Cargando…

Impaired regulation of MMP2/16–MLCK3 by miR-146a-5p increased susceptibility to myocardial ischaemic injury in aging mice

AIMS: Aging impairs cardiac function and increases susceptibility to myocardial ischaemic injury. Cardiac myosin light chain kinase (MLCK3) phosphorylates cardiac myosin regulatory light chain (MLC2), controlling sarcomere organization and cardiomyocyte contraction. Dysregulation of MLCK3 and phosph...

Descripción completa

Detalles Bibliográficos
Autores principales: Dong, Ming, Chen, Dishen, Zhu, Yanxia, Yang, Shu, Kumar, Santosh, Zhang, Rui, Zhou, Yin, Yang, Ziyi, Zheng, Na, Zhu, Ting, Xiang, Jiaqing, Liu, Yun, Kang, Lin, Liu, Jie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10153423/
https://www.ncbi.nlm.nih.gov/pubmed/35727952
http://dx.doi.org/10.1093/cvr/cvac104
_version_ 1785035928062918656
author Dong, Ming
Chen, Dishen
Zhu, Yanxia
Yang, Shu
Kumar, Santosh
Zhang, Rui
Zhou, Yin
Yang, Ziyi
Zheng, Na
Zhu, Ting
Xiang, Jiaqing
Liu, Yun
Kang, Lin
Liu, Jie
author_facet Dong, Ming
Chen, Dishen
Zhu, Yanxia
Yang, Shu
Kumar, Santosh
Zhang, Rui
Zhou, Yin
Yang, Ziyi
Zheng, Na
Zhu, Ting
Xiang, Jiaqing
Liu, Yun
Kang, Lin
Liu, Jie
author_sort Dong, Ming
collection PubMed
description AIMS: Aging impairs cardiac function and increases susceptibility to myocardial ischaemic injury. Cardiac myosin light chain kinase (MLCK3) phosphorylates cardiac myosin regulatory light chain (MLC2), controlling sarcomere organization and cardiomyocyte contraction. Dysregulation of MLCK3 and phosphorylated MLC2 (p-MLC2) contributes to heart failure after myocardial infarction (MI). We aimed at exploring how the MLCK3–p-MLC2 axis changes in aging hearts post MI and at investigating the underlying regulatory mechanisms. METHODS AND RESULTS: We generated adult (3 months) and aged (30 months) MI mouse models to compare their cardiac performance, and then detected MLCK3 expression and MLC2 activity. Aging increased the size of MI-induced infarctions and promoted cardiac contractile dysfunction. Furthermore, MLCK3 expression and MLC2 activity increased in adult hearts after MI, but not in aged hearts. miR-146a was found consistently increased in adult and aged hearts post MI. Mechanistic analyses performed in vitro demonstrated that miR-146a-5p down-regulated matrix metalloprotease (MMP)2/16 expression in cardiomyocytes. This down-regulation in turn increased MLCK3 expression and MLC2 activity. However, miR-146a-5p failed to regulate the MMP2/16–MLCK3–p-MLC2 axis in senescent cardiomyocytes or in cardiac miR-146a conditional knockout mice, with the latter experiencing an exacerbated deterioration of cardiac function post MI. CONCLUSION: These results suggest that an increase of MLCK3 and p-MLC2 contents through decreasing MMP2/16 by miR-146a-5p represents a compensatory mechanism that can protect cardiac contractile function after MI. Aging impairs this miR-146a-5p-regulated MMP2/16–MLCK3–p-MLC2 contractile axis, leading to compromised contractile function and increased susceptibility to heart failure.
format Online
Article
Text
id pubmed-10153423
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-101534232023-05-03 Impaired regulation of MMP2/16–MLCK3 by miR-146a-5p increased susceptibility to myocardial ischaemic injury in aging mice Dong, Ming Chen, Dishen Zhu, Yanxia Yang, Shu Kumar, Santosh Zhang, Rui Zhou, Yin Yang, Ziyi Zheng, Na Zhu, Ting Xiang, Jiaqing Liu, Yun Kang, Lin Liu, Jie Cardiovasc Res Original Article AIMS: Aging impairs cardiac function and increases susceptibility to myocardial ischaemic injury. Cardiac myosin light chain kinase (MLCK3) phosphorylates cardiac myosin regulatory light chain (MLC2), controlling sarcomere organization and cardiomyocyte contraction. Dysregulation of MLCK3 and phosphorylated MLC2 (p-MLC2) contributes to heart failure after myocardial infarction (MI). We aimed at exploring how the MLCK3–p-MLC2 axis changes in aging hearts post MI and at investigating the underlying regulatory mechanisms. METHODS AND RESULTS: We generated adult (3 months) and aged (30 months) MI mouse models to compare their cardiac performance, and then detected MLCK3 expression and MLC2 activity. Aging increased the size of MI-induced infarctions and promoted cardiac