syndrome (FXS) Here the authors use proteomic analysis in a mouse model of FXS, and following mGluR5 stimulation, to identify potential biomarkers for the disease.

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Autores principales: Heather Bowling, Aditi Bhattacharya, Guoan Zhang, Danyal Alam, Joseph Z. Lebowitz, Nathaniel Bohm-Levine, Derek Lin, Priyangvada Singha, Maggie Mamcarz, Rosemary Puckett, Lili Zhou, Sameer Aryal, Kevin Sharp, Kent Kirshenbaum, Elizabeth Berry-Kravis, Thomas A. Neubert, Eric Klann
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/0178bf18b8774f1ebc6d3278b69cc089
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spelling oai:doaj.org-article:0178bf18b8774f1ebc6d3278b69cc0892021-12-02T17:02:02ZAltered steady state and activity-dependent de novo protein expression in fragile X syndrome10.1038/s41467-019-09553-82041-1723https://doaj.org/article/0178bf18b8774f1ebc6d3278b69cc0892019-04-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-09553-8https://doaj.org/toc/2041-1723Elevated protein synthesis, and dysregulated mGluR signalling, are documented in fragile X syndrome (FXS) Here the authors use proteomic analysis in a mouse model of FXS, and following mGluR5 stimulation, to identify potential biomarkers for the disease.Heather BowlingAditi BhattacharyaGuoan ZhangDanyal AlamJoseph Z. LebowitzNathaniel Bohm-LevineDerek LinPriyangvada SinghaMaggie MamcarzRosemary PuckettLili ZhouSameer AryalKevin SharpKent KirshenbaumElizabeth Berry-KravisThomas A. NeubertEric KlannNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-13 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Heather Bowling
Aditi Bhattacharya
Guoan Zhang
Danyal Alam
Joseph Z. Lebowitz
Nathaniel Bohm-Levine
Derek Lin
Priyangvada Singha
Maggie Mamcarz
Rosemary Puckett
Lili Zhou
Sameer Aryal
Kevin Sharp
Kent Kirshenbaum
Elizabeth Berry-Kravis
Thomas A. Neubert
Eric Klann
Altered steady state and activity-dependent de novo protein expression in fragile X syndrome
description Elevated protein synthesis, and dysregulated mGluR signalling, are documented in fragile X syndrome (FXS) Here the authors use proteomic analysis in a mouse model of FXS, and following mGluR5 stimulation, to identify potential biomarkers for the disease.
format article
author Heather Bowling
Aditi Bhattacharya
Guoan Zhang
Danyal Alam
Joseph Z. Lebowitz
Nathaniel Bohm-Levine
Derek Lin
Priyangvada Singha
Maggie Mamcarz
Rosemary Puckett
Lili Zhou
Sameer Aryal
Kevin Sharp
Kent Kirshenbaum
Elizabeth Berry-Kravis
Thomas A. Neubert
Eric Klann
author_facet Heather Bowling
Aditi Bhattacharya
Guoan Zhang
Danyal Alam
Joseph Z. Lebowitz
Nathaniel Bohm-Levine
Derek Lin
Priyangvada Singha
Maggie Mamcarz
Rosemary Puckett
Lili Zhou
Sameer Aryal
Kevin Sharp
Kent Kirshenbaum
Elizabeth Berry-Kravis
Thomas A. Neubert
Eric Klann
author_sort Heather Bowling
title Altered steady state and activity-dependent de novo protein expression in fragile X syndrome
title_short Altered steady state and activity-dependent de novo protein expression in fragile X syndrome
title_full Altered steady state and activity-dependent de novo protein expression in fragile X syndrome
title_fullStr Altered steady state and activity-dependent de novo protein expression in fragile X syndrome
title_full_unstemmed Altered steady state and activity-dependent de novo protein expression in fragile X syndrome
title_sort altered steady state and activity-dependent de novo protein expression in fragile x syndrome
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/0178bf18b8774f1ebc6d3278b69cc089
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