4.4 Article

BST-2 Expression in Human Hepatocytes is Inducible by All Three Types of Interferons and Restricts Production of Hepatitis C Virus

期刊

CURRENT MOLECULAR MEDICINE
卷 14, 期 3, 页码 349-360

出版社

BENTHAM SCIENCE PUBL LTD
DOI: 10.2174/1566524013666131118111719

关键词

BST-2; HCV; host restriction factor; Huh7.5.1 cell; interferon; lipid droplet

资金

  1. Grand Challenges Explorations (GCE) Phase II grant through the Bill & Melinda Gates Foundation [OPP1035237]
  2. NIH [1R21AI104268, T32 AI060519]
  3. Showalter Research Trust Fund
  4. NSFC [81101247, 81201259]
  5. NSFZJ [Y2110608, Y2110580]
  6. Research Facilities Improvement Program Grant from the National Center for Research Resources, NIH [C06 RR015481-01]

向作者/读者索取更多资源

Bone marrow stromal cell antigen 2 (BST-2, also known as tetherin, CD317, or HM1.24) has recently been identified as a host restriction factor against diverse families of enveloped viruses. However, the effects of BST-2 on the life cycle of hepatitis C virus (HCV), an enveloped RNA virus, remain unclear and controversial. Here we demonstrated that human hepatocytes including Huh7.5.1 cells, primary human hepatocytes (PHHs), and HepG2 cells constitutively expressed low to moderate levels of endogenous BST-2 on the cell surface, which could be robustly up-regulated by all three types of interferons (IFNs) such as IFN-alpha, IFN-gamma, and IFN-lambda IFN-alpha and IFN-gamma showed a synergistic effect in induction of BST-2 expression on human hepatocytes. Over-expression of BST-2 by BST-2-expressing vector transfection or up-regulation of BST-2 by IFN stimulation markedly suppressed HCV production, whereas shRNA-mediated depletion of endogenous BST-2 significantly enhanced HCV production in infected Huh7.5.1 cells. IFN-mediated anti-HCV activity was partially but significantly diminished by shRNA-mediated knockdown of BST-2 expression, indicating that BST-2 upregulation is directly involved in IFN-mediated inhibition of HCV production. We also found that both BST-2 and HCV core co-localized with intracellular lipid droplets (LDs), suggesting that BST-2-HCV interaction may take place around LDs as LDs constitute an important intracellular organelle for HCV assembly and replication. Taken together, our data suggest that BST-2 is a host restriction factor against HCV, and induction of BST-2 in hepatocytes could be one of the mechanisms by which current HCV standard therapy (IFN-alpha plus ribavirin) achieves a sustained virological response (SVR).

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