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Dystrophin (DMD) Missense Variant in Cats with Becker-Type Muscular Dystrophy

Muscular dystrophy due to dystrophin deficiency in humans is phenotypically divided into a severe Duchenne and milder Becker type. Dystrophin deficiency has also been described in a few animal species, and few DMD gene variants have been identified in animals. Here, we characterize the clinical, his...

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Autores principales: Hilton, Stephanie, Christen, Matthias, Bilzer, Thomas, Jagannathan, Vidhya, Leeb, Tosso, Giger, Urs
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9964367/
https://www.ncbi.nlm.nih.gov/pubmed/36834603
http://dx.doi.org/10.3390/ijms24043192
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author Hilton, Stephanie
Christen, Matthias
Bilzer, Thomas
Jagannathan, Vidhya
Leeb, Tosso
Giger, Urs
author_facet Hilton, Stephanie
Christen, Matthias
Bilzer, Thomas
Jagannathan, Vidhya
Leeb, Tosso
Giger, Urs
author_sort Hilton, Stephanie
collection PubMed
description Muscular dystrophy due to dystrophin deficiency in humans is phenotypically divided into a severe Duchenne and milder Becker type. Dystrophin deficiency has also been described in a few animal species, and few DMD gene variants have been identified in animals. Here, we characterize the clinical, histopathological, and molecular genetic aspects of a family of Maine Coon crossbred cats with clinically mild and slowly progressive muscular dystrophy. Two young adult male littermate cats exhibited abnormal gait and muscular hypertrophy with macroglossia. Serum creatine kinase activities were highly increased. Histopathologically, dystrophic skeletal muscle exhibited marked structural changes including atrophic, hypertrophic, and necrotic muscle fibers. Immunohistochemistry showed irregularly reduced expression of dystrophin but the staining of other muscle proteins such as β- and γ-sarcoglycans as well as desmin was also diminished. Whole genome sequencing of one affected cat and genotyping of the littermate found both to be hemizygous mutant at a single DMD missense variant (c.4186C>T). No other protein-changing variants in candidate genes for muscular dystrophy were detected. In addition, one clinically healthy male littermate was hemizygous wildtype, while the queen and one female littermate were clinically healthy, but heterozygous. The predicted amino acid exchange (p.His1396Tyr) resides in a conserved central rod spectrin domain of dystrophin. Various protein modeling programs did not predict major disruption of the dystrophin protein by this substitution, but the altered charge of the region may still affect protein function. This study represents the first genotype-to-phenotype correlation of Becker-type dystrophin deficiency in companion animals.
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spelling pubmed-99643672023-02-26 Dystrophin (DMD) Missense Variant in Cats with Becker-Type Muscular Dystrophy Hilton, Stephanie Christen, Matthias Bilzer, Thomas Jagannathan, Vidhya Leeb, Tosso Giger, Urs Int J Mol Sci Article Muscular dystrophy due to dystrophin deficiency in humans is phenotypically divided into a severe Duchenne and milder Becker type. Dystrophin deficiency has also been described in a few animal species, and few DMD gene variants have been identified in animals. Here, we characterize the clinical, histopathological, and molecular genetic aspects of a family of Maine Coon crossbred cats with clinically mild and slowly progressive muscular dystrophy. Two young adult male littermate cats exhibited abnormal gait and muscular hypertrophy with macroglossia. Serum creatine kinase activities were highly increased. Histopathologically, dystrophic skeletal muscle exhibited marked structural changes including atrophic, hypertrophic, and necrotic muscle fibers. Immunohistochemistry showed irregularly reduced expression of dystrophin but the staining of other muscle proteins such as β- and γ-sarcoglycans as well as desmin was also diminished. Whole genome sequencing of one affected cat and genotyping of the littermate found both to be hemizygous mutant at a single DMD missense variant (c.4186C>T). No other protein-changing variants in candidate genes for muscular dystrophy were detected. In addition, one clinically healthy male littermate was hemizygous wildtype, while the queen and one female littermate were clinically healthy, but heterozygous. The predicted amino acid exchange (p.His1396Tyr) resides in a conserved central rod spectrin domain of dystrophin. Various protein modeling programs did not predict major disruption of the dystrophin protein by this substitution, but the altered charge of the region may still affect protein function. This study represents the first genotype-to-phenotype correlation of Becker-type dystrophin deficiency in companion animals. MDPI 2023-02-06 /pmc/articles/PMC9964367/ /pubmed/36834603 http://dx.doi.org/10.3390/ijms24043192 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
Hilton, Stephanie
Christen, Matthias
Bilzer, Thomas
Jagannathan, Vidhya
Leeb, Tosso
Giger, Urs
Dystrophin (DMD) Missense Variant in Cats with Becker-Type Muscular Dystrophy
title Dystrophin (DMD) Missense Variant in Cats with Becker-Type Muscular Dystrophy
title_full Dystrophin (DMD) Missense Variant in Cats with Becker-Type Muscular Dystrophy
title_fullStr Dystrophin (DMD) Missense Variant in Cats with Becker-Type Muscular Dystrophy
title_full_unstemmed Dystrophin (DMD) Missense Variant in Cats with Becker-Type Muscular Dystrophy
title_short Dystrophin (DMD) Missense Variant in Cats with Becker-Type Muscular Dystrophy
title_sort dystrophin (dmd) missense variant in cats with becker-type muscular dystrophy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9964367/
https://www.ncbi.nlm.nih.gov/pubmed/36834603
http://dx.doi.org/10.3390/ijms24043192
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