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Upregulation of microRNA-146a by hepatitis B virus X protein contributes to hepatitis development by downregulating
Jun-Feng Li1, Xiao-Peng Dai1, Wei Zhang1
1The State Key Laboratory of Pathogen and Biosecurity, Beijing Institute of Microbiology and Epidemiology, Beijing, China.
Unlabelled:
Hepatic injuries in hepatitis B virus (HBV) patients are caused by immune responses of the host. In our previous study, microRNA-146a (miR-146a), an innate immunity-related miRNA, and complement factor H (CFH), an important negative regulator of the alternative pathway of complement activation, were differentially expressed in HBV-expressing and HBV-free hepatocytes. Here, the roles of these factors in HBV-related liver inflammation were analyzed in detail. The expression levels of miR-146a and CFH in HBV-expressing hepatocytes were assessed via analyses of hepatocyte cell lines, transgenic mice, adenovirus-infected mice, and HBV-positive human liver samples. The expression level of miR-146a was upregulated in HBV-expressing Huh-7 hepatocytes, HBV-expressing mice, and patients with HBV infection. Further results demonstrated that the HBV X protein (HBx) was responsible for its effects on miR-146a expression through NF-κB-mediated enhancement of miR-146a promoter activity. HBV/HBx also downregulated the expression of CFH mRNA in hepatocyte cell lines and the livers of humans and transgenic mice. Furthermore, overexpression and inhibition of miR-146a in Huh-7 cells downregulated and upregulated CFH mRNA levels, respectively. Luciferase reporter assays demonstrated that miR-146a downregulated CFH mRNA expression in hepatocytes via 3'-untranslated-region (UTR) pairing. The overall effect of this process in vivo is to promote liver inflammation. These results demonstrate that the HBx-miR-146a-CFH-complement activation regulation pathway might play an important role in the immunopathogenesis of chronic HBV infection. These findings have important implications for understanding the immunopathogenesis of chronic hepatitis B and developing effective therapeutic interventions.
Importance:
Hepatitis B virus (HBV) remains an important pathogen and can cause severe liver diseases, including hepatitis, liver cirrhosis, and hepatocellular carcinoma. Although HBV was found in 1966, the molecular mechanisms of pathogenesis are still poorly understood. In the present study, we found that the HBV X protein (HBx) promoted the expression of miR-146a, an innate immunity-related miRNA, through the NF-κB signal pathway and that increasingly expressed miR-146a downregulated its target complement factor H (CFH), an important negative regulator of the complement alternative pathway, leading to the promotion of liver inflammation. We demonstrated that the HBx-miR-146a-CFH-complement activation regulation pathway is potentially an important mechanism of immunopathogenesis caused by chronic HBV infection. Our data provide a novel molecular mechanism of HBV pathogenesis and thus help to understand the correlations between the complement system, an important part of innate immunity, and HBV-associated disease. These findings will also be important to identify potential therapeutic targets for HBV infection.
Insights
Hepatitis B virus X protein (HBx) upregulates microRNA-146a (miR-146a), which then suppresses complement factor H (CFH). This pathway promotes liver inflammation in chronic hepatitis B patients, offering new therapeutic targets.
Area of Science:
- Immunology
- Hepatology
- Molecular Biology
Background:
- Hepatitis B virus (HBV) infection causes significant liver damage through host immune responses.
- MicroRNA-146a (miR-146a) and complement factor H (CFH) are implicated in innate immunity and complement regulation, respectively.
- The precise molecular mechanisms linking HBV to liver inflammation remain incompletely understood.
Purpose of the Study:
- To elucidate the roles of miR-146a and CFH in HBV-related liver inflammation.
- To investigate the regulatory pathway involving HBV X protein (HBx), miR-146a, and CFH.
- To explore potential therapeutic targets for chronic HBV infection.
Main Methods:
- Analysis of miR-146a and CFH expression in HBV-expressing hepatocyte cell lines, transgenic mice, adenovirus-infected mice, and human liver samples.
- Investigation of HBx's role in miR-146a expression via NF-κB signaling.
- Luciferase reporter assays to confirm miR-146a's regulation of CFH mRNA through 3'-UTR binding.
Main Results:
- miR-146a expression was upregulated in HBV-infected hepatocytes, mice, and patients.
- HBx protein enhanced miR-146a promoter activity via NF-κB, subsequently downregulating CFH mRNA.
- miR-146a directly targeted CFH mRNA, leading to reduced CFH levels and promoting liver inflammation.
Conclusions:
- The HBx-miR-146a-CFH pathway is a key mechanism in the immunopathogenesis of chronic HBV infection.
- This pathway dysregulates complement activation, contributing to liver inflammation.
- Understanding this molecular mechanism provides insights into HBV pathogenesis and potential therapeutic strategies.
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