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Integrin α7 Mutations Are Associated With Adult‐Onset Cardiac Dysfunction in Humans and Mice

BACKGROUND: Integrin α7β1 is a major laminin receptor in skeletal and cardiac muscle. In skeletal muscle, integrin α7β1 plays an important role during muscle development and has been described as an important modifier of skeletal muscle diseases. The integrin α7β1 is also highly expressed in the hea...

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Autores principales: Bugiardini, Enrico, Nunes, Andreia M., Oliveira‐Santos, Ariany, Dagda, Marisela, Fontelonga, Tatiana M., Barraza‐Flores, Pamela, Pittman, Alan M., Morrow, Jasper M., Parton, Matthew, Houlden, Henry, Elliott, Perry M., Syrris, Petros, Maas, Roderick P., Akhtar, Mohammed M., Küsters, Benno, Raaphorst, Joost, Schouten, Meyke, Kamsteeg, Erik‐Jan, van Engelen, Baziel, Hanna, Michael G., Phadke, Rahul, Lopes, Luis R., Matthews, Emma, Burkin, Dean J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9851448/
https://www.ncbi.nlm.nih.gov/pubmed/36444867
http://dx.doi.org/10.1161/JAHA.122.026494
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author Bugiardini, Enrico
Nunes, Andreia M.
Oliveira‐Santos, Ariany
Dagda, Marisela
Fontelonga, Tatiana M.
Barraza‐Flores, Pamela
Pittman, Alan M.
Morrow, Jasper M.
Parton, Matthew
Houlden, Henry
Elliott, Perry M.
Syrris, Petros
Maas, Roderick P.
Akhtar, Mohammed M.
Küsters, Benno
Raaphorst, Joost
Schouten, Meyke
Kamsteeg, Erik‐Jan
van Engelen, Baziel
Hanna, Michael G.
Phadke, Rahul
Lopes, Luis R.
Matthews, Emma
Burkin, Dean J.
author_facet Bugiardini, Enrico
Nunes, Andreia M.
Oliveira‐Santos, Ariany
Dagda, Marisela
Fontelonga, Tatiana M.
Barraza‐Flores, Pamela
Pittman, Alan M.
Morrow, Jasper M.
Parton, Matthew
Houlden, Henry
Elliott, Perry M.
Syrris, Petros
Maas, Roderick P.
Akhtar, Mohammed M.
Küsters, Benno
Raaphorst, Joost
Schouten, Meyke
Kamsteeg, Erik‐Jan
van Engelen, Baziel
Hanna, Michael G.
Phadke, Rahul
Lopes, Luis R.
Matthews, Emma
Burkin, Dean J.
author_sort Bugiardini, Enrico
collection PubMed
description BACKGROUND: Integrin α7β1 is a major laminin receptor in skeletal and cardiac muscle. In skeletal muscle, integrin α7β1 plays an important role during muscle development and has been described as an important modifier of skeletal muscle diseases. The integrin α7β1 is also highly expressed in the heart, but its precise role in cardiac function is unknown. Mutations in the integrin α7 gene (ITGA7) have been reported in children with congenital myopathy. METHODS AND RESULTS: In this study, we described skeletal and cardiac muscle pathology in Itga7 ( −/− ) mice and 5 patients from 2 unrelated families with ITGA7 mutations. Proband in family 1 presented a homozygous c.806_818del [p.S269fs] variant, and proband in family 2 was identified with 2 intron variants in the ITGA7 gene. The complete absence of the integrin α7 protein in muscle supports the ITGA7 mutations are pathogenic. We performed electrocardiography, echocardiography, or cardiac magnetic resonance imaging, and histological biopsy analyses in patients with ITGA7 deficiency and Itga7 ( −/− ) mice. The patients exhibited cardiac dysrhythmia and dysfunction from the third decade of life and late‐onset respiratory insufficiency, but with relatively mild limb muscle involvement. Mice demonstrated corresponding abnormalities in cardiac conduction and contraction as well as diaphragm muscle fibrosis. CONCLUSIONS: Our data suggest that loss of integrin α7 causes a novel form of adult‐onset cardiac dysfunction indicating a critical role for the integrin α7β1 in normal cardiac function and highlights the need for long‐term cardiac monitoring in patients with ITGA7‐related congenital myopathy.
