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

Author:

Dong Ming12,Chen Dishen2ORCID,Zhu Yanxia1,Yang Shu3,Kumar Santosh1,Zhang Rui1,Zhou Yin2,Yang Ziyi1,Zheng Na1,Zhu Ting1,Xiang Jiaqing1,Liu Yun4,Kang Lin35,Liu Jie1

Affiliation:

1. Guangdong Key Laboratory of Genome Stability and Human Disease Prevention, Department of Pathophysiology, Shenzhen University Health Science Center , 1066 Xueyuan Avenue, Nanshan District, Shenzhen 518060 , China

2. Guangzhou Laboratory, Guangzhou , Guangdong Province, 510005 , China

3. Department of Geriatrics, the Second Clinical Medical College, Jinan University (Shenzhen People's Hospital) , Shenzhen , China

4. The Seventh Affiliated Hospital, Sun Yat-sen University , Guangdong , China

5. The Biobank of National Innovation Center for Advanced Medical Devices, Shenzhen People’s Hospital, Southern University of Science and Technology , Shenzhen , China

Abstract

Abstract 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.

Funder

Start-up Foundation of Guangzhou National Laboratory

Medical Research Fund of Guangdong Province

National Natural Science Foundation of China

National Science Foundation of Guangdong Province

Shenzhen Key Laboratory of Metabolism and Cardiovascular Homeostasis

Basic Research Foundation of Shenzhen

Publisher

Oxford University Press (OUP)

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine,Physiology

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