Highly pathogenic coronavirus N protein aggravates lung injury by MASP-2-mediated complement over-activation

Ting Gao(Beijing Biocytogen (China)), Mingdong Hu(Army Medical University), Xiaopeng Zhang(Wuhan Institute of Bioengineering), Hongzhen Li(Beijing Biocytogen (China)), Lin Zhu(Beijing Biocytogen (China)), Hainan Liu(Beijing Biocytogen (China)), Qincai Dong(Beijing Biocytogen (China)), Zhang Zhang(Wuhan Institute of Bioengineering), Zhongyi Wang(Wuhan Institute of Bioengineering), Yong Hu(Beijing Biocytogen (China)), Yangbo Fu(Beijing Biocytogen (China)), Yanwen Jin(Beijing Biocytogen (China)), Kaitong Li(Beijing Biocytogen (China)), Songtao Zhao(Army Medical University), Yongjiu Xiao(Jianghan University), Shuping Luo(117th Hospital of People's Liberation Army), Lufeng Li(Army Medical University), Lingfang Zhao(Jianghan University), Junli Liu(Beijing Biocytogen (China)), Huailong Zhao(Beijing Biocytogen (China)), Yue Liu(Beijing Biocytogen (China)), Weihong Yang(Beijing Biocytogen (China)), Jing Peng(Army Medical University), Xiaoyu Chen(Jianghan University), Ping Li(Beijing Biocytogen (China)), Yaoning Liu(Beijing Biocytogen (China)), Yonghong Xie(Jianghan University), Jibo Song(Jianghan University), Lu Zhang(Jianghan University), Qingjun Ma(Beijing Biocytogen (China)), Xiuwu Bian(Army Medical University), Wei Chen(Wuhan Institute of Bioengineering), Xuan Liu(Beijing Biocytogen (China)), Qing Mao(Army Medical University), Cheng Cao(Wuhan Institute of Bioengineering)
medRxiv
March 30, 2020
Cited by 363Open Access
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Abstract

Abstract An excessive immune response contributes to SARS-CoV, MERS-CoV and SARS-CoV-2 pathogenesis and lethality, but the mechanism remains unclear. In this study, the N proteins of SARS-CoV, MERS-CoV and SARS-CoV-2 were found to bind to MASP-2, the key serine protease in the lectin pathway of complement activation, resulting in aberrant complement activation and aggravated inflammatory lung injury. Either blocking the N protein:MASP-2 interaction or suppressing complement activation can significantly alleviate N protein-induced complement hyper-activation and lung injury in vitro and in vivo . Complement hyper-activation was also observed in COVID-19 patients, and a promising suppressive effect was observed when the deteriorating patients were treated with anti-C5a monoclonal antibody. Complement suppression may represent a common therapeutic approach for pneumonia induced by these highly pathogenic coronaviruses. One Sentence Summary The lectin pathway of complement activation is a promising target for the treatment of highly pathogenic coronavirus induced pneumonia.


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