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Increased mitophagy in the skeletal muscle of spinal and bulbar muscular atrophy patients

Spinal and bulbar muscular atrophy (SBMA) is a neuromuscular disorder caused by polyglutamine expansion in the androgen receptor (AR) and characterized by the loss of lower motor neurons. Here we investigated pathological processes occurring in muscle biopsy specimens derived from SBMA patients and,...

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Autores principales: Borgia, Doriana, Malena, Adriana, Spinazzi, Marco, Desbats, Maria Andrea, Salviati, Leonardo, Russell, Aaron P., Miotto, Giovanni, Tosatto, Laura, Pegoraro, Elena, Sorarù, Gianni, Pennuto, Maria, Vergani, Lodovica
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5409076/
https://www.ncbi.nlm.nih.gov/pubmed/28087734
http://dx.doi.org/10.1093/hmg/ddx019
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author Borgia, Doriana
Malena, Adriana
Spinazzi, Marco
Desbats, Maria Andrea
Salviati, Leonardo
Russell, Aaron P.
Miotto, Giovanni
Tosatto, Laura
Pegoraro, Elena
Sorarù, Gianni
Pennuto, Maria
Vergani, Lodovica
author_facet Borgia, Doriana
Malena, Adriana
Spinazzi, Marco
Desbats, Maria Andrea
Salviati, Leonardo
Russell, Aaron P.
Miotto, Giovanni
Tosatto, Laura
Pegoraro, Elena
Sorarù, Gianni
Pennuto, Maria
Vergani, Lodovica
author_sort Borgia, Doriana
collection PubMed
description Spinal and bulbar muscular atrophy (SBMA) is a neuromuscular disorder caused by polyglutamine expansion in the androgen receptor (AR) and characterized by the loss of lower motor neurons. Here we investigated pathological processes occurring in muscle biopsy specimens derived from SBMA patients and, as controls, age-matched healthy subjects and patients suffering from amyotrophic lateral sclerosis (ALS) and neurogenic atrophy. We detected atrophic fibers in the muscle of SBMA, ALS and neurogenic atrophy patients. In addition, SBMA muscle was characterized by the presence of a large number of hypertrophic fibers, with oxidative fibers having a larger size compared with glycolytic fibers. Polyglutamine-expanded AR expression was decreased in whole muscle, yet enriched in the nucleus, and localized to mitochondria. Ultrastructural analysis revealed myofibrillar disorganization and streaming in zones lacking mitochondria and degenerating mitochondria. Using molecular (mtDNA copy number), biochemical (citrate synthase and respiratory chain enzymes) and morphological (dark blue area in nicotinamide adenine dinucleotide-stained muscle cross-sections) analyses, we found a depletion of the mitochondria associated with enhanced mitophagy. Mass spectrometry analysis revealed an increase of phosphatidylethanolamines and phosphatidylserines in mitochondria isolated from SBMA muscles, as well as a 50% depletion of cardiolipin associated with decreased expression of the cardiolipin synthase gene. These observations suggest a causative link between nuclear polyglutamine-expanded AR accumulation, depletion of mitochondrial mass, increased mitophagy and altered mitochondrial membrane composition in SBMA muscle patients. Given the central role of mitochondria in cell bioenergetics, therapeutic approaches toward improving the mitochondrial network are worth considering to support SBMA patients.
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spelling pubmed-54090762017-05-03 Increased mitophagy in the skeletal muscle of spinal and bulbar muscular atrophy patients Borgia, Doriana Malena, Adriana Spinazzi, Marco Desbats, Maria Andrea Salviati, Leonardo Russell, Aaron P. Miotto, Giovanni Tosatto, Laura Pegoraro, Elena Sorarù, Gianni Pennuto, Maria Vergani, Lodovica Hum Mol Genet Articles Spinal and bulbar muscular atrophy (SBMA) is a neuromuscular disorder caused by polyglutamine expansion in the androgen receptor (AR) and characterized by the loss of lower motor neurons. Here we investigated pathological processes occurring in muscle biopsy specimens derived from SBMA patients and, as controls, age-matched healthy subjects and patients suffering from amyotrophic lateral sclerosis (ALS) and neurogenic atrophy. We detected atrophic fibers in the muscle of SBMA, ALS and neurogenic atrophy patients. In addition, SBMA muscle was characterized by the presence of a large number of hypertrophic fibers, with oxidative fibers having a larger size compared with glycolytic fibers. Polyglutamine-expanded AR expression was decreased in whole muscle, yet enriched in the nucleus, and localized to mitochondria. Ultrastructural analysis revealed myofibrillar disorganization and streaming in zones lacking mitochondria and degenerating mitochondria. Using molecular (mtDNA copy number), biochemical (citrate synthase and respiratory chain enzymes) and morphological (dark blue area in nicotinamide adenine dinucleotide-stained muscle cross-sections) analyses, we found a depletion of the mitochondria associated with enhanced mitophagy. Mass spectrometry analysis revealed an increase of phosphatidylethanolamines and phosphatidylserines in mitochondria isolated from SBMA muscles, as well as a 50% depletion of cardiolipin associated with decreased expression of the cardiolipin synthase gene. These observations suggest a causative link between nuclear polyglutamine-expanded AR accumulation, depletion of mitochondrial mass, increased mitophagy and altered mitochondrial membrane composition in SBMA muscle patients. Given the central role of mitochondria in cell bioenergetics, therapeutic approaches toward improving the mitochondrial network are worth considering to support SBMA patients. Oxford University Press 2017-03-15 2017-01-13 /pmc/articles/PMC5409076/ /pubmed/28087734 http://dx.doi.org/10.1093/hmg/ddx019 Text en © The Author 2017. Published by Oxford University Press. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Borgia, Doriana
Malena, Adriana
Spinazzi, Marco
Desbats, Maria Andrea
Salviati, Leonardo
Russell, Aaron P.
Miotto, Giovanni
Tosatto, Laura
Pegoraro, Elena
Sorarù, Gianni
Pennuto, Maria
Vergani, Lodovica
Increased mitophagy in the skeletal muscle of spinal and bulbar muscular atrophy patients
title Increased mitophagy in the skeletal muscle of spinal and bulbar muscular atrophy patients
title_full Increased mitophagy in the skeletal muscle of spinal and bulbar muscular atrophy patients
title_fullStr Increased mitophagy in the skeletal muscle of spinal and bulbar muscular atrophy patients
title_full_unstemmed Increased mitophagy in the skeletal muscle of spinal and bulbar muscular atrophy patients
title_short Increased mitophagy in the skeletal muscle of spinal and bulbar muscular atrophy patients
title_sort increased mitophagy in the skeletal muscle of spinal and bulbar muscular atrophy patients
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5409076/
https://www.ncbi.nlm.nih.gov/pubmed/28087734
http://dx.doi.org/10.1093/hmg/ddx019
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