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miR-182 Modulates Myocardial Hypertrophic Response Induced by Angiogenesis in Heart

Myocardial hypertrophy is an adaptive response to hemodynamic demands. Although angiogenesis is critical to support the increase in heart mass with matching blood supply, it may also promote a hypertrophic response. Previously, we showed that cardiac angiogenesis induced by placental growth factor (...

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Autores principales: Li, Na, Hwangbo, Cheol, Jaba, Irina M., Zhang, Jiasheng, Papangeli, Irinna, Han, Jinah, Mikush, Nicole, Larrivée, Bruno, Eichmann, Anne, Chun, Hyung J., Young, Lawrence H., Tirziu, Daniela
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4758045/
https://www.ncbi.nlm.nih.gov/pubmed/26888314
http://dx.doi.org/10.1038/srep21228
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author Li, Na
Hwangbo, Cheol
Jaba, Irina M.
Zhang, Jiasheng
Papangeli, Irinna
Han, Jinah
Mikush, Nicole
Larrivée, Bruno
Eichmann, Anne
Chun, Hyung J.
Young, Lawrence H.
Tirziu, Daniela
author_facet Li, Na
Hwangbo, Cheol
Jaba, Irina M.
Zhang, Jiasheng
Papangeli, Irinna
Han, Jinah
Mikush, Nicole
Larrivée, Bruno
Eichmann, Anne
Chun, Hyung J.
Young, Lawrence H.
Tirziu, Daniela
author_sort Li, Na
collection PubMed
description Myocardial hypertrophy is an adaptive response to hemodynamic demands. Although angiogenesis is critical to support the increase in heart mass with matching blood supply, it may also promote a hypertrophic response. Previously, we showed that cardiac angiogenesis induced by placental growth factor (PlGF), promotes myocardial hypertrophy through the paracrine action of endothelium-derived NO, which triggers the degradation of regulator of G protein signaling 4 (RGS4) to activate the Akt/mTORC1 pathways in cardiomyocytes. Here, we investigated whether miRNAs contribute to the development of hypertrophic response associated with myocardial angiogenesis. We show that miR-182 is upregulated concurrently with the development of hypertrophy in PlGF mice, but not when hypertrophy was blocked by concomitant expression of PlGF and RGS4, or by PlGF expression in eNOS(−/−) mice. Anti-miR-182 treatment inhibits the hypertrophic response and prevents the Akt/mTORC1 activation in PlGF mice and NO-treated cardiomyocytes. miR-182 reduces the expression of Bcat2, Foxo3 and Adcy6 to regulate the hypertrophic response in PlGF mice. Particularly, depletion of Bcat2, identified as a new miR-182 target, promotes Akt(Ser473)/p70-S6K(Thr389) phosphorylation and cardiomyocyte hypertrophy. LV pressure overload did not upregulate miR-182. Thus, miR-182 is a novel target of endothelial-cardiomyocyte crosstalk and plays an important role in the angiogenesis induced-hypertrophic response.
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spelling pubmed-47580452016-02-26 miR-182 Modulates Myocardial Hypertrophic Response Induced by Angiogenesis in Heart Li, Na Hwangbo, Cheol Jaba, Irina M. Zhang, Jiasheng Papangeli, Irinna Han, Jinah Mikush, Nicole Larrivée, Bruno Eichmann, Anne Chun, Hyung J. Young, Lawrence H. Tirziu, Daniela Sci Rep Article Myocardial hypertrophy is an adaptive response to hemodynamic demands. Although angiogenesis is critical to support the increase in heart mass with matching blood supply, it may also promote a hypertrophic response. Previously, we showed that cardiac angiogenesis induced by placental growth factor (PlGF), promotes myocardial hypertrophy through the paracrine action of endothelium-derived NO, which triggers the degradation of regulator of G protein signaling 4 (RGS4) to activate the Akt/mTORC1 pathways in cardiomyocytes. Here, we investigated whether miRNAs contribute to the development of hypertrophic response associated with myocardial angiogenesis. We show that miR-182 is upregulated concurrently with the development of hypertrophy in PlGF mice, but not when hypertrophy was blocked by concomitant expression of PlGF and RGS4, or by PlGF expression in eNOS(−/−) mice. Anti-miR-182 treatment inhibits the hypertrophic response and prevents the Akt/mTORC1 activation in PlGF mice and NO-treated cardiomyocytes. miR-182 reduces the expression of Bcat2, Foxo3 and Adcy6 to regulate the hypertrophic response in PlGF mice. Particularly, depletion of Bcat2, identified as a new miR-182 target, promotes Akt(Ser473)/p70-S6K(Thr389) phosphorylation and cardiomyocyte hypertrophy. LV pressure overload did not upregulate miR-182. Thus, miR-182 is a novel target of endothelial-cardiomyocyte crosstalk and plays an important role in the angiogenesis induced-hypertrophic response. Nature Publishing Group 2016-02-18 /pmc/articles/PMC4758045/ /pubmed/26888314 http://dx.doi.org/10.1038/srep21228 Text en Copyright © 2016, Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Li, Na
Hwangbo, Cheol
Jaba, Irina M.
Zhang, Jiasheng
Papangeli, Irinna
Han, Jinah
Mikush, Nicole
Larrivée, Bruno
Eichmann, Anne
Chun, Hyung J.
Young, Lawrence H.
Tirziu, Daniela
miR-182 Modulates Myocardial Hypertrophic Response Induced by Angiogenesis in Heart
title miR-182 Modulates Myocardial Hypertrophic Response Induced by Angiogenesis in Heart
title_full miR-182 Modulates Myocardial Hypertrophic Response Induced by Angiogenesis in Heart
title_fullStr miR-182 Modulates Myocardial Hypertrophic Response Induced by Angiogenesis in Heart
title_full_unstemmed miR-182 Modulates Myocardial Hypertrophic Response Induced by Angiogenesis in Heart
title_short miR-182 Modulates Myocardial Hypertrophic Response Induced by Angiogenesis in Heart
title_sort mir-182 modulates myocardial hypertrophic response induced by angiogenesis in heart
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4758045/
https://www.ncbi.nlm.nih.gov/pubmed/26888314
http://dx.doi.org/10.1038/srep21228
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