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Melanocytes from Patients Affected by Ullrich Congenital Muscular Dystrophy and Bethlem Myopathy have Dysfunctional Mitochondria That Can be Rescued with Cyclophilin Inhibitors

Ullrich congenital muscular dystrophy and Bethlem myopathy are caused by mutations in collagen VI (ColVI) genes, which encode an extracellular matrix protein; yet, mitochondria play a major role in disease pathogenesis through a short circuit caused by inappropriate opening of the permeability trans...

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Autores principales: Zulian, Alessandra, Tagliavini, Francesca, Rizzo, Erika, Pellegrini, Camilla, Sardone, Francesca, Zini, Nicoletta, Maraldi, Nadir Mario, Santi, Spartaco, Faldini, Cesare, Merlini, Luciano, Petronilli, Valeria, Bernardi, Paolo, Sabatelli, Patrizia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4238408/
https://www.ncbi.nlm.nih.gov/pubmed/25477819
http://dx.doi.org/10.3389/fnagi.2014.00324
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author Zulian, Alessandra
Tagliavini, Francesca
Rizzo, Erika
Pellegrini, Camilla
Sardone, Francesca
Zini, Nicoletta
Maraldi, Nadir Mario
Santi, Spartaco
Faldini, Cesare
Merlini, Luciano
Petronilli, Valeria
Bernardi, Paolo
Sabatelli, Patrizia
author_facet Zulian, Alessandra
Tagliavini, Francesca
Rizzo, Erika
Pellegrini, Camilla
Sardone, Francesca
Zini, Nicoletta
Maraldi, Nadir Mario
Santi, Spartaco
Faldini, Cesare
Merlini, Luciano
Petronilli, Valeria
Bernardi, Paolo
Sabatelli, Patrizia
author_sort Zulian, Alessandra
collection PubMed
description Ullrich congenital muscular dystrophy and Bethlem myopathy are caused by mutations in collagen VI (ColVI) genes, which encode an extracellular matrix protein; yet, mitochondria play a major role in disease pathogenesis through a short circuit caused by inappropriate opening of the permeability transition pore, a high-conductance channel, which causes a shortage in ATP production. We find that melanocytes do not produce ColVI yet they bind it at the cell surface, suggesting that this protein may play a trophic role and that its absence may cause lesions similar to those seen in skeletal muscle. We show that mitochondria in melanocytes of Ullrich congenital muscular dystrophy and Bethlem myopathy patients display increased size, reduced matrix density, and disrupted cristae, findings that suggest a functional impairment. In keeping with this hypothesis, mitochondria (i) underwent anomalous depolarization after inhibition of the F-ATP synthase with oligomycin, and (ii) displayed decreased respiratory reserve capacity. The non-immunosuppressive cyclophilin inhibitor NIM811 prevented mitochondrial depolarization in response to oligomycin in melanocytes from both Ullrich congenital muscular dystrophy and Bethlem myopathy patients, and partially restored the respiratory reserve of melanocytes from one Bethlem myopathy patient. These results match our recent findings on melanocytes from patients affected by Duchenne muscular dystrophy (Pellegrini et al., 2013), and suggest that skin biopsies may represent a minimally invasive tool to investigate mitochondrial dysfunction and to evaluate drug efficacy in ColVI-related myopathies and possibly in other muscle wasting conditions like aging sarcopenia.
