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Low aerobic capacity in McArdle disease: A role for mitochondrial network impairment?

BACKGROUND: McArdle disease is caused by myophosphorylase deficiency and results in complete inability for muscle glycogen breakdown. A hallmark of this condition is muscle oxidation impairment (e.g., low peak oxygen uptake (VO(2peak))), a phenomenon traditionally attributed to reduced glycolytic fl...

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Autores principales: Villarreal-Salazar, M., Santalla, A., Real-Martínez, A., Nogales-Gadea, G., Valenzuela, P.L., Fiuza-Luces, C., Andreu, A.L., Rodríguez-Aguilera, J.C., Martín, M.A., Arenas, J., Vissing, J., Lucia, A., Krag, T.O., Pinós, T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9758572/
https://www.ncbi.nlm.nih.gov/pubmed/36455789
http://dx.doi.org/10.1016/j.molmet.2022.101648
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author Villarreal-Salazar, M.
Santalla, A.
Real-Martínez, A.
Nogales-Gadea, G.
Valenzuela, P.L.
Fiuza-Luces, C.
Andreu, A.L.
Rodríguez-Aguilera, J.C.
Martín, M.A.
Arenas, J.
Vissing, J.
Lucia, A.
Krag, T.O.
Pinós, T.
author_facet Villarreal-Salazar, M.
Santalla, A.
Real-Martínez, A.
Nogales-Gadea, G.
Valenzuela, P.L.
Fiuza-Luces, C.
Andreu, A.L.
Rodríguez-Aguilera, J.C.
Martín, M.A.
Arenas, J.
Vissing, J.
Lucia, A.
Krag, T.O.
Pinós, T.
author_sort Villarreal-Salazar, M.
collection PubMed
description BACKGROUND: McArdle disease is caused by myophosphorylase deficiency and results in complete inability for muscle glycogen breakdown. A hallmark of this condition is muscle oxidation impairment (e.g., low peak oxygen uptake (VO(2peak))), a phenomenon traditionally attributed to reduced glycolytic flux and Krebs cycle anaplerosis. Here we hypothesized an additional role for muscle mitochondrial network alterations associated with massive intracellular glycogen accumulation. METHODS: We analyzed in depth mitochondrial characteristics-content, biogenesis, ultrastructure-and network integrity in skeletal-muscle from McArdle/control mice and two patients. We also determined VO(2peak) in patients (both sexes, N = 145) and healthy controls (N = 133). RESULTS: Besides corroborating very poor VO(2peak) values in patients and impairment in muscle glycolytic flux, we found that, in McArdle muscle: (a) damaged fibers are likely those with a higher mitochondrial and glycogen content, which show major disruption of the three main cytoskeleton components-actin microfilaments, microtubules and intermediate filaments-thereby contributing to mitochondrial network disruption in skeletal muscle fibers; (b) there was an altered subcellular localization of mitochondrial fission/fusion proteins and of the sarcoplasmic reticulum protein calsequestrin-with subsequent alteration in mitochondrial dynamics/function; impairment in mitochondrial content/biogenesis; and (c) several OXPHOS-related complex proteins/activities were also affected. CONCLUSIONS: In McArdle disease, severe muscle oxidative capacity impairment could also be explained by a disruption of the mitochondrial network, at least in those fibers with a higher capacity for glycogen accumulation. Our findings might pave the way for future research addressing the potential involvement of mitochondrial network alterations in the pathophysiology of other glycogenoses.
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spelling pubmed-97585722022-12-18 Low aerobic capacity in McArdle disease: A role for mitochondrial network impairment? Villarreal-Salazar, M. Santalla, A. Real-Martínez, A. Nogales-Gadea, G. Valenzuela, P.L. Fiuza-Luces, C. Andreu, A.L. Rodríguez-Aguilera, J.C. Martín, M.A. Arenas, J. Vissing, J. Lucia, A. Krag, T.O. Pinós, T. Mol Metab Original Article BACKGROUND: McArdle disease is caused by myophosphorylase deficiency and results in complete inability for muscle glycogen breakdown. A hallmark of this condition is muscle oxidation impairment (e.g., low peak oxygen uptake (VO(2peak))), a phenomenon traditionally attributed to reduced glycolytic flux and Krebs cycle anaplerosis. Here we hypothesized an additional role for muscle mitochondrial network alterations associated with massive intracellular glycogen accumulation. METHODS: We analyzed in depth mitochondrial characteristics-content, biogenesis, ultrastructure-and network integrity in skeletal-muscle from McArdle/control mice and two patients. We also determined VO(2peak) in patients (both sexes, N = 145) and healthy controls (N = 133). RESULTS: Besides corroborating very poor VO(2peak) values in patients and impairment in muscle glycolytic flux, we found that, in McArdle muscle: (a) damaged fibers are likely those with a higher mitochondrial and glycogen content, which show major disruption of the three main cytoskeleton components-actin microfilaments, microtubules and intermediate filaments-thereby contributing to mitochondrial network disruption in skeletal muscle fibers; (b) there was an altered subcellular localization of mitochondrial fission/fusion proteins and of the sarcoplasmic reticulum protein calsequestrin-with subsequent alteration in mitochondrial dynamics/function; impairment in mitochondrial content/biogenesis; and (c) several OXPHOS-related complex proteins/activities were also affected. CONCLUSIONS: In McArdle disease, severe muscle oxidative capacity impairment could also be explained by a disruption of the mitochondrial network, at least in those fibers with a higher capacity for glycogen accumulation. Our findings might pave the way for future research addressing the potential involvement of mitochondrial network alterations in the pathophysiology of other glycogenoses. Elsevier 2022-11-28 /pmc/articles/PMC9758572/ /pubmed/36455789 http://dx.doi.org/10.1016/j.molmet.2022.101648 Text en © 2022 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Villarreal-Salazar, M.
Santalla, A.
Real-Martínez, A.
Nogales-Gadea, G.
Valenzuela, P.L.
Fiuza-Luces, C.
Andreu, A.L.
Rodríguez-Aguilera, J.C.
Martín, M.A.
Arenas, J.
Vissing, J.
Lucia, A.
Krag, T.O.
Pinós, T.
Low aerobic capacity in McArdle disease: A role for mitochondrial network impairment?
title Low aerobic capacity in McArdle disease: A role for mitochondrial network impairment?
title_full Low aerobic capacity in McArdle disease: A role for mitochondrial network impairment?
title_fullStr Low aerobic capacity in McArdle disease: A role for mitochondrial network impairment?
title_full_unstemmed Low aerobic capacity in McArdle disease: A role for mitochondrial network impairment?
title_short Low aerobic capacity in McArdle disease: A role for mitochondrial network impairment?
title_sort low aerobic capacity in mcardle disease: a role for mitochondrial network impairment?
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9758572/
https://www.ncbi.nlm.nih.gov/pubmed/36455789
http://dx.doi.org/10.1016/j.molmet.2022.101648
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