Hepatitis B virus evades immune recognition via RNA adenosine deaminase ADAR1-mediated viral RNA editing in hepatocytes

被引:0
作者
Liyuan Wang
Yang Sun
Xiaojia Song
Zehua Wang
Yankun Zhang
Ying Zhao
Xueqi Peng
Xiaodong Zhang
Chunyang Li
Chengjiang Gao
Nailin Li
Lifen Gao
Xiaohong Liang
Zhuanchang Wu
Chunhong Ma
机构
[1] Shandong University,Key Laboratory for Experimental Teratology, Ministry of Education, School of Basic Medical Sciences, Cheeloo Medical College
[2] Shandong University,Department of Immunology, School of Basic Medical Sciences, Cheeloo Medical College
[3] Shandong University,Key Laboratory of Infection and Immunity of Shandong Province
[4] Shandong University,Advanced Medical Research Institute
[5] Karolinska Institute,Clinical Pharmacology Group, Department of Medicine, Solna
来源
Cellular & Molecular Immunology | 2021年 / 18卷
关键词
ADAR1; RNA editing; IFN response; HBV replication; HBx;
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摘要
HBV is considered as a “stealth” virus that does not invoke interferon (IFN) responses; however, the mechanisms by which HBV bypasses innate immune recognition are poorly understood. In this study, we identified adenosine deaminases acting on RNA 1 (ADAR1), which is a key factor in HBV evasion from IFN responses in hepatocytes. Mechanically, ADAR1 interacted with HBV RNAs and deaminated adenosine (A) to generate inosine (I), which disrupted host immune recognition and thus promoted HBV replication. Loss of ADAR1 or its deficient deaminase activity promoted IFN responses and inhibited HBV replication in hepatocytes, and blocking the IFN signaling pathways released the inhibition of HBV replication caused by ADAR1 deficiency. Notably, the HBV X protein (HBx) transcriptionally promoted ADAR1 expression to increase the threshold required to trigger intrinsic immune activation, which in turn enhanced HBV escape from immune recognition, leading to persistent infection. Supplementation with 8-azaadenosine, an ADAR1 inhibitor, efficiently enhanced liver immune activation to promote HBV clearance in vivo and in vitro. Taken together, our results delineate a molecular mechanism by which HBx promotes ADAR1-derived HBV immune escape and suggest a targeted therapeutic intervention for HBV infection.
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页码:1871 / 1882
页数:11
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