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AAV-mediated intramuscular delivery of myotubularin corrects the myotubular myopathy phenotype in targeted murine muscle and suggests a function in plasma membrane homeostasis

Myotubular myopathy (XLMTM, OMIM 310400) is a severe congenital muscular disease due to mutations in the myotubularin gene (MTM1) and characterized by the presence of small myofibers with frequent occurrence of central nuclei. Myotubularin is a ubiquitously expressed phosphoinositide phosphatase wit...

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Autores principales: Buj-Bello, Anna, Fougerousse, Françoise, Schwab, Yannick, Messaddeq, Nadia, Spehner, Danièle, Pierson, Christopher R., Durand, Muriel, Kretz, Christine, Danos, Olivier, Douar, Anne-Marie, Beggs, Alan H., Schultz, Patrick, Montus, Marie, Denèfle, Patrice, Mandel, Jean-Louis
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2441725/
https://www.ncbi.nlm.nih.gov/pubmed/18434328
http://dx.doi.org/10.1093/hmg/ddn112
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author Buj-Bello, Anna
Fougerousse, Françoise
Schwab, Yannick
Messaddeq, Nadia
Spehner, Danièle
Pierson, Christopher R.
Durand, Muriel
Kretz, Christine
Danos, Olivier
Douar, Anne-Marie
Beggs, Alan H.
Schultz, Patrick
Montus, Marie
Denèfle, Patrice
Mandel, Jean-Louis
author_facet Buj-Bello, Anna
Fougerousse, Françoise
Schwab, Yannick
Messaddeq, Nadia
Spehner, Danièle
Pierson, Christopher R.
Durand, Muriel
Kretz, Christine
Danos, Olivier
Douar, Anne-Marie
Beggs, Alan H.
Schultz, Patrick
Montus, Marie
Denèfle, Patrice
Mandel, Jean-Louis
author_sort Buj-Bello, Anna
collection PubMed
description Myotubular myopathy (XLMTM, OMIM 310400) is a severe congenital muscular disease due to mutations in the myotubularin gene (MTM1) and characterized by the presence of small myofibers with frequent occurrence of central nuclei. Myotubularin is a ubiquitously expressed phosphoinositide phosphatase with a muscle-specific role in man and mouse that is poorly understood. No specific treatment exists to date for patients with myotubular myopathy. We have constructed an adeno-associated virus (AAV) vector expressing myotubularin in order to test its therapeutic potential in a XLMTM mouse model. We show that a single intramuscular injection of this vector in symptomatic Mtm1-deficient mice ameliorates the pathological phenotype in the targeted muscle. Myotubularin replacement in mice largely corrects nuclei and mitochondria positioning in myofibers and leads to a strong increase in muscle volume and recovery of the contractile force. In addition, we used this AAV vector to overexpress myotubularin in wild-type skeletal muscle and get insight into its localization and function. We show that a substantial proportion of myotubularin associates with the sarcolemma and I band, including triads. Myotubularin overexpression in muscle induces the accumulation of packed membrane saccules and presence of vacuoles that contain markers of sarcolemma and T-tubules, suggesting that myotubularin is involved in plasma membrane homeostasis of myofibers. This study provides a proof-of-principle that local delivery of an AAV vector expressing myotubularin can improve the motor capacities of XLMTM muscle and represents a novel approach to study myotubularin function in skeletal muscle.
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spelling pubmed-24417252009-02-25 AAV-mediated intramuscular delivery of myotubularin corrects the myotubular myopathy phenotype in targeted murine muscle and suggests a function in plasma membrane homeostasis Buj-Bello, Anna Fougerousse, Françoise Schwab, Yannick Messaddeq, Nadia Spehner, Danièle Pierson, Christopher R. Durand, Muriel Kretz, Christine Danos, Olivier Douar, Anne-Marie Beggs, Alan H. Schultz, Patrick Montus, Marie Denèfle, Patrice Mandel, Jean-Louis Hum Mol Genet Articles Myotubular myopathy (XLMTM, OMIM 310400) is a severe congenital muscular disease due to mutations in the myotubularin gene (MTM1) and characterized by the presence of small myofibers with frequent occurrence of central nuclei. Myotubularin is a ubiquitously expressed phosphoinositide phosphatase with a muscle-specific role in man and mouse that is poorly understood. No specific treatment exists to date for patients with myotubular myopathy. We have constructed an adeno-associated virus (AAV) vector expressing myotubularin in order to test its therapeutic potential in a XLMTM mouse model. We show that a single intramuscular injection of this vector in symptomatic Mtm1-deficient mice ameliorates the pathological phenotype in the targeted muscle. Myotubularin replacement in mice largely corrects nuclei and mitochondria positioning in myofibers and leads to a strong increase in muscle volume and recovery of the contractile force. In addition, we used this AAV vector to overexpress myotubularin in wild-type skeletal muscle and get insight into its localization and function. We show that a substantial proportion of myotubularin associates with the sarcolemma and I band, including triads. Myotubularin overexpression in muscle induces the accumulation of packed membrane saccules and presence of vacuoles that contain markers of sarcolemma and T-tubules, suggesting that myotubularin is involved in plasma membrane homeostasis of myofibers. This study provides a proof-of-principle that local delivery of an AAV vector expressing myotubularin can improve the motor capacities of XLMTM muscle and represents a novel approach to study myotubularin function in skeletal muscle. Oxford University Press 2008-07-15 2008-04-22 /pmc/articles/PMC2441725/ /pubmed/18434328 http://dx.doi.org/10.1093/hmg/ddn112 Text en © 2008 The Author(s) http://creativecommons.org/licenses/by-nc/2.0/uk/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/2.0/uk/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Buj-Bello, Anna
Fougerousse, Françoise
Schwab, Yannick
Messaddeq, Nadia
Spehner, Danièle
Pierson, Christopher R.
Durand, Muriel
Kretz, Christine
Danos, Olivier
Douar, Anne-Marie
Beggs, Alan H.
Schultz, Patrick
Montus, Marie
Denèfle, Patrice
Mandel, Jean-Louis
AAV-mediated intramuscular delivery of myotubularin corrects the myotubular myopathy phenotype in targeted murine muscle and suggests a function in plasma membrane homeostasis
title AAV-mediated intramuscular delivery of myotubularin corrects the myotubular myopathy phenotype in targeted murine muscle and suggests a function in plasma membrane homeostasis
title_full AAV-mediated intramuscular delivery of myotubularin corrects the myotubular myopathy phenotype in targeted murine muscle and suggests a function in plasma membrane homeostasis
title_fullStr AAV-mediated intramuscular delivery of myotubularin corrects the myotubular myopathy phenotype in targeted murine muscle and suggests a function in plasma membrane homeostasis
title_full_unstemmed AAV-mediated intramuscular delivery of myotubularin corrects the myotubular myopathy phenotype in targeted murine muscle and suggests a function in plasma membrane homeostasis
title_short AAV-mediated intramuscular delivery of myotubularin corrects the myotubular myopathy phenotype in targeted murine muscle and suggests a function in plasma membrane homeostasis
title_sort aav-mediated intramuscular delivery of myotubularin corrects the myotubular myopathy phenotype in targeted murine muscle and suggests a function in plasma membrane homeostasis
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2441725/
https://www.ncbi.nlm.nih.gov/pubmed/18434328
http://dx.doi.org/10.1093/hmg/ddn112
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