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Mena/VASP and αII-Spectrin complexes regulate cytoplasmic actin networks in cardiomyocytes and protect from conduction abnormalities and dilated cardiomyopathy

BACKGROUND: In the heart, cytoplasmic actin networks are thought to have important roles in mechanical support, myofibrillogenesis, and ion channel function. However, subcellular localization of cytoplasmic actin isoforms and proteins involved in the modulation of the cytoplasmic actin networks are...

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Autores principales: Benz, Peter M, Merkel, Carla J, Offner, Kristin, Abeßer, Marco, Ullrich, Melanie, Fischer, Tobias, Bayer, Barbara, Wagner, Helga, Gambaryan, Stepan, Ursitti, Jeanine A, Adham, Ibrahim M, Linke, Wolfgang A, Feller, Stephan M, Fleming, Ingrid, Renné, Thomas, Frantz, Stefan, Unger, Andreas, Schuh, Kai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3751641/
https://www.ncbi.nlm.nih.gov/pubmed/23937664
http://dx.doi.org/10.1186/1478-811X-11-56
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author Benz, Peter M
Merkel, Carla J
Offner, Kristin
Abeßer, Marco
Ullrich, Melanie
Fischer, Tobias
Bayer, Barbara
Wagner, Helga
Gambaryan, Stepan
Ursitti, Jeanine A
Adham, Ibrahim M
Linke, Wolfgang A
Feller, Stephan M
Fleming, Ingrid
Renné, Thomas
Frantz, Stefan
Unger, Andreas
Schuh, Kai
author_facet Benz, Peter M
Merkel, Carla J
Offner, Kristin
Abeßer, Marco
Ullrich, Melanie
Fischer, Tobias
Bayer, Barbara
Wagner, Helga
Gambaryan, Stepan
Ursitti, Jeanine A
Adham, Ibrahim M
Linke, Wolfgang A
Feller, Stephan M
Fleming, Ingrid
Renné, Thomas
Frantz, Stefan
Unger, Andreas
Schuh, Kai
author_sort Benz, Peter M
collection PubMed
description BACKGROUND: In the heart, cytoplasmic actin networks are thought to have important roles in mechanical support, myofibrillogenesis, and ion channel function. However, subcellular localization of cytoplasmic actin isoforms and proteins involved in the modulation of the cytoplasmic actin networks are elusive. Mena and VASP are important regulators of actin dynamics. Due to the lethal phenotype of mice with combined deficiency in Mena and VASP, however, distinct cardiac roles of the proteins remain speculative. In the present study, we analyzed the physiological functions of Mena and VASP in the heart and also investigated the role of the proteins in the organization of cytoplasmic actin networks. RESULTS: We generated a mouse model, which simultaneously lacks Mena and VASP in the heart. Mena/VASP double-deficiency induced dilated cardiomyopathy and conduction abnormalities. In wild-type mice, Mena and VASP specifically interacted with a distinct αII-Spectrin splice variant (SH3i), which is in cardiomyocytes exclusively localized at Z- and intercalated discs. At Z- and intercalated discs, Mena and β-actin localized to the edges of the sarcomeres, where the thin filaments are anchored. In Mena/VASP double-deficient mice, β-actin networks were disrupted and the integrity of Z- and intercalated discs was markedly impaired. CONCLUSIONS: Together, our data suggest that Mena, VASP, and αII-Spectrin assemble cardiac multi-protein complexes, which regulate cytoplasmic actin networks. Conversely, Mena/VASP deficiency results in disrupted β-actin assembly, Z- and intercalated disc malformation, and induces dilated cardiomyopathy and conduction abnormalities.
