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Trehalose Improves Human Fibroblast Deficits in a New CHIP-Mutation Related Ataxia

In this work we investigate the role of CHIP in a new CHIP-mutation related ataxia and the therapeutic potential of trehalose. The patient's fibroblasts with a new form of hereditary ataxia, related to STUB1 gene (CHIP) mutations, and three age and sex-matched controls were treated with epoxomi...

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Autores principales: Casarejos, Maria Jose, Perucho, Juan, López-Sendón, Jose Luis, García de Yébenes, Justo, Bettencourt, Conceição, Gómez, Ana, Ruiz, Carolina, Heutink, Peter, Rizzu, Patrizia, Mena, Maria Angeles
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4178022/
https://www.ncbi.nlm.nih.gov/pubmed/25259530
http://dx.doi.org/10.1371/journal.pone.0106931
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author Casarejos, Maria Jose
Perucho, Juan
López-Sendón, Jose Luis
García de Yébenes, Justo
Bettencourt, Conceição
Gómez, Ana
Ruiz, Carolina
Heutink, Peter
Rizzu, Patrizia
Mena, Maria Angeles
author_facet Casarejos, Maria Jose
Perucho, Juan
López-Sendón, Jose Luis
García de Yébenes, Justo
Bettencourt, Conceição
Gómez, Ana
Ruiz, Carolina
Heutink, Peter
Rizzu, Patrizia
Mena, Maria Angeles
author_sort Casarejos, Maria Jose
collection PubMed
description In this work we investigate the role of CHIP in a new CHIP-mutation related ataxia and the therapeutic potential of trehalose. The patient's fibroblasts with a new form of hereditary ataxia, related to STUB1 gene (CHIP) mutations, and three age and sex-matched controls were treated with epoxomicin and trehalose. The effects on cell death, protein misfolding and proteostasis were evaluated. Recent studies have revealed that mutations in STUB-1 gene lead to a growing list of molecular defects as deregulation of protein quality, inhibition of proteasome, cell death, decreased autophagy and alteration in CHIP and HSP70 levels. In this CHIP-mutant patient fibroblasts the inhibition of proteasome with epoxomicin induced severe pathophysiological age-associated changes, cell death and protein ubiquitination. Additionally, treatment with epoxomicin produced a dose-dependent increase in the number of cleaved caspase-3 positive cells. However, co-treatment with trehalose, a disaccharide of glucose present in a wide variety of organisms and known as a autophagy enhancer, reduced these pathological events. Trehalose application also increased CHIP and HSP70 expression and GSH free radical levels. Furthermore, trehalose augmented macro and chaperone mediated autophagy (CMA), rising the levels of LC3, LAMP2, CD63 and increasing the expression of Beclin-1 and Atg5-Atg12. Trehalose treatment in addition increased the percentage of immunoreactive cells to HSC70 and LAMP2 and reduced the autophagic substrate, p62. Although this is an individual case based on only one patient and the statistical comparisons are not valid between controls and patient, the low variability among controls and the obvious differences with this patient allow us to conclude that trehalose, through its autophagy activation capacity, anti-aggregation properties, anti-oxidative effects and lack of toxicity, could be very promising for the treatment of CHIP-mutation related ataxia, and possibly a wide spectrum of neurodegenerative disorders related to protein disconformation.
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spelling pubmed-41780222014-10-02 Trehalose Improves Human Fibroblast Deficits in a New CHIP-Mutation Related Ataxia Casarejos, Maria Jose Perucho, Juan López-Sendón, Jose Luis García de Yébenes, Justo Bettencourt, Conceição Gómez, Ana Ruiz, Carolina Heutink, Peter Rizzu, Patrizia Mena, Maria Angeles PLoS One Research Article In this work we investigate the role of CHIP in a new CHIP-mutation related ataxia and the therapeutic potential of trehalose. The patient's fibroblasts with a new form of hereditary ataxia, related to STUB1 gene (CHIP) mutations, and three age and sex-matched controls were treated with epoxomicin and trehalose. The effects on cell death, protein misfolding and proteostasis were evaluated. Recent studies have revealed that mutations in STUB-1 gene lead to a growing list of molecular defects as deregulation of protein quality, inhibition of proteasome, cell death, decreased autophagy and alteration in CHIP and HSP70 levels. In this CHIP-mutant patient fibroblasts the inhibition of proteasome with epoxomicin induced severe pathophysiological age-associated changes, cell death and protein ubiquitination. Additionally, treatment with epoxomicin produced a dose-dependent increase in the number of cleaved caspase-3 positive cells. However, co-treatment with trehalose, a disaccharide of glucose present in a wide variety of organisms and known as a autophagy enhancer, reduced these pathological events. Trehalose application also increased CHIP and HSP70 expression and GSH free radical levels. Furthermore, trehalose augmented macro and chaperone mediated autophagy (CMA), rising the levels of LC3, LAMP2, CD63 and increasing the expression of Beclin-1 and Atg5-Atg12. Trehalose treatment in addition increased the percentage of immunoreactive cells to HSC70 and LAMP2 and reduced the autophagic substrate, p62. Although this is an individual case based on only one patient and the statistical comparisons are not valid between controls and patient, the low variability among controls and the obvious differences with this patient allow us to conclude that trehalose, through its autophagy activation capacity, anti-aggregation properties, anti-oxidative effects and lack of toxicity, could be very promising for the treatment of CHIP-mutation related ataxia, and possibly a wide spectrum of neurodegenerative disorders related to protein disconformation. Public Library of Science 2014-09-26 /pmc/articles/PMC4178022/ /pubmed/25259530 http://dx.doi.org/10.1371/journal.pone.0106931 Text en © 2014 Casarejos et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Casarejos, Maria Jose
Perucho, Juan
López-Sendón, Jose Luis
García de Yébenes, Justo
Bettencourt, Conceição
Gómez, Ana
Ruiz, Carolina
Heutink, Peter
Rizzu, Patrizia
Mena, Maria Angeles
Trehalose Improves Human Fibroblast Deficits in a New CHIP-Mutation Related Ataxia
title Trehalose Improves Human Fibroblast Deficits in a New CHIP-Mutation Related Ataxia
title_full Trehalose Improves Human Fibroblast Deficits in a New CHIP-Mutation Related Ataxia
title_fullStr Trehalose Improves Human Fibroblast Deficits in a New CHIP-Mutation Related Ataxia
title_full_unstemmed Trehalose Improves Human Fibroblast Deficits in a New CHIP-Mutation Related Ataxia
title_short Trehalose Improves Human Fibroblast Deficits in a New CHIP-Mutation Related Ataxia
title_sort trehalose improves human fibroblast deficits in a new chip-mutation related ataxia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4178022/
https://www.ncbi.nlm.nih.gov/pubmed/25259530
http://dx.doi.org/10.1371/journal.pone.0106931
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