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.

Mbio
|March 26, 2015
PubMed
Abstract

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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