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spelling pubmed-42384082014-12-04 Melanocytes from Patients Affected by Ullrich Congenital Muscular Dystrophy and Bethlem Myopathy have Dysfunctional Mitochondria That Can be Rescued with Cyclophilin Inhibitors Zulian, Alessandra Tagliavini, Francesca Rizzo, Erika Pellegrini, Camilla Sardone, Francesca Zini, Nicoletta Maraldi, Nadir Mario Santi, Spartaco Faldini, Cesare Merlini, Luciano Petronilli, Valeria Bernardi, Paolo Sabatelli, Patrizia Front Aging Neurosci Neuroscience Ullrich congenital muscular dystrophy and Bethlem myopathy are caused by mutations in collagen VI (ColVI) genes, which encode an extracellular matrix protein; yet, mitochondria play a major role in disease pathogenesis through a short circuit caused by inappropriate opening of the permeability transition pore, a high-conductance channel, which causes a shortage in ATP production. We find that melanocytes do not produce ColVI yet they bind it at the cell surface, suggesting that this protein may play a trophic role and that its absence may cause lesions similar to those seen in skeletal muscle. We show that mitochondria in melanocytes of Ullrich congenital muscular dystrophy and Bethlem myopathy patients display increased size, reduced matrix density, and disrupted cristae, findings that suggest a functional impairment. In keeping with this hypothesis, mitochondria (i) underwent anomalous depolarization after inhibition of the F-ATP synthase with oligomycin, and (ii) displayed decreased respiratory reserve capacity. The non-immunosuppressive cyclophilin inhibitor NIM811 prevented mitochondrial depolarization in response to oligomycin in melanocytes from both Ullrich congenital muscular dystrophy and Bethlem myopathy patients, and partially restored the respiratory reserve of melanocytes from one Bethlem myopathy patient. These results match our recent findings on melanocytes from patients affected by Duchenne muscular dystrophy (Pellegrini et al., 2013), and suggest that skin biopsies may represent a minimally invasive tool to investigate mitochondrial dysfunction and to evaluate drug efficacy in ColVI-related myopathies and possibly in other muscle wasting conditions like aging sarcopenia. Frontiers Media S.A. 2014-11-20 /pmc/articles/PMC4238408/ /pubmed/25477819 http://dx.doi.org/10.3389/fnagi.2014.00324 Text en Copyright © 2014 Zulian, Tagliavini, Rizzo, Pellegrini, Sardone, Zini, Maraldi, Santi, Faldini, Merlini, Petronilli, Bernardi and Sabatelli. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Neuroscience
Zulian, Alessandra
Tagliavini, Francesca
Rizzo, Erika
Pellegrini, Camilla
Sardone, Francesca
Zini, Nicoletta
Maraldi, Nadir Mario
Santi, Spartaco
Faldini, Cesare
Merlini, Luciano
Petronilli, Valeria
Bernardi, Paolo
Sabatelli, Patrizia
Melanocytes from Patients Affected by Ullrich Congenital Muscular Dystrophy and Bethlem Myopathy have Dysfunctional Mitochondria That Can be Rescued with Cyclophilin Inhibitors
title Melanocytes from Patients Affected by Ullrich Congenital Muscular Dystrophy and Bethlem Myopathy have Dysfunctional Mitochondria That Can be Rescued with Cyclophilin Inhibitors
title_full Melanocytes from Patients Affected by Ullrich Congenital Muscular Dystrophy and Bethlem Myopathy have Dysfunctional Mitochondria That Can be Rescued with Cyclophilin Inhibitors
title_fullStr Melanocytes from Patients Affected by Ullrich Congenital Muscular Dystrophy and Bethlem Myopathy have Dysfunctional Mitochondria That Can be Rescued with Cyclophilin Inhibitors
title_full_unstemmed Melanocytes from Patients Affected by Ullrich Congenital Muscular Dystrophy and Bethlem Myopathy have Dysfunctional Mitochondria That Can be Rescued with Cyclophilin Inhibitors
title_short Melanocytes from Patients Affected by Ullrich Congenital Muscular Dystrophy and Bethlem Myopathy have Dysfunctional Mitochondria That Can be Rescued with Cyclophilin Inhibitors
title_sort melanocytes from patients affected by ullrich congenital muscular dystrophy and bethlem myopathy have dysfunctional mitochondria that can be rescued with cyclophilin inhibitors
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4238408/
https://www.ncbi.nlm.nih.gov/pubmed/25477819
http://dx.doi.org/10.3389/fnagi.2014.00324
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