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spelling pubmed-98514482023-01-24 Integrin α7 Mutations Are Associated With Adult‐Onset Cardiac Dysfunction in Humans and Mice Bugiardini, Enrico Nunes, Andreia M. Oliveira‐Santos, Ariany Dagda, Marisela Fontelonga, Tatiana M. Barraza‐Flores, Pamela Pittman, Alan M. Morrow, Jasper M. Parton, Matthew Houlden, Henry Elliott, Perry M. Syrris, Petros Maas, Roderick P. Akhtar, Mohammed M. Küsters, Benno Raaphorst, Joost Schouten, Meyke Kamsteeg, Erik‐Jan van Engelen, Baziel Hanna, Michael G. Phadke, Rahul Lopes, Luis R. Matthews, Emma Burkin, Dean J. J Am Heart Assoc Original Research BACKGROUND: Integrin α7β1 is a major laminin receptor in skeletal and cardiac muscle. In skeletal muscle, integrin α7β1 plays an important role during muscle development and has been described as an important modifier of skeletal muscle diseases. The integrin α7β1 is also highly expressed in the heart, but its precise role in cardiac function is unknown. Mutations in the integrin α7 gene (ITGA7) have been reported in children with congenital myopathy. METHODS AND RESULTS: In this study, we described skeletal and cardiac muscle pathology in Itga7 ( −/− ) mice and 5 patients from 2 unrelated families with ITGA7 mutations. Proband in family 1 presented a homozygous c.806_818del [p.S269fs] variant, and proband in family 2 was identified with 2 intron variants in the ITGA7 gene. The complete absence of the integrin α7 protein in muscle supports the ITGA7 mutations are pathogenic. We performed electrocardiography, echocardiography, or cardiac magnetic resonance imaging, and histological biopsy analyses in patients with ITGA7 deficiency and Itga7 ( −/− ) mice. The patients exhibited cardiac dysrhythmia and dysfunction from the third decade of life and late‐onset respiratory insufficiency, but with relatively mild limb muscle involvement. Mice demonstrated corresponding abnormalities in cardiac conduction and contraction as well as diaphragm muscle fibrosis. CONCLUSIONS: Our data suggest that loss of integrin α7 causes a novel form of adult‐onset cardiac dysfunction indicating a critical role for the integrin α7β1 in normal cardiac function and highlights the need for long‐term cardiac monitoring in patients with ITGA7‐related congenital myopathy. John Wiley and Sons Inc. 2022-12-06 /pmc/articles/PMC9851448/ /pubmed/36444867 http://dx.doi.org/10.1161/JAHA.122.026494 Text en © 2022 The Authors. Published on behalf of the American Heart Association, Inc., by Wiley. https://creativecommons.org/licenses/by-nc/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Original Research
Bugiardini, Enrico
Nunes, Andreia M.
Oliveira‐Santos, Ariany
Dagda, Marisela
Fontelonga, Tatiana M.
Barraza‐Flores, Pamela
Pittman, Alan M.
Morrow, Jasper M.
Parton, Matthew
Houlden, Henry
Elliott, Perry M.
Syrris, Petros
Maas, Roderick P.
Akhtar, Mohammed M.
Küsters, Benno
Raaphorst, Joost
Schouten, Meyke
Kamsteeg, Erik‐Jan
van Engelen, Baziel
Hanna, Michael G.
Phadke, Rahul
Lopes, Luis R.
Matthews, Emma
Burkin, Dean J.
Integrin α7 Mutations Are Associated With Adult‐Onset Cardiac Dysfunction in Humans and Mice
title Integrin α7 Mutations Are Associated With Adult‐Onset Cardiac Dysfunction in Humans and Mice
title_full Integrin α7 Mutations Are Associated With Adult‐Onset Cardiac Dysfunction in Humans and Mice
title_fullStr Integrin α7 Mutations Are Associated With Adult‐Onset Cardiac Dysfunction in Humans and Mice
title_full_unstemmed Integrin α7 Mutations Are Associated With Adult‐Onset Cardiac Dysfunction in Humans and Mice
title_short Integrin α7 Mutations Are Associated With Adult‐Onset Cardiac Dysfunction in Humans and Mice
title_sort integrin α7 mutations are associated with adult‐onset cardiac dysfunction in humans and mice
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9851448/
https://www.ncbi.nlm.nih.gov/pubmed/36444867
http://dx.doi.org/10.1161/JAHA.122.026494
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