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Published on: February 3, 2012
Human occludin is a hepatitis C virus entry factor required for infection of mouse cells
Alexander Ploss1, Matthew J Evans, Valeriya A Gaysinskaya
1Center for the Study of Hepatitis C, The Rockefeller University, New York, New York 10065, USA.
Abstract:
Hepatitis C virus (HCV) is a leading cause of liver disease worldwide. The development of much needed specific antiviral therapies and an effective vaccine has been hampered by the lack of a convenient small animal model. The determinants restricting HCV tropism to human and chimpanzee hosts are unknown. Replication of the viral RNA has been demonstrated in mouse cells, but these cells are not infectable with either lentiviral particles bearing HCV glycoproteins (HCVpp) or HCV produced in cell culture (HCVcc) (A.P., M.E. and C.M.R., unpublished observations), suggesting that there is a block at the level of entry. Here we show, using an iterative complementary DNA library screening approach, that human occludin (OCLN) is an essential HCV cell entry factor that is able to render murine cells infectable with HCVpp. Similarly, OCLN is required for the HCV-susceptibility of human cells, because its overexpression in uninfectable cells specifically enhanced HCVpp uptake, whereas its silencing in permissive cells impaired both HCVpp and HCVcc infection. In addition to OCLN, HCVpp infection of murine cells required expression of the previously identified HCV entry factors CD81 (ref. 4), scavenger receptor class B type I (SR-BI, also known as SCARB1) and claudin-1 (CLDN1). Although the mouse versions of SR-BI and CLDN1 function at least as well as the human proteins in promoting HCV entry, both OCLN and CD81 must be of human origin to allow efficient infection. The species-specific determinants of OCLN were mapped to its second extracellular loop. The identification of OCLN as a new HCV entry factor further highlights the importance of the tight junction complex in the viral entry process, and provides an important advance towards efforts to develop small animal models for HCV.
Insights
Human occludin (OCLN) is identified as a crucial factor for Hepatitis C virus (HCV) entry into cells. This discovery advances the development of small animal models for studying HCV infection and potential therapies.
Area of Science:
- Virology
- Cell Biology
- Immunology
Background:
- Hepatitis C virus (HCV) causes significant global liver disease.
- Lack of suitable small animal models hinders antiviral therapy and vaccine development.
- HCV tropism is limited to humans and chimpanzees, with unknown entry determinants.
Purpose of the Study:
- To identify host factors essential for Hepatitis C virus cell entry.
- To understand the species-specific restrictions of HCV tropism.
- To facilitate the development of small animal models for HCV research.
Main Methods:
- Iterative complementary DNA library screening.
- HCVpp (HCV pseudoparticles) and HCVcc (cell culture-produced HCV) infection assays.
- Gene overexpression and silencing (siRNA) in murine and human cell lines.
Main Results:
- Human occludin (OCLN) was identified as a critical factor for HCV entry.
- OCLN expression rendered murine cells susceptible to HCVpp infection.
- OCLN is necessary for HCV entry into both human and murine cells, with species-specific determinants in its second extracellular loop.
- Efficient HCV entry requires human OCLN and CD81, alongside murine or human SR-BI and CLDN1.
Conclusions:
- Occludin is a novel and essential host factor for Hepatitis C virus cell entry.
- The tight junction complex plays a vital role in the viral entry process.
- Identification of OCLN is a significant step towards creating functional small animal models for HCV.
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