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MicroRNA-181c targets Bcl-2 and regulates mitochondrial morphology in myocardial cells

Apoptosis is an important mechanism for the development of heart failure. Mitochondria are central to the execution of apoptosis in the intrinsic pathway. The main regulator of mitochondrial pathway of apoptosis is Bcl-2 family which includes pro- and anti-apoptotic proteins. MicroRNAs are small non...

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Autores principales: Wang, Hongjiang, Li, Jing, Chi, Hongjie, Zhang, Fan, Zhu, Xiaoming, Cai, Jun, Yang, Xinchun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Ltd 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4568913/
https://www.ncbi.nlm.nih.gov/pubmed/25898913
http://dx.doi.org/10.1111/jcmm.12563
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author Wang, Hongjiang
Li, Jing
Chi, Hongjie
Zhang, Fan
Zhu, Xiaoming
Cai, Jun
Yang, Xinchun
author_facet Wang, Hongjiang
Li, Jing
Chi, Hongjie
Zhang, Fan
Zhu, Xiaoming
Cai, Jun
Yang, Xinchun
author_sort Wang, Hongjiang
collection PubMed
description Apoptosis is an important mechanism for the development of heart failure. Mitochondria are central to the execution of apoptosis in the intrinsic pathway. The main regulator of mitochondrial pathway of apoptosis is Bcl-2 family which includes pro- and anti-apoptotic proteins. MicroRNAs are small noncoding RNA molecules that regulate gene expression by inhibiting mRNA translation and/or inducing mRNA degradation. It has been proposed that microRNAs play critical roles in the cardiovascular physiology and pathogenesis of cardiovascular diseases. Our previous study has found that microRNA-181c, a miRNA expressed in the myocardial cells, plays an important role in the development of heart failure. With bioinformatics analysis, we predicted that miR-181c could target the 3′ untranslated region of Bcl-2, one of the anti-apoptotic members of the Bcl-2 family. Thus, we have suggested that miR-181c was involved in regulation of Bcl-2. In this study, we investigated this hypothesis using the Dual-Luciferase Reporter Assay System. Cultured myocardial cells were transfected with the mimic or inhibitor of miR-181c. We found that the level of miR-181c was inversely correlated with the Bcl-2 protein level and that transfection of myocardial cells with the mimic or inhibitor of miR-181c resulted in significant changes in the levels of caspases, Bcl-2 and cytochrome C in these cells. The increased level of Bcl-2 caused by the decrease in miR-181c protected mitochondrial morphology from the tumour necrosis factor alpha-induced apoptosis.
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spelling pubmed-45689132015-09-17 MicroRNA-181c targets Bcl-2 and regulates mitochondrial morphology in myocardial cells Wang, Hongjiang Li, Jing Chi, Hongjie Zhang, Fan Zhu, Xiaoming Cai, Jun Yang, Xinchun J Cell Mol Med Original Articles Apoptosis is an important mechanism for the development of heart failure. Mitochondria are central to the execution of apoptosis in the intrinsic pathway. The main regulator of mitochondrial pathway of apoptosis is Bcl-2 family which includes pro- and anti-apoptotic proteins. MicroRNAs are small noncoding RNA molecules that regulate gene expression by inhibiting mRNA translation and/or inducing mRNA degradation. It has been proposed that microRNAs play critical roles in the cardiovascular physiology and pathogenesis of cardiovascular diseases. Our previous study has found that microRNA-181c, a miRNA expressed in the myocardial cells, plays an important role in the development of heart failure. With bioinformatics analysis, we predicted that miR-181c could target the 3′ untranslated region of Bcl-2, one of the anti-apoptotic members of the Bcl-2 family. Thus, we have suggested that miR-181c was involved in regulation of Bcl-2. In this study, we investigated this hypothesis using the Dual-Luciferase Reporter Assay System. Cultured myocardial cells were transfected with the mimic or inhibitor of miR-181c. We found that the level of miR-181c was inversely correlated with the Bcl-2 protein level and that transfection of myocardial cells with the mimic or inhibitor of miR-181c resulted in significant changes in the levels of caspases, Bcl-2 and cytochrome C in these cells. The increased level of Bcl-2 caused by the decrease in miR-181c protected mitochondrial morphology from the tumour necrosis factor alpha-induced apoptosis. John Wiley & Sons, Ltd 2015-09 2015-04-20 /pmc/articles/PMC4568913/ /pubmed/25898913 http://dx.doi.org/10.1111/jcmm.12563 Text en © 2015 The Authors. Journal of Cellular and Molecular Medicine published by John Wiley & Sons Ltd and Foundation for Cellular and Molecular Medicine. http://creativecommons.org/licenses/by/4.0/ This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Wang, Hongjiang
Li, Jing
Chi, Hongjie
Zhang, Fan
Zhu, Xiaoming
Cai, Jun
Yang, Xinchun
MicroRNA-181c targets Bcl-2 and regulates mitochondrial morphology in myocardial cells
title MicroRNA-181c targets Bcl-2 and regulates mitochondrial morphology in myocardial cells
title_full MicroRNA-181c targets Bcl-2 and regulates mitochondrial morphology in myocardial cells
title_fullStr MicroRNA-181c targets Bcl-2 and regulates mitochondrial morphology in myocardial cells
title_full_unstemmed MicroRNA-181c targets Bcl-2 and regulates mitochondrial morphology in myocardial cells
title_short MicroRNA-181c targets Bcl-2 and regulates mitochondrial morphology in myocardial cells
title_sort microrna-181c targets bcl-2 and regulates mitochondrial morphology in myocardial cells
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4568913/
https://www.ncbi.nlm.nih.gov/pubmed/25898913
http://dx.doi.org/10.1111/jcmm.12563
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