contractile dysfunction. Furthermore, MLCK3 expression and MLC2 activity increased in adult hearts after MI, but not in aged hearts. miR-146a was found consistently increased in adult and aged hearts post MI. Mechanistic analyses performed in vitro demonstrated that miR-146a-5p down-regulated matrix metalloprotease (MMP)2/16 expression in cardiomyocytes. This down-regulation in turn increased MLCK3 expression and MLC2 activity. However, miR-146a-5p failed to regulate the MMP2/16–MLCK3–p-MLC2 axis in senescent cardiomyocytes or in cardiac miR-146a conditional knockout mice, with the latter experiencing an exacerbated deterioration of cardiac function post MI. CONCLUSION: These results suggest that an increase of MLCK3 and p-MLC2 contents through decreasing MMP2/16 by miR-146a-5p represents a compensatory mechanism that can protect cardiac contractile function after MI. Aging impairs this miR-146a-5p-regulated MMP2/16–MLCK3–p-MLC2 contractile axis, leading to compromised contractile function and increased susceptibility to heart failure. Oxford University Press 2022-06-21 /pmc/articles/PMC10153423/ /pubmed/35727952 http://dx.doi.org/10.1093/cvr/cvac104 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of the European Society of Cardiology. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (https://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Original Article
Dong, Ming
Chen, Dishen
Zhu, Yanxia
Yang, Shu
Kumar, Santosh
Zhang, Rui
Zhou, Yin
Yang, Ziyi
Zheng, Na
Zhu, Ting
Xiang, Jiaqing
Liu, Yun
Kang, Lin
Liu, Jie
Impaired regulation of MMP2/16–MLCK3 by miR-146a-5p increased susceptibility to myocardial ischaemic injury in aging mice
title Impaired regulation of MMP2/16–MLCK3 by miR-146a-5p increased susceptibility to myocardial ischaemic injury in aging mice
title_full Impaired regulation of MMP2/16–MLCK3 by miR-146a-5p increased susceptibility to myocardial ischaemic injury in aging mice
title_fullStr Impaired regulation of MMP2/16–MLCK3 by miR-146a-5p increased susceptibility to myocardial ischaemic injury in aging mice
title_full_unstemmed Impaired regulation of MMP2/16–MLCK3 by miR-146a-5p increased susceptibility to myocardial ischaemic injury in aging mice
title_short Impaired regulation of MMP2/16–MLCK3 by miR-146a-5p increased susceptibility to myocardial ischaemic injury in aging mice
title_sort impaired regulation of mmp2/16–mlck3 by mir-146a-5p increased susceptibility to myocardial ischaemic injury in aging mice
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10153423/
https://www.ncbi.nlm.nih.gov/pubmed/35727952
http://dx.doi.org/10.1093/cvr/cvac104
work_keys_str_mv AT dongming impairedregulationofmmp216mlck3bymir146a5pincreasedsusceptibilitytomyocardialischaemicinjuryinagingmice
AT chendishen impairedregulationofmmp216mlck3bymir146a5pincreasedsusceptibilitytomyocardialischaemicinjuryinagingmice
AT zhuyanxia impairedregulationofmmp216mlck3bymir146a5pincreasedsusceptibilitytomyocardialischaemicinjuryinagingmice
AT yangshu impairedregulationofmmp216mlck3bymir146a5pincreasedsusceptibilitytomyocardialischaemicinjuryinagingmice
AT kumarsantosh impairedregulationofmmp216mlck3bymir146a5pincreasedsusceptibilitytomyocardialischaemicinjuryinagingmice
AT zhangrui impairedregulationofmmp216mlck3bymir146a5pincreasedsusceptibilitytomyocardialischaemicinjuryinagingmice
AT zhouyin impairedregulationofmmp216mlck3bymir146a5pincreasedsusceptibilitytomyocardialischaemicinjuryinagingmice
AT yangziyi impairedregulationofmmp216mlck3bymir146a5pincreasedsusceptibilitytomyocardialischaemicinjuryinagingmice
AT zhengna impairedregulationofmmp216mlck3bymir146a5pincreasedsusceptibilitytomyocardialischaemicinjuryinagingmice
AT zhuting impairedregulationofmmp216mlck3bymir146a5pincreasedsusceptibilitytomyocardialischaemicinjuryinagingmice
AT xiangjiaqing impairedregulationofmmp216mlck3bymir146a5pincreasedsusceptibilitytomyocardialischaemicinjuryinagingmice
AT liuyun impairedregulationofmmp216mlck3bymir146a5pincreasedsusceptibilitytomyocardialischaemicinjuryinagingmice
AT kanglin impairedregulationofmmp216mlck3bymir146a5pincreasedsusceptibilitytomyocardialischaemicinjuryinagingmice
AT liujie impairedregulationofmmp216mlck3bymir146a5pincreasedsusceptibilitytomyocardialischaemicinjuryinagingmice