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Autophagy Plays an Essential Role in Mediating Regression of Hypertrophy during Unloading of the Heart

Autophagy is a bulk degradation mechanism for cytosolic proteins and organelles. The heart undergoes hypertrophy in response to mechanical load but hypertrophy can regress upon unloading. We hypothesize that autophagy plays an important role in mediating regression of cardiac hypertrophy during unlo...

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Autores principales: Hariharan, Nirmala, Ikeda, Yoshiyuki, Hong, Chull, Alcendor, Ralph R., Usui, Soichiro, Gao, Shumin, Maejima, Yasuhiro, Sadoshima, Junichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3538681/
https://www.ncbi.nlm.nih.gov/pubmed/23308102
http://dx.doi.org/10.1371/journal.pone.0051632
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author Hariharan, Nirmala
Ikeda, Yoshiyuki
Hong, Chull
Alcendor, Ralph R.
Usui, Soichiro
Gao, Shumin
Maejima, Yasuhiro
Sadoshima, Junichi
author_facet Hariharan, Nirmala
Ikeda, Yoshiyuki
Hong, Chull
Alcendor, Ralph R.
Usui, Soichiro
Gao, Shumin
Maejima, Yasuhiro
Sadoshima, Junichi
author_sort Hariharan, Nirmala
collection PubMed
description Autophagy is a bulk degradation mechanism for cytosolic proteins and organelles. The heart undergoes hypertrophy in response to mechanical load but hypertrophy can regress upon unloading. We hypothesize that autophagy plays an important role in mediating regression of cardiac hypertrophy during unloading. Mice were subjected to transverse aortic constriction (TAC) for 1 week, after which the constriction was removed (DeTAC). Regression of cardiac hypertrophy was observed after DeTAC, as indicated by reduction of LVW/BW and cardiomyocyte cross-sectional area. Indicators of autophagy, including LC3-II expression, p62 degradation and GFP-LC3 dots/cell, were significantly increased after DeTAC, suggesting that autophagy is induced. Stimulation of autophagy during DeTAC was accompanied by upregulation of FoxO1. Upregulation of FoxO1 and autophagy was also observed in vitro when cultured cardiomyocytes were subjected to mechanical stretch followed by incubation without stretch (de-stretch). Transgenic mice with cardiac-specific overexpression of FoxO1 exhibited smaller hearts and upregulation of autophagy. Overexpression of FoxO1 in cultured cardiomyocytes significantly reduced cell size, an effect which was attenuated when autophagy was inhibited. To further examine the role of autophagy and FoxO1 in mediating the regression of cardiac hypertrophy, beclin1+/− mice and cultured cardiomyocytes transduced with adenoviruses harboring shRNA-beclin1 or shRNA-FoxO1 were subjected to TAC/stretch followed by DeTAC/de-stretch. Regression of cardiac hypertrophy achieved after DeTAC/de-stretch was significantly attenuated when autophagy was suppressed through downregulation of beclin1 or FoxO1. These results suggest that autophagy and FoxO1 play an essential role in mediating regression of cardiac hypertrophy during mechanical unloading.
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spelling pubmed-35386812013-01-10 Autophagy Plays an Essential Role in Mediating Regression of Hypertrophy during Unloading of the Heart Hariharan, Nirmala Ikeda, Yoshiyuki Hong, Chull Alcendor, Ralph R. Usui, Soichiro Gao, Shumin Maejima, Yasuhiro Sadoshima, Junichi PLoS One Research Article Autophagy is a bulk degradation mechanism for cytosolic proteins and organelles. The heart undergoes hypertrophy in response to mechanical load but hypertrophy can regress upon unloading. We hypothesize that autophagy plays an important role in mediating regression of cardiac hypertrophy during unloading. Mice were subjected to transverse aortic constriction (TAC) for 1 week, after which the constriction was removed (DeTAC). Regression of cardiac hypertrophy was observed after DeTAC, as indicated by reduction of LVW/BW and cardiomyocyte cross-sectional area. Indicators of autophagy, including LC3-II expression, p62 degradation and GFP-LC3 dots/cell, were significantly increased after DeTAC, suggesting that autophagy is induced. Stimulation of autophagy during DeTAC was accompanied by upregulation of FoxO1. Upregulation of FoxO1 and autophagy was also observed in vitro when cultured cardiomyocytes were subjected to mechanical stretch followed by incubation without stretch (de-stretch). Transgenic mice with cardiac-specific overexpression of FoxO1 exhibited smaller hearts and upregulation of autophagy. Overexpression of FoxO1 in cultured cardiomyocytes significantly reduced cell size, an effect which was attenuated when autophagy was inhibited. To further examine the role of autophagy and FoxO1 in mediating the regression of cardiac hypertrophy, beclin1+/− mice and cultured cardiomyocytes transduced with adenoviruses harboring shRNA-beclin1 or shRNA-FoxO1 were subjected to TAC/stretch followed by DeTAC/de-stretch. Regression of cardiac hypertrophy achieved after DeTAC/de-stretch was significantly attenuated when autophagy was suppressed through downregulation of beclin1 or FoxO1. These results suggest that autophagy and FoxO1 play an essential role in mediating regression of cardiac hypertrophy during mechanical unloading. Public Library of Science 2013-01-07 /pmc/articles/PMC3538681/ /pubmed/23308102 http://dx.doi.org/10.1371/journal.pone.0051632 Text en © 2013 Hariharan et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Hariharan, Nirmala
Ikeda, Yoshiyuki
Hong, Chull
Alcendor, Ralph R.
Usui, Soichiro
Gao, Shumin
Maejima, Yasuhiro
Sadoshima, Junichi
Autophagy Plays an Essential Role in Mediating Regression of Hypertrophy during Unloading of the Heart
title Autophagy Plays an Essential Role in Mediating Regression of Hypertrophy during Unloading of the Heart
title_full Autophagy Plays an Essential Role in Mediating Regression of Hypertrophy during Unloading of the Heart
title_fullStr Autophagy Plays an Essential Role in Mediating Regression of Hypertrophy during Unloading of the Heart
title_full_unstemmed Autophagy Plays an Essential Role in Mediating Regression of Hypertrophy during Unloading of the Heart
title_short Autophagy Plays an Essential Role in Mediating Regression of Hypertrophy during Unloading of the Heart
title_sort autophagy plays an essential role in mediating regression of hypertrophy during unloading of the heart
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3538681/
https://www.ncbi.nlm.nih.gov/pubmed/23308102
http://dx.doi.org/10.1371/journal.pone.0051632
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