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lncRNA MIRF Promotes Cardiac Apoptosis through the miR-26a-Bak1 Axis

Acute myocardial infarction (AMI) is the leading cause of death worldwide. Identifying the pathways that block cardiac cell death is a therapeutic strategy for ischemic heart disease. We found that long noncoding RNA (lncRNA) myocardial infarction-regulatory factor (MIRF) promoted ischemic myocardia...

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Autores principales: Su, Xiaomin, Lv, Lifang, Li, Yue, Fang, Ruonan, Yang, Rui, Li, Chao, Li, Tianyu, Zhu, Di, Li, Xuelian, Zhou, Yuhong, Shan, Hongli, Liang, Haihai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Gene & Cell Therapy 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7256443/
https://www.ncbi.nlm.nih.gov/pubmed/32464547
http://dx.doi.org/10.1016/j.omtn.2020.05.002
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author Su, Xiaomin
Lv, Lifang
Li, Yue
Fang, Ruonan
Yang, Rui
Li, Chao
Li, Tianyu
Zhu, Di
Li, Xuelian
Zhou, Yuhong
Shan, Hongli
Liang, Haihai
author_facet Su, Xiaomin
Lv, Lifang
Li, Yue
Fang, Ruonan
Yang, Rui
Li, Chao
Li, Tianyu
Zhu, Di
Li, Xuelian
Zhou, Yuhong
Shan, Hongli
Liang, Haihai
author_sort Su, Xiaomin
collection PubMed
description Acute myocardial infarction (AMI) is the leading cause of death worldwide. Identifying the pathways that block cardiac cell death is a therapeutic strategy for ischemic heart disease. We found that long noncoding RNA (lncRNA) myocardial infarction-regulatory factor (MIRF) promoted ischemic myocardial injury by regulating autophagy through targeting miR-26a. However, the role of MIRF-miR-26a in apoptosis during AMI has not been delineated. In this study, we found the downregulation of miR-26a both in the heart of myocardial infarction (MI) mice and in H(2)O(2)-treated cardiomyocytes. miR-26a silencing resulted in apoptosis, whereas overexpression of miR-26a attenuated H(2)O(2)-induced apoptosis through promoting mitochondrial ATP content and increasing mitochondrial membrane potential (MMP). Moreover, forced expression of miR-26a protected against MI-induced cardiac injury and attenuated cardiac apoptosis. Further studies showed that miR-26a inhibited apoptosis through regulation of Bak1. Furthermore, MIRF decreased ATP content and MMP through regulating miR-26a, which then promoted the cardiomyocyte apoptosis. In contrast, deficiency of MIRF promoted mitochondrial ATP content and increased MMP, and then inhibited MI or H(2)O(2)-induced cardiac apoptosis, which was abolished by miR-26a inhibitor. Taken together, these results suggested that MIRF contributed to cardiomyocyte apoptosis through modulating Bak1 by regulation of miR-26a, which can be a potential therapeutic target for the treatment of ischemic heart disease.
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spelling pubmed-72564432020-06-01 lncRNA MIRF Promotes Cardiac Apoptosis through the miR-26a-Bak1 Axis Su, Xiaomin Lv, Lifang Li, Yue Fang, Ruonan Yang, Rui Li, Chao Li, Tianyu Zhu, Di Li, Xuelian Zhou, Yuhong Shan, Hongli Liang, Haihai Mol Ther Nucleic Acids Article Acute myocardial infarction (AMI) is the leading cause of death worldwide. Identifying the pathways that block cardiac cell death is a therapeutic strategy for ischemic heart disease. We found that long noncoding RNA (lncRNA) myocardial infarction-regulatory factor (MIRF) promoted ischemic myocardial injury by regulating autophagy through targeting miR-26a. However, the role of MIRF-miR-26a in apoptosis during AMI has not been delineated. In this study, we found the downregulation of miR-26a both in the heart of myocardial infarction (MI) mice and in H(2)O(2)-treated cardiomyocytes. miR-26a silencing resulted in apoptosis, whereas overexpression of miR-26a attenuated H(2)O(2)-induced apoptosis through promoting mitochondrial ATP content and increasing mitochondrial membrane potential (MMP). Moreover, forced expression of miR-26a protected against MI-induced cardiac injury and attenuated cardiac apoptosis. Further studies showed that miR-26a inhibited apoptosis through regulation of Bak1. Furthermore, MIRF decreased ATP content and MMP through regulating miR-26a, which then promoted the cardiomyocyte apoptosis. In contrast, deficiency of MIRF promoted mitochondrial ATP content and increased MMP, and then inhibited MI or H(2)O(2)-induced cardiac apoptosis, which was abolished by miR-26a inhibitor. Taken together, these results suggested that MIRF contributed to cardiomyocyte apoptosis through modulating Bak1 by regulation of miR-26a, which can be a potential therapeutic target for the treatment of ischemic heart disease. American Society of Gene & Cell Therapy 2020-05-08 /pmc/articles/PMC7256443/ /pubmed/32464547 http://dx.doi.org/10.1016/j.omtn.2020.05.002 Text en © 2020 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Su, Xiaomin
Lv, Lifang
Li, Yue
Fang, Ruonan
Yang, Rui
Li, Chao
Li, Tianyu
Zhu, Di
Li, Xuelian
Zhou, Yuhong
Shan, Hongli
Liang, Haihai
lncRNA MIRF Promotes Cardiac Apoptosis through the miR-26a-Bak1 Axis
title lncRNA MIRF Promotes Cardiac Apoptosis through the miR-26a-Bak1 Axis
title_full lncRNA MIRF Promotes Cardiac Apoptosis through the miR-26a-Bak1 Axis
title_fullStr lncRNA MIRF Promotes Cardiac Apoptosis through the miR-26a-Bak1 Axis
title_full_unstemmed lncRNA MIRF Promotes Cardiac Apoptosis through the miR-26a-Bak1 Axis
title_short lncRNA MIRF Promotes Cardiac Apoptosis through the miR-26a-Bak1 Axis
title_sort lncrna mirf promotes cardiac apoptosis through the mir-26a-bak1 axis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7256443/
https://www.ncbi.nlm.nih.gov/pubmed/32464547
http://dx.doi.org/10.1016/j.omtn.2020.05.002
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