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spelling pubmed-37516412013-08-24 Mena/VASP and αII-Spectrin complexes regulate cytoplasmic actin networks in cardiomyocytes and protect from conduction abnormalities and dilated cardiomyopathy Benz, Peter M Merkel, Carla J Offner, Kristin Abeßer, Marco Ullrich, Melanie Fischer, Tobias Bayer, Barbara Wagner, Helga Gambaryan, Stepan Ursitti, Jeanine A Adham, Ibrahim M Linke, Wolfgang A Feller, Stephan M Fleming, Ingrid Renné, Thomas Frantz, Stefan Unger, Andreas Schuh, Kai Cell Commun Signal Research BACKGROUND: In the heart, cytoplasmic actin networks are thought to have important roles in mechanical support, myofibrillogenesis, and ion channel function. However, subcellular localization of cytoplasmic actin isoforms and proteins involved in the modulation of the cytoplasmic actin networks are elusive. Mena and VASP are important regulators of actin dynamics. Due to the lethal phenotype of mice with combined deficiency in Mena and VASP, however, distinct cardiac roles of the proteins remain speculative. In the present study, we analyzed the physiological functions of Mena and VASP in the heart and also investigated the role of the proteins in the organization of cytoplasmic actin networks. RESULTS: We generated a mouse model, which simultaneously lacks Mena and VASP in the heart. Mena/VASP double-deficiency induced dilated cardiomyopathy and conduction abnormalities. In wild-type mice, Mena and VASP specifically interacted with a distinct αII-Spectrin splice variant (SH3i), which is in cardiomyocytes exclusively localized at Z- and intercalated discs. At Z- and intercalated discs, Mena and β-actin localized to the edges of the sarcomeres, where the thin filaments are anchored. In Mena/VASP double-deficient mice, β-actin networks were disrupted and the integrity of Z- and intercalated discs was markedly impaired. CONCLUSIONS: Together, our data suggest that Mena, VASP, and αII-Spectrin assemble cardiac multi-protein complexes, which regulate cytoplasmic actin networks. Conversely, Mena/VASP deficiency results in disrupted β-actin assembly, Z- and intercalated disc malformation, and induces dilated cardiomyopathy and conduction abnormalities. BioMed Central 2013-08-12 /pmc/articles/PMC3751641/ /pubmed/23937664 http://dx.doi.org/10.1186/1478-811X-11-56 Text en Copyright © 2013 Benz et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Benz, Peter M
Merkel, Carla J
Offner, Kristin
Abeßer, Marco
Ullrich, Melanie
Fischer, Tobias
Bayer, Barbara
Wagner, Helga
Gambaryan, Stepan
Ursitti, Jeanine A
Adham, Ibrahim M
Linke, Wolfgang A
Feller, Stephan M
Fleming, Ingrid
Renné, Thomas
Frantz, Stefan
Unger, Andreas
Schuh, Kai
Mena/VASP and αII-Spectrin complexes regulate cytoplasmic actin networks in cardiomyocytes and protect from conduction abnormalities and dilated cardiomyopathy
title Mena/VASP and αII-Spectrin complexes regulate cytoplasmic actin networks in cardiomyocytes and protect from conduction abnormalities and dilated cardiomyopathy
title_full Mena/VASP and αII-Spectrin complexes regulate cytoplasmic actin networks in cardiomyocytes and protect from conduction abnormalities and dilated cardiomyopathy
title_fullStr Mena/VASP and αII-Spectrin complexes regulate cytoplasmic actin networks in cardiomyocytes and protect from conduction abnormalities and dilated cardiomyopathy
title_full_unstemmed Mena/VASP and αII-Spectrin complexes regulate cytoplasmic actin networks in cardiomyocytes and protect from conduction abnormalities and dilated cardiomyopathy
title_short Mena/VASP and αII-Spectrin complexes regulate cytoplasmic actin networks in cardiomyocytes and protect from conduction abnormalities and dilated cardiomyopathy
title_sort mena/vasp and αii-spectrin complexes regulate cytoplasmic actin networks in cardiomyocytes and protect from conduction abnormalities and dilated cardiomyopathy
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3751641/
https://www.ncbi.nlm.nih.gov/pubmed/23937664
http://dx.doi.org/10.1186/1478-811X-11-56
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