Exercise-induced circular RNA circUtrn is required for cardiac physiological hypertrophy and prevents myocardial ischaemia–reperfusion injury

Author:

Wang Lijun12,Feng Jingyi12,Feng Xing12,Meng Danni12,Zhao Xuan12,Wang Jiaqi12,Yu Pujiao3,Xu Gui-e12,Hu Meiyu12,Wang Tianhui12,Lehmann H Immo4,Li Guoping4,Sluijter Joost P G56,Xiao Junjie12ORCID

Affiliation:

1. Institute of Geriatrics, Affiliated Nantong Hospital of Shanghai University (The Sixth People’s Hospital of Nantong), School of Life Science, Shanghai University , 881 Yonghe Road, Chongchuan District, Nantong 226011 , China

2. Cardiac Regeneration and Ageing Lab, Institute of Cardiovascular Sciences, Shanghai Engineering Research Center of Organ Repair, School of Medicine, Shanghai University , 333 Nanchen Road, Baoshan District, Shanghai 200444 , China

3. Department of Cardiology, Shanghai Tongji hospital, Tongji University School of Medicine , 389 Xincun Road, Putuo District, Shanghai 200065 , China

4. Cardiovascular Division, Massachusetts General Hospital, Harvard Medical School , Boston, MA 02114 , USA

5. Department of Cardiology, Laboratory of Experimental Cardiology, University Medical Center Utrecht , Utrecht 3508GA , The Netherlands

6. Regenerative Medicine Center, Circulatory Health Laboratory, University Medical Center Utrecht, University Utrecht , Utrecht 3508GA , The Netherlands

Abstract

Abstract Aims Regular exercise training benefits cardiovascular health and effectively reduces the risk for cardiovascular disease. Circular RNAs (circRNAs) play important roles in cardiac pathophysiology. However, the role of circRNAs in response to exercise training and biological mechanisms responsible for exercise-induced cardiac protection remain largely unknown. Methods and results RNA sequencing was used to profile circRNA expression in adult mouse cardiomyocytes that were isolated from mice with or without exercise training. Exercise-induced circRNA circUtrn was significantly increased in swimming-trained adult mouse cardiomyocytes. In vivo, circUtrn was found to be required for exercise-induced physiological cardiac hypertrophy. circUtrn inhibition abolished the protective effects of exercise on myocardial ischaemia–reperfusion remodelling. circUtrn overexpression prevented myocardial ischaemia–reperfusion-induced acute injury and pathological cardiac remodelling. In vitro, overexpression of circUtrn promoted H9 human embryonic stem cell–induced cardiomyocyte growth and survival via protein phosphatase 5 (PP5). Mechanistically, circUtrn directly bound to PP5 and regulated the stability of PP5 in a ubiquitin–proteasome-dependent manner. Hypoxia-inducible factor 1α–dependent splicing factor SF3B1 acted as an upstream regulator of circUtrn in cardiomyocytes. Conclusion The circRNA circUtrn is upregulated upon exercise training in the heart. Overexpression of circUtrn can prevent myocardial I/R-induced injury and pathological cardiac remodelling.

Funder

National Key Research and Development Project

National Natural Science Foundation of China

Science and Technology Commission of Shanghai Municipality

Natural Science Foundation of Shanghai

Publisher

Oxford University Press (OUP)

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine,Physiology

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