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Altered Splicing of the BIN1 Muscle-Specific Exon in Humans and Dogs with Highly Progressive Centronuclear Myopathy

Amphiphysin 2, encoded by BIN1, is a key factor for membrane sensing and remodelling in different cell types. Homozygous BIN1 mutations in ubiquitously expressed exons are associated with autosomal recessive centronuclear myopathy (CNM), a mildly progressive muscle disorder typically showing abnorma...

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Autores principales: Böhm, Johann, Vasli, Nasim, Maurer, Marie, Cowling, Belinda, Shelton, G. Diane, Kress, Wolfram, Toussaint, Anne, Prokic, Ivana, Schara, Ulrike, Anderson, Thomas James, Weis, Joachim, Tiret, Laurent, Laporte, Jocelyn
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3675003/
https://www.ncbi.nlm.nih.gov/pubmed/23754947
http://dx.doi.org/10.1371/journal.pgen.1003430
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author Böhm, Johann
Vasli, Nasim
Maurer, Marie
Cowling, Belinda
Shelton, G. Diane
Kress, Wolfram
Toussaint, Anne
Prokic, Ivana
Schara, Ulrike
Anderson, Thomas James
Weis, Joachim
Tiret, Laurent
Laporte, Jocelyn
author_facet Böhm, Johann
Vasli, Nasim
Maurer, Marie
Cowling, Belinda
Shelton, G. Diane
Kress, Wolfram
Toussaint, Anne
Prokic, Ivana
Schara, Ulrike
Anderson, Thomas James
Weis, Joachim
Tiret, Laurent
Laporte, Jocelyn
author_sort Böhm, Johann
collection PubMed
description Amphiphysin 2, encoded by BIN1, is a key factor for membrane sensing and remodelling in different cell types. Homozygous BIN1 mutations in ubiquitously expressed exons are associated with autosomal recessive centronuclear myopathy (CNM), a mildly progressive muscle disorder typically showing abnormal nuclear centralization on biopsies. In addition, misregulation of BIN1 splicing partially accounts for the muscle defects in myotonic dystrophy (DM). However, the muscle-specific function of amphiphysin 2 and its pathogenicity in both muscle disorders are not well understood. In this study we identified and characterized the first mutation affecting the splicing of the muscle-specific BIN1 exon 11 in a consanguineous family with rapidly progressive and ultimately fatal centronuclear myopathy. In parallel, we discovered a mutation in the same BIN1 exon 11 acceptor splice site as the genetic cause of the canine Inherited Myopathy of Great Danes (IMGD). Analysis of RNA from patient muscle demonstrated complete skipping of exon 11 and BIN1 constructs without exon 11 were unable to promote membrane tubulation in differentiated myotubes. Comparative immunofluorescence and ultrastructural analyses of patient and canine biopsies revealed common structural defects, emphasizing the importance of amphiphysin 2 in membrane remodelling and maintenance of the skeletal muscle triad. Our data demonstrate that the alteration of the muscle-specific function of amphiphysin 2 is a common pathomechanism for centronuclear myopathy, myotonic dystrophy, and IMGD. The IMGD dog is the first faithful model for human BIN1-related CNM and represents a mammalian model available for preclinical trials of potential therapies.
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spelling pubmed-36750032013-06-10 Altered Splicing of the BIN1 Muscle-Specific Exon in Humans and Dogs with Highly Progressive Centronuclear Myopathy Böhm, Johann Vasli, Nasim Maurer, Marie Cowling, Belinda Shelton, G. Diane Kress, Wolfram Toussaint, Anne Prokic, Ivana Schara, Ulrike Anderson, Thomas James Weis, Joachim Tiret, Laurent Laporte, Jocelyn PLoS Genet Research Article Amphiphysin 2, encoded by BIN1, is a key factor for membrane sensing and remodelling in different cell types. Homozygous BIN1 mutations in ubiquitously expressed exons are associated with autosomal recessive centronuclear myopathy (CNM), a mildly progressive muscle disorder typically showing abnormal nuclear centralization on biopsies. In addition, misregulation of BIN1 splicing partially accounts for the muscle defects in myotonic dystrophy (DM). However, the muscle-specific function of amphiphysin 2 and its pathogenicity in both muscle disorders are not well understood. In this study we identified and characterized the first mutation affecting the splicing of the muscle-specific BIN1 exon 11 in a consanguineous family with rapidly progressive and ultimately fatal centronuclear myopathy. In parallel, we discovered a mutation in the same BIN1 exon 11 acceptor splice site as the genetic cause of the canine Inherited Myopathy of Great Danes (IMGD). Analysis of RNA from patient muscle demonstrated complete skipping of exon 11 and BIN1 constructs without exon 11 were unable to promote membrane tubulation in differentiated myotubes. Comparative immunofluorescence and ultrastructural analyses of patient and canine biopsies revealed common structural defects, emphasizing the importance of amphiphysin 2 in membrane remodelling and maintenance of the skeletal muscle triad. Our data demonstrate that the alteration of the muscle-specific function of amphiphysin 2 is a common pathomechanism for centronuclear myopathy, myotonic dystrophy, and IMGD. The IMGD dog is the first faithful model for human BIN1-related CNM and represents a mammalian model available for preclinical trials of potential therapies. Public Library of Science 2013-06-06 /pmc/articles/PMC3675003/ /pubmed/23754947 http://dx.doi.org/10.1371/journal.pgen.1003430 Text en © 2013 Bohm 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
Böhm, Johann
Vasli, Nasim
Maurer, Marie
Cowling, Belinda
Shelton, G. Diane
Kress, Wolfram
Toussaint, Anne
Prokic, Ivana
Schara, Ulrike
Anderson, Thomas James
Weis, Joachim
Tiret, Laurent
Laporte, Jocelyn
Altered Splicing of the BIN1 Muscle-Specific Exon in Humans and Dogs with Highly Progressive Centronuclear Myopathy
title Altered Splicing of the BIN1 Muscle-Specific Exon in Humans and Dogs with Highly Progressive Centronuclear Myopathy
title_full Altered Splicing of the BIN1 Muscle-Specific Exon in Humans and Dogs with Highly Progressive Centronuclear Myopathy
title_fullStr Altered Splicing of the BIN1 Muscle-Specific Exon in Humans and Dogs with Highly Progressive Centronuclear Myopathy
title_full_unstemmed Altered Splicing of the BIN1 Muscle-Specific Exon in Humans and Dogs with Highly Progressive Centronuclear Myopathy
title_short Altered Splicing of the BIN1 Muscle-Specific Exon in Humans and Dogs with Highly Progressive Centronuclear Myopathy
title_sort altered splicing of the bin1 muscle-specific exon in humans and dogs with highly progressive centronuclear myopathy
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3675003/
https://www.ncbi.nlm.nih.gov/pubmed/23754947
http://dx.doi.org/10.1371/journal.pgen.1003430
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