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Glycogen Synthase Kinase-3β Is a Negative Regulator of Cardiomyocyte Hypertrophy
Hypertrophy is a basic cellular response to a variety of stressors and growth factors, and has been best characterized in myocytes. Pathologic hypertrophy of cardiac myocytes leads to heart failure, a major cause of death and disability in the developed world. Several cytosolic signaling pathways ha...
Autores principales: | , , , , , , , , , , , |
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Formato: | Texto |
Lenguaje: | English |
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The Rockefeller University Press
2000
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2189812/ https://www.ncbi.nlm.nih.gov/pubmed/11018058 |
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author | Haq, Syed Choukroun, Gabriel Kang, Zhao Bin Ranu, Hardeep Matsui, Takashi Rosenzweig, Anthony Molkentin, Jeffrey D. Alessandrini, Alessandro Woodgett, James Hajjar, Roger Michael, Ashour Force, Thomas |
author_facet | Haq, Syed Choukroun, Gabriel Kang, Zhao Bin Ranu, Hardeep Matsui, Takashi Rosenzweig, Anthony Molkentin, Jeffrey D. Alessandrini, Alessandro Woodgett, James Hajjar, Roger Michael, Ashour Force, Thomas |
author_sort | Haq, Syed |
collection | PubMed |
description | Hypertrophy is a basic cellular response to a variety of stressors and growth factors, and has been best characterized in myocytes. Pathologic hypertrophy of cardiac myocytes leads to heart failure, a major cause of death and disability in the developed world. Several cytosolic signaling pathways have been identified that transduce prohypertrophic signals, but to date, little work has focused on signaling pathways that might negatively regulate hypertrophy. Herein, we report that glycogen synthase kinase-3β (GSK-3β), a protein kinase previously implicated in processes as diverse as development and tumorigenesis, is inactivated by hypertrophic stimuli via a phosphoinositide 3-kinase–dependent protein kinase that phosphorylates GSK-3β on ser 9. Using adenovirus-mediated gene transfer of GSK-3β containing a ser 9 to alanine mutation, which prevents inactivation by hypertrophic stimuli, we demonstrate that inactivation of GSK-3β is required for cardiomyocytes to undergo hypertrophy. Furthermore, our data suggest that GSK-3β regulates the hypertrophic response, at least in part, by modulating the nuclear/cytoplasmic partitioning of a member of the nuclear factor of activated T cells family of transcription factors. The identification of GSK-3β as a transducer of antihypertrophic signals suggests that novel therapeutic strategies to treat hypertrophic diseases of the heart could be designed that target components of the GSK-3 pathway. |
format | Text |
id | pubmed-2189812 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2000 |
publisher | The Rockefeller University Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-21898122008-05-01 Glycogen Synthase Kinase-3β Is a Negative Regulator of Cardiomyocyte Hypertrophy Haq, Syed Choukroun, Gabriel Kang, Zhao Bin Ranu, Hardeep Matsui, Takashi Rosenzweig, Anthony Molkentin, Jeffrey D. Alessandrini, Alessandro Woodgett, James Hajjar, Roger Michael, Ashour Force, Thomas J Cell Biol Original Article Hypertrophy is a basic cellular response to a variety of stressors and growth factors, and has been best characterized in myocytes. Pathologic hypertrophy of cardiac myocytes leads to heart failure, a major cause of death and disability in the developed world. Several cytosolic signaling pathways have been identified that transduce prohypertrophic signals, but to date, little work has focused on signaling pathways that might negatively regulate hypertrophy. Herein, we report that glycogen synthase kinase-3β (GSK-3β), a protein kinase previously implicated in processes as diverse as development and tumorigenesis, is inactivated by hypertrophic stimuli via a phosphoinositide 3-kinase–dependent protein kinase that phosphorylates GSK-3β on ser 9. Using adenovirus-mediated gene transfer of GSK-3β containing a ser 9 to alanine mutation, which prevents inactivation by hypertrophic stimuli, we demonstrate that inactivation of GSK-3β is required for cardiomyocytes to undergo hypertrophy. Furthermore, our data suggest that GSK-3β regulates the hypertrophic response, at least in part, by modulating the nuclear/cytoplasmic partitioning of a member of the nuclear factor of activated T cells family of transcription factors. The identification of GSK-3β as a transducer of antihypertrophic signals suggests that novel therapeutic strategies to treat hypertrophic diseases of the heart could be designed that target components of the GSK-3 pathway. The Rockefeller University Press 2000-10-02 /pmc/articles/PMC2189812/ /pubmed/11018058 Text en © 2000 The Rockefeller University Press This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/4.0/). |
spellingShingle | Original Article Haq, Syed Choukroun, Gabriel Kang, Zhao Bin Ranu, Hardeep Matsui, Takashi Rosenzweig, Anthony Molkentin, Jeffrey D. Alessandrini, Alessandro Woodgett, James Hajjar, Roger Michael, Ashour Force, Thomas Glycogen Synthase Kinase-3β Is a Negative Regulator of Cardiomyocyte Hypertrophy |
title | Glycogen Synthase Kinase-3β Is a Negative Regulator of Cardiomyocyte Hypertrophy |
title_full | Glycogen Synthase Kinase-3β Is a Negative Regulator of Cardiomyocyte Hypertrophy |
title_fullStr | Glycogen Synthase Kinase-3β Is a Negative Regulator of Cardiomyocyte Hypertrophy |
title_full_unstemmed | Glycogen Synthase Kinase-3β Is a Negative Regulator of Cardiomyocyte Hypertrophy |
title_short | Glycogen Synthase Kinase-3β Is a Negative Regulator of Cardiomyocyte Hypertrophy |
title_sort | glycogen synthase kinase-3β is a negative regulator of cardiomyocyte hypertrophy |
topic | Original Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2189812/ https://www.ncbi.nlm.nih.gov/pubmed/11018058 |
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