NK-cell–elicited gasdermin-D–dependent hepatocyte pyroptosis induces neutrophil extracellular traps that facilitate HBV-related acute-on-chronic liver failure

Author:

Zhao Qiang1,Chen Dong-Ping2ORCID,Chen Hua-Di1,Wang Ying-Zhe2,Shi Wei2,Lu Yi-Tong2,Ren Yi-Zheng2,Wu Yuan-Kai3,Pang Yi-Hua3,Deng Hong3,He Xiaoshun1456,Kuang Dong-Ming2ORCID,Guo Zhi-Yong1456

Affiliation:

1. Organ Transplant Center, The First Affiliated Hospital, Sun Yat-sen University, Guangzhou, China

2. Guangdong Province Key Laboratory of Pharmaceutical Functional Genes, MOE Key Laboratory of Gene Function and Regulation, School of Life Sciences, Sun Yat-sen University, Guangzhou, China

3. Guangdong Provincial Key Laboratory of Liver Disease Research, Department of Infectious Diseases, the Third Affiliated Hospital, Sun Yat-sen University, Guangzhou, China

4. Guangdong Provincial Key Laboratory of Organ Donation and Transplant Immunology, Guangzhou, China

5. Guangdong Provincial International Cooperation Base of Science and Technology (Organ Transplantation), Guangzhou, China

6. NHC key Laboratory of Assisted Circulation (Sun Yat-sen University), Guangzhou, China

Abstract

Background and Aims: HBV infection is a major etiology of acute-on-chronic liver failure (ACLF). At present, the pattern and regulation of hepatocyte death during HBV-ACLF progression are still undefined. Evaluating the mode of cell death and its inducers will provide new insights for developing therapeutic strategies targeting cell death. In this study, we aimed to elucidate whether and how immune landscapes trigger hepatocyte death and lead to the progression of HBV-related ACLF. Approach and Results: We identified that pyroptosis represented the main cell death pattern in the liver of patients with HBV-related ACLF. Deficiency of MHC-I in HBV-reactivated hepatocytes activated cytotoxic NK cells, which in turn operated in a perforin/granzyme-dependent manner to trigger GSDMD/caspase-8-dependent pyroptosis of hepatocytes. Neutrophils selectively accumulated in the pyroptotic liver, and HMGB1 derived from the pyroptotic liver constituted an important factor triggering the generation of pathogenic extracellular traps in neutrophils (NETs). Clinically, elevated plasma levels of myeloperoxidase-DNA complexes were a promising prognostic biomarker for HBV-related ACLF. More importantly, targeting GSDMD pyroptosis-HMGB1 release in the liver abrogates NETs that intercept the development of HBV-related ACLF. Conclusions: Studying the mechanisms that selectively modulate GSDMD-dependent pyroptosis, as well as its immune landscapes, will provide a novel strategy for restoring the liver function of patients with HBV-related ACLF.

Publisher

Ovid Technologies (Wolters Kluwer Health)

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