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Updated: Oct 20, 2025

A Competent Hepatocyte Model Examining Hepatitis B Virus Entry through Sodium Taurocholate Cotransporting Polypeptide as a Therapeutic Target
Published on: May 10, 2022
Structural insights into hepatitis C virus receptor binding and entry.
Ashish Kumar1, Reafa A Hossain1, Samantha A Yost2
1Structural Virology Section, Laboratory of Infectious Diseases, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, MD, USA.
Hepatitis C virus (HCV) entry involves E2 glycoprotein binding to CD81 receptor. Low pH and CD81 binding induce conformational changes in E2, facilitating viral membrane fusion.
Area of Science:
- Virology
- Structural Biology
- Cell Biology
Background:
- Hepatitis C virus (HCV) causes chronic liver disease, cirrhosis, and liver cancer, affecting over 70 million globally.
- HCV envelope glycoproteins E1 and E2 mediate viral entry, but the precise mechanism remains unclear