Peli1 deletion in macrophages attenuates myocardial ischemia/reperfusion injury by suppressing M1 polarization

Author:

Chen Hao12,Hou Yuxing1,Zhai Yali1,Yang Jie1,Que Linli1,Liu Jichun3,Lu Linming2,Ha Tuanzhu4,Li Chuanfu4,Xu Yong1,Li Jiantao1,Li Yuehua1ORCID

Affiliation:

1. Key Laboratory of Targeted Intervention of Cardiovascular Disease, Collaborative Innovation Center for Cardiovascular Disease Translational Medicine, Nanjing Medical University , 101 Longmian Avenue, Jiangning District, Nanjing 211166, Jiangsu , China

2. Department of Pathology, Wannan Medical College , 22 Wenchang West Road, Wuhu 241002, Anhui , China

3. Department of Cardiology, Affiliated Yijishan Hospital of Wannan Medical College , 2 Zheshan West Road, Wuhu 241001, Anhui , China

4. Department of Surgery, East Tennessee State University , Campus Box 70575, Johnson City, TN 37614-0575 , United States

Abstract

AbstractThe polarization of macrophages to the M1 or M2 phenotype has a pivotal role in inflammatory response following myocardial ischemia/reperfusion injury. Peli1, an E3 ubiquitin ligase, is closely associated with inflammation and autoimmunity as an important regulatory protein in the Toll-like receptor signaling pathway. We aimed to explore the function of Peli1 in macrophage polarization under myocardial ischemia/reperfusion injury and elucidate the possible mechanisms. We show here that Peli1 is upregulated in peripheral blood mononuclear cells from patients with myocardial ischemia/reperfusion, which is correlated with myocardial injury and cardiac dysfunction. We also found that the proportion of M1 macrophages was reduced and myocardial infarct size was decreased, paralleling improvement of cardiac function in mice with Peli1 deletion in hematopoietic cells or macrophages. Macrophage Peli1 deletion lessened M1 polarization and reduced the migratory ability in vitro. Mechanistically, Peli1 contributed to M1 polarization by promoting K63-linked ubiquitination and nuclear translocation of IRF5. Moreover, Peli1 deficiency in macrophages reduced the apoptosis of cardiomyocytes in vivo and in vitro. Together, our study demonstrates that Peli1 deficiency in macrophages suppresses macrophage M1 polarization and alleviates myocardial ischemia/reperfusion injury by inhibiting the nuclear translocation of IRF5, which may serve as a potential intervention target for myocardial ischemia/reperfusion injury.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Jiangsu Province

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Immunology,Immunology and Allergy

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