Coxsackievirus group B3 regulates ASS1-mediated metabolic reprogramming and promotes macrophage inflammatory polarization in viral myocarditis

Author:

Liu Qiong1ORCID,Shang Yinpan1ORCID,Tao Ziwei1,Li Xuan1,Shen Lu1,Zhang Hanchi12,Liu Zhili13,Rao Zhirong13,Yu Xiaomin1ORCID,Cao Yanli1,Zeng Lingbing14,Huang Xiaotian1ORCID

Affiliation:

1. The First Affiliated Hospital of Nanchang University and School of Basic Medical Sciences, Jiangxi Medical College, Nanchang University, Nanchang, China

2. The Second Clinical Medical College, Nanchang University, Nanchang, China

3. HuanKui Academy, Nanchang University, Nanchang, China

4. The First Affiliated Hospital of Nanchang University, School of Public Health, Jiangxi Medical College, Nanchang University, Nanchang, China

Abstract

ABSTRACT Coxsackievirus group B3 (CVB3) belongs to the genus Enteroviruses of the family Picornaviridae and is the main pathogen underlying viral myocarditis (VMC). No specific therapeutic is available for this condition. Argininosuccinate synthase 1 (ASS1) is a key enzyme in the urea cycle that converts citrulline and aspartic acid to argininosuccinate. Here, we found that CVB3 and its capsid protein VP2 inhibit the autophagic degradation of ASS1 and that CVB3 consumes citrulline to upregulate ASS1, triggers urea cycle metabolic reprogramming, and then activates macrophages to develop pro-inflammatory polarization, thereby promoting the occurrence and development of VMC. Conversely, citrulline supplementation to prevent depletion can downregulate ASS1, rescue macrophage polarization, and alleviate the pathogenicity of VMC. These findings provide a new perspective on the occurrence and development of VMC, revealing ASS1 as a potential new target for treating this disease. IMPORTANCE Viral myocarditis (VMC) is a common and potentially life-threatening myocardial inflammatory disease, most commonly caused by CVB3 infection. So far, the pathogenesis of VMC caused by CVB3 is mainly focused on two aspects: one is the direct myocardial injury caused by a large number of viral replication in the early stage of infection, and the other is the local immune cell infiltration and inflammatory damage of the myocardium in the adaptive immune response stage. There are few studies on the early innate immunity of CVB3 infection in myocardial tissue, but the appearance of macrophages in the early stage of CVB3 infection suggests that they can play a regulatory role as early innate immune response cells in myocardial tissue. Here, we discovered a possible new mechanism of VMC caused by CVB3, revealed new drug targets for anti-CVB3, and discovered the therapeutic potential of citrulline for VMC.

Funder

MOST | National Natural Science Foundation of China

Training Plan for Academic and Technical Leaders of Major Disciplines in Jiangxi Province-Youth Talent Project

Project for high and talent of Science and Technology Innovation in Jiangxi Double-Thousand Program of Jiangxi Province

National Innovation and Entrepreneurship Training Program for college students

Publisher

American Society for Microbiology

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