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Heart-specific Deletion of CnB1 Reveals Multiple Mechanisms Whereby Calcineurin Regulates Cardiac Growth and Function

Calcineurin is a protein phosphatase that is uniquely regulated by sustained increases in intracellular Ca(2+) following signal transduction events. Calcineurin controls cellular proliferation, differentiation, apoptosis, and inducible gene expression following stress and neuroendocrine stimulation....

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Autores principales: Maillet, Marjorie, Davis, Jennifer, Auger-Messier, Mannix, York, Allen, Osinska, Hanna, Piquereau, Jérôme, Lorenz, John N., Robbins, Jeffrey, Ventura-Clapier, Renée, Molkentin, Jeffery D.
Formato: Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2825466/
https://www.ncbi.nlm.nih.gov/pubmed/20037164
http://dx.doi.org/10.1074/jbc.M109.056143
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author Maillet, Marjorie
Davis, Jennifer
Auger-Messier, Mannix
York, Allen
Osinska, Hanna
Piquereau, Jérôme
Lorenz, John N.
Robbins, Jeffrey
Ventura-Clapier, Renée
Molkentin, Jeffery D.
author_facet Maillet, Marjorie
Davis, Jennifer
Auger-Messier, Mannix
York, Allen
Osinska, Hanna
Piquereau, Jérôme
Lorenz, John N.
Robbins, Jeffrey
Ventura-Clapier, Renée
Molkentin, Jeffery D.
author_sort Maillet, Marjorie
collection PubMed
description Calcineurin is a protein phosphatase that is uniquely regulated by sustained increases in intracellular Ca(2+) following signal transduction events. Calcineurin controls cellular proliferation, differentiation, apoptosis, and inducible gene expression following stress and neuroendocrine stimulation. In the adult heart, calcineurin regulates hypertrophic growth of cardiomyocytes in response to pathologic insults that are associated with altered Ca(2+) handling. Here we determined that calcineurin signaling is directly linked to the proper control of cardiac contractility, rhythm, and the expression of Ca(2+)-handling genes in the heart. Our approach involved a cardiomyocyte-specific deletion using a CnB1-LoxP-targeted allele in mice and three different cardiac-expressing Cre alleles/transgenes. Deletion of calcineurin with the Nkx2.5-Cre knock-in allele resulted in lethality at 1 day after birth due to altered right ventricular morphogenesis, reduced ventricular trabeculation, septal defects, and valvular overgrowth. Slightly later deletion of calcineurin with the α-myosin heavy chain Cre transgene resulted in lethality in early mid adulthood that was characterized by substantial reductions in cardiac contractility, severe arrhythmia, and reduced myocyte content in the heart. Young calcineurin heart-deleted mice died suddenly after pressure overload stimulation or neuroendocrine agonist infusion, and telemetric monitoring of older mice showed arrhythmia leading to sudden death. Mechanistically, loss of calcineurin reduced expression of key Ca(2+)-handling genes that likely lead to arrhythmia and reduced contractility. Loss of calcineurin also directly impacted cellular proliferation in the postnatal developing heart. These results reveal multiple mechanisms whereby calcineurin regulates cardiac development and myocyte contractility.
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spelling pubmed-28254662010-02-25 Heart-specific Deletion of CnB1 Reveals Multiple Mechanisms Whereby Calcineurin Regulates Cardiac Growth and Function Maillet, Marjorie Davis, Jennifer Auger-Messier, Mannix York, Allen Osinska, Hanna Piquereau, Jérôme Lorenz, John N. Robbins, Jeffrey Ventura-Clapier, Renée Molkentin, Jeffery D. J Biol Chem Cell Biology Calcineurin is a protein phosphatase that is uniquely regulated by sustained increases in intracellular Ca(2+) following signal transduction events. Calcineurin controls cellular proliferation, differentiation, apoptosis, and inducible gene expression following stress and neuroendocrine stimulation. In the adult heart, calcineurin regulates hypertrophic growth of cardiomyocytes in response to pathologic insults that are associated with altered Ca(2+) handling. Here we determined that calcineurin signaling is directly linked to the proper control of cardiac contractility, rhythm, and the expression of Ca(2+)-handling genes in the heart. Our approach involved a cardiomyocyte-specific deletion using a CnB1-LoxP-targeted allele in mice and three different cardiac-expressing Cre alleles/transgenes. Deletion of calcineurin with the Nkx2.5-Cre knock-in allele resulted in lethality at 1 day after birth due to altered right ventricular morphogenesis, reduced ventricular trabeculation, septal defects, and valvular overgrowth. Slightly later deletion of calcineurin with the α-myosin heavy chain Cre transgene resulted in lethality in early mid adulthood that was characterized by substantial reductions in cardiac contractility, severe arrhythmia, and reduced myocyte content in the heart. Young calcineurin heart-deleted mice died suddenly after pressure overload stimulation or neuroendocrine agonist infusion, and telemetric monitoring of older mice showed arrhythmia leading to sudden death. Mechanistically, loss of calcineurin reduced expression of key Ca(2+)-handling genes that likely lead to arrhythmia and reduced contractility. Loss of calcineurin also directly impacted cellular proliferation in the postnatal developing heart. These results reveal multiple mechanisms whereby calcineurin regulates cardiac development and myocyte contractility. American Society for Biochemistry and Molecular Biology 2010-02-26 2009-12-27 /pmc/articles/PMC2825466/ /pubmed/20037164 http://dx.doi.org/10.1074/jbc.M109.056143 Text en © 2010 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version full access. Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) applies to Author Choice Articles
spellingShingle Cell Biology
Maillet, Marjorie
Davis, Jennifer
Auger-Messier, Mannix
York, Allen
Osinska, Hanna
Piquereau, Jérôme
Lorenz, John N.
Robbins, Jeffrey
Ventura-Clapier, Renée
Molkentin, Jeffery D.
Heart-specific Deletion of CnB1 Reveals Multiple Mechanisms Whereby Calcineurin Regulates Cardiac Growth and Function
title Heart-specific Deletion of CnB1 Reveals Multiple Mechanisms Whereby Calcineurin Regulates Cardiac Growth and Function
title_full Heart-specific Deletion of CnB1 Reveals Multiple Mechanisms Whereby Calcineurin Regulates Cardiac Growth and Function
title_fullStr Heart-specific Deletion of CnB1 Reveals Multiple Mechanisms Whereby Calcineurin Regulates Cardiac Growth and Function
title_full_unstemmed Heart-specific Deletion of CnB1 Reveals Multiple Mechanisms Whereby Calcineurin Regulates Cardiac Growth and Function
title_short Heart-specific Deletion of CnB1 Reveals Multiple Mechanisms Whereby Calcineurin Regulates Cardiac Growth and Function
title_sort heart-specific deletion of cnb1 reveals multiple mechanisms whereby calcineurin regulates cardiac growth and function
topic Cell Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2825466/
https://www.ncbi.nlm.nih.gov/pubmed/20037164
http://dx.doi.org/10.1074/jbc.M109.056143
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