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Lamin-Related Congenital Muscular Dystrophy Alters Mechanical Signaling and Skeletal Muscle Growth

Laminopathies are a clinically heterogeneous group of disorders caused by mutations in the LMNA gene, which encodes the nuclear envelope proteins lamins A and C. The most frequent diseases associated with LMNA mutations are characterized by skeletal and cardiac involvement, and include autosomal dom...

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Autores principales: Owens, Daniel J., Messéant, Julien, Moog, Sophie, Viggars, Mark, Ferry, Arnaud, Mamchaoui, Kamel, Lacène, Emmanuelle, Roméro, Norma, Brull, Astrid, Bonne, Gisèle, Butler-Browne, Gillian, Coirault, Catherine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7795708/
https://www.ncbi.nlm.nih.gov/pubmed/33396724
http://dx.doi.org/10.3390/ijms22010306
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author Owens, Daniel J.
Messéant, Julien
Moog, Sophie
Viggars, Mark
Ferry, Arnaud
Mamchaoui, Kamel
Lacène, Emmanuelle
Roméro, Norma
Brull, Astrid
Bonne, Gisèle
Butler-Browne, Gillian
Coirault, Catherine
author_facet Owens, Daniel J.
Messéant, Julien
Moog, Sophie
Viggars, Mark
Ferry, Arnaud
Mamchaoui, Kamel
Lacène, Emmanuelle
Roméro, Norma
Brull, Astrid
Bonne, Gisèle
Butler-Browne, Gillian
Coirault, Catherine
author_sort Owens, Daniel J.
collection PubMed
description Laminopathies are a clinically heterogeneous group of disorders caused by mutations in the LMNA gene, which encodes the nuclear envelope proteins lamins A and C. The most frequent diseases associated with LMNA mutations are characterized by skeletal and cardiac involvement, and include autosomal dominant Emery–Dreifuss muscular dystrophy (EDMD), limb-girdle muscular dystrophy type 1B, and LMNA-related congenital muscular dystrophy (LMNA-CMD). Although the exact pathophysiological mechanisms responsible for LMNA-CMD are not yet understood, severe contracture and muscle atrophy suggest that mutations may impair skeletal muscle growth. Using human muscle stem cells (MuSCs) carrying LMNA-CMD mutations, we observe impaired myogenic fusion with disorganized cadherin/β catenin adhesion complexes. We show that skeletal muscle from Lmna-CMD mice is unable to hypertrophy in response to functional overload, due to defective fusion of activated MuSCs, defective protein synthesis and defective remodeling of the neuromuscular junction. Moreover, stretched myotubes and overloaded muscle fibers with LMNA-CMD mutations display aberrant mechanical regulation of the yes-associated protein (YAP). We also observe defects in MuSC activation and YAP signaling in muscle biopsies from LMNA-CMD patients. These phenotypes are not recapitulated in closely related but less severe EDMD models. In conclusion, combining studies in vitro, in vivo, and patient samples, we find that LMNA-CMD mutations interfere with mechanosignaling pathways in skeletal muscle, implicating A-type lamins in the regulation of skeletal muscle growth.
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spelling pubmed-77957082021-01-10 Lamin-Related Congenital Muscular Dystrophy Alters Mechanical Signaling and Skeletal Muscle Growth Owens, Daniel J. Messéant, Julien Moog, Sophie Viggars, Mark Ferry, Arnaud Mamchaoui, Kamel Lacène, Emmanuelle Roméro, Norma Brull, Astrid Bonne, Gisèle Butler-Browne, Gillian Coirault, Catherine Int J Mol Sci Article Laminopathies are a clinically heterogeneous group of disorders caused by mutations in the LMNA gene, which encodes the nuclear envelope proteins lamins A and C. The most frequent diseases associated with LMNA mutations are characterized by skeletal and cardiac involvement, and include autosomal dominant Emery–Dreifuss muscular dystrophy (EDMD), limb-girdle muscular dystrophy type 1B, and LMNA-related congenital muscular dystrophy (LMNA-CMD). Although the exact pathophysiological mechanisms responsible for LMNA-CMD are not yet understood, severe contracture and muscle atrophy suggest that mutations may impair skeletal muscle growth. Using human muscle stem cells (MuSCs) carrying LMNA-CMD mutations, we observe impaired myogenic fusion with disorganized cadherin/β catenin adhesion complexes. We show that skeletal muscle from Lmna-CMD mice is unable to hypertrophy in response to functional overload, due to defective fusion of activated MuSCs, defective protein synthesis and defective remodeling of the neuromuscular junction. Moreover, stretched myotubes and overloaded muscle fibers with LMNA-CMD mutations display aberrant mechanical regulation of the yes-associated protein (YAP). We also observe defects in MuSC activation and YAP signaling in muscle biopsies from LMNA-CMD patients. These phenotypes are not recapitulated in closely related but less severe EDMD models. In conclusion, combining studies in vitro, in vivo, and patient samples, we find that LMNA-CMD mutations interfere with mechanosignaling pathways in skeletal muscle, implicating A-type lamins in the regulation of skeletal muscle growth. MDPI 2020-12-30 /pmc/articles/PMC7795708/ /pubmed/33396724 http://dx.doi.org/10.3390/ijms22010306 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Owens, Daniel J.
Messéant, Julien
Moog, Sophie
Viggars, Mark
Ferry, Arnaud
Mamchaoui, Kamel
Lacène, Emmanuelle
Roméro, Norma
Brull, Astrid
Bonne, Gisèle
Butler-Browne, Gillian
Coirault, Catherine
Lamin-Related Congenital Muscular Dystrophy Alters Mechanical Signaling and Skeletal Muscle Growth
title Lamin-Related Congenital Muscular Dystrophy Alters Mechanical Signaling and Skeletal Muscle Growth
title_full Lamin-Related Congenital Muscular Dystrophy Alters Mechanical Signaling and Skeletal Muscle Growth
title_fullStr Lamin-Related Congenital Muscular Dystrophy Alters Mechanical Signaling and Skeletal Muscle Growth
title_full_unstemmed Lamin-Related Congenital Muscular Dystrophy Alters Mechanical Signaling and Skeletal Muscle Growth
title_short Lamin-Related Congenital Muscular Dystrophy Alters Mechanical Signaling and Skeletal Muscle Growth
title_sort lamin-related congenital muscular dystrophy alters mechanical signaling and skeletal muscle growth
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7795708/
https://www.ncbi.nlm.nih.gov/pubmed/33396724
http://dx.doi.org/10.3390/ijms22010306
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