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Human Mutated MYOT and CRYAB Genes Cause a Myopathic Phenotype in Zebrafish

Myofibrillar myopathies (MFMs) are a group of hereditary neuromuscular disorders sharing common histological features, such as myofibrillar derangement, Z-disk disintegration, and the accumulation of degradation products into protein aggregates. They are caused by mutations in several genes that enc...

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Autores principales: Cannone, Elena, Guglielmi, Valeria, Marchetto, Giulia, Tobia, Chiara, Gnutti, Barbara, Cisterna, Barbara, Tonin, Paola, Barbon, Alessandro, Vattemi, Gaetano, Schiavone, Marco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10380269/
https://www.ncbi.nlm.nih.gov/pubmed/37511242
http://dx.doi.org/10.3390/ijms241411483
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author Cannone, Elena
Guglielmi, Valeria
Marchetto, Giulia
Tobia, Chiara
Gnutti, Barbara
Cisterna, Barbara
Tonin, Paola
Barbon, Alessandro
Vattemi, Gaetano
Schiavone, Marco
author_facet Cannone, Elena
Guglielmi, Valeria
Marchetto, Giulia
Tobia, Chiara
Gnutti, Barbara
Cisterna, Barbara
Tonin, Paola
Barbon, Alessandro
Vattemi, Gaetano
Schiavone, Marco
author_sort Cannone, Elena
collection PubMed
description Myofibrillar myopathies (MFMs) are a group of hereditary neuromuscular disorders sharing common histological features, such as myofibrillar derangement, Z-disk disintegration, and the accumulation of degradation products into protein aggregates. They are caused by mutations in several genes that encode either structural proteins or molecular chaperones. Nevertheless, the mechanisms by which mutated genes result in protein aggregation are still unknown. To unveil the role of myotilin and αB-crystallin in the pathogenesis of MFM, we injected zebrafish fertilized eggs at the one-cell stage with expression plasmids harboring cDNA sequences of human wildtype or mutated MYOT (p.Ser95Ile) and human wildtype or mutated CRYAB (p.Gly154Ser). We evaluated the effects on fish survival, motor behavior, muscle structure and development. We found that transgenic zebrafish showed morphological defects that were more severe in those overexpressing mutant genes. which developed a myopathic phenotype consistent with that of human myofibrillar myopathy, including the formation of protein aggregates. Results indicate that pathogenic mutations in myotilin and αB-crystallin genes associated with MFM cause a structural and functional impairment of the skeletal muscle in zebrafish, thereby making this non-mammalian organism a powerful model to dissect disease pathogenesis and find possible druggable targets.
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spelling pubmed-103802692023-07-29 Human Mutated MYOT and CRYAB Genes Cause a Myopathic Phenotype in Zebrafish Cannone, Elena Guglielmi, Valeria Marchetto, Giulia Tobia, Chiara Gnutti, Barbara Cisterna, Barbara Tonin, Paola Barbon, Alessandro Vattemi, Gaetano Schiavone, Marco Int J Mol Sci Article Myofibrillar myopathies (MFMs) are a group of hereditary neuromuscular disorders sharing common histological features, such as myofibrillar derangement, Z-disk disintegration, and the accumulation of degradation products into protein aggregates. They are caused by mutations in several genes that encode either structural proteins or molecular chaperones. Nevertheless, the mechanisms by which mutated genes result in protein aggregation are still unknown. To unveil the role of myotilin and αB-crystallin in the pathogenesis of MFM, we injected zebrafish fertilized eggs at the one-cell stage with expression plasmids harboring cDNA sequences of human wildtype or mutated MYOT (p.Ser95Ile) and human wildtype or mutated CRYAB (p.Gly154Ser). We evaluated the effects on fish survival, motor behavior, muscle structure and development. We found that transgenic zebrafish showed morphological defects that were more severe in those overexpressing mutant genes. which developed a myopathic phenotype consistent with that of human myofibrillar myopathy, including the formation of protein aggregates. Results indicate that pathogenic mutations in myotilin and αB-crystallin genes associated with MFM cause a structural and functional impairment of the skeletal muscle in zebrafish, thereby making this non-mammalian organism a powerful model to dissect disease pathogenesis and find possible druggable targets. MDPI 2023-07-14 /pmc/articles/PMC10380269/ /pubmed/37511242 http://dx.doi.org/10.3390/ijms241411483 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Cannone, Elena
Guglielmi, Valeria
Marchetto, Giulia
Tobia, Chiara
Gnutti, Barbara
Cisterna, Barbara
Tonin, Paola
Barbon, Alessandro
Vattemi, Gaetano
Schiavone, Marco
Human Mutated MYOT and CRYAB Genes Cause a Myopathic Phenotype in Zebrafish
title Human Mutated MYOT and CRYAB Genes Cause a Myopathic Phenotype in Zebrafish
title_full Human Mutated MYOT and CRYAB Genes Cause a Myopathic Phenotype in Zebrafish
title_fullStr Human Mutated MYOT and CRYAB Genes Cause a Myopathic Phenotype in Zebrafish
title_full_unstemmed Human Mutated MYOT and CRYAB Genes Cause a Myopathic Phenotype in Zebrafish
title_short Human Mutated MYOT and CRYAB Genes Cause a Myopathic Phenotype in Zebrafish
title_sort human mutated myot and cryab genes cause a myopathic phenotype in zebrafish
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10380269/
https://www.ncbi.nlm.nih.gov/pubmed/37511242
http://dx.doi.org/10.3390/ijms241411483
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