A huntingtin peptide inhibits polyQ-huntingtin associated defects.

Huntington's disease (HD) is caused by the abnormal expansion of the polyglutamine tract in the human Huntingtin protein (polyQ-hHtt). Although this mutation behaves dominantly, huntingtin loss of function also contributes to HD pathogenesis. Indeed, wild-type Huntingtin plays a protective role...

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Main Authors: Yoan Arribat, Nathalie Bonneaud, Yasmina Talmat-Amar, Sophie Layalle, Marie-Laure Parmentier, Florence Maschat
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3701666?pdf=render
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spelling doaj-b2b0f85b48c64af7a4ca894c83704d402020-11-24T21:56:57ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0187e6877510.1371/journal.pone.0068775A huntingtin peptide inhibits polyQ-huntingtin associated defects.Yoan ArribatNathalie BonneaudYasmina Talmat-AmarSophie LayalleMarie-Laure ParmentierFlorence MaschatHuntington's disease (HD) is caused by the abnormal expansion of the polyglutamine tract in the human Huntingtin protein (polyQ-hHtt). Although this mutation behaves dominantly, huntingtin loss of function also contributes to HD pathogenesis. Indeed, wild-type Huntingtin plays a protective role with respect to polyQ-hHtt induced defects.The question that we addressed here is what part of the wild-type Huntingtin is responsible for these protective properties. We first screened peptides from the Huntingtin protein in HeLa cells and identified a 23 aa peptide (P42) that inhibits polyQ-hHtt aggregation. P42 is part of the endogenous Huntingtin protein and lies within a region rich in proteolytic sites that plays a critical role in the pathogenesis process. Using a Drosophila model of HD, we tested the protective properties of this peptide on aggregation, as well as on different polyQ-hHtt induced neuronal phenotypes: eye degeneration (an indicator of cell death), impairment of vesicular axonal trafficking, and physiological behaviors such as larval locomotion and adult survival. Together, our results demonstrate high protective properties for P42 in vivo, in whole animals. These data also demonstrate a specific role of P42 on Huntington's disease model, since it has no effect on other models of polyQ-induced diseases, such as spinocerebellar ataxias.Altogether our data show that P42, a 23 aa-long hHtt peptide, plays a protective role with respect to polyQ-hHtt aggregation as well as cellular and behavioral dysfunctions induced by polyQ-hHtt in vivo. Our study also confirms the correlation between polyQ-hHtt aggregation and neuronal defects. Finally, these results strongly suggest a therapeutic potential for P42, specific of Huntington's disease.http://europepmc.org/articles/PMC3701666?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Yoan Arribat
Nathalie Bonneaud
Yasmina Talmat-Amar
Sophie Layalle
Marie-Laure Parmentier
Florence Maschat
spellingShingle Yoan Arribat
Nathalie Bonneaud
Yasmina Talmat-Amar
Sophie Layalle
Marie-Laure Parmentier
Florence Maschat
A huntingtin peptide inhibits polyQ-huntingtin associated defects.
PLoS ONE
author_facet Yoan Arribat
Nathalie Bonneaud
Yasmina Talmat-Amar
Sophie Layalle
Marie-Laure Parmentier
Florence Maschat
author_sort Yoan Arribat
title A huntingtin peptide inhibits polyQ-huntingtin associated defects.
title_short A huntingtin peptide inhibits polyQ-huntingtin associated defects.
title_full A huntingtin peptide inhibits polyQ-huntingtin associated defects.
title_fullStr A huntingtin peptide inhibits polyQ-huntingtin associated defects.
title_full_unstemmed A huntingtin peptide inhibits polyQ-huntingtin associated defects.
title_sort huntingtin peptide inhibits polyq-huntingtin associated defects.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Huntington's disease (HD) is caused by the abnormal expansion of the polyglutamine tract in the human Huntingtin protein (polyQ-hHtt). Although this mutation behaves dominantly, huntingtin loss of function also contributes to HD pathogenesis. Indeed, wild-type Huntingtin plays a protective role with respect to polyQ-hHtt induced defects.The question that we addressed here is what part of the wild-type Huntingtin is responsible for these protective properties. We first screened peptides from the Huntingtin protein in HeLa cells and identified a 23 aa peptide (P42) that inhibits polyQ-hHtt aggregation. P42 is part of the endogenous Huntingtin protein and lies within a region rich in proteolytic sites that plays a critical role in the pathogenesis process. Using a Drosophila model of HD, we tested the protective properties of this peptide on aggregation, as well as on different polyQ-hHtt induced neuronal phenotypes: eye degeneration (an indicator of cell death), impairment of vesicular axonal trafficking, and physiological behaviors such as larval locomotion and adult survival. Together, our results demonstrate high protective properties for P42 in vivo, in whole animals. These data also demonstrate a specific role of P42 on Huntington's disease model, since it has no effect on other models of polyQ-induced diseases, such as spinocerebellar ataxias.Altogether our data show that P42, a 23 aa-long hHtt peptide, plays a protective role with respect to polyQ-hHtt aggregation as well as cellular and behavioral dysfunctions induced by polyQ-hHtt in vivo. Our study also confirms the correlation between polyQ-hHtt aggregation and neuronal defects. Finally, these results strongly suggest a therapeutic potential for P42, specific of Huntington's disease.
url http://europepmc.org/articles/PMC3701666?pdf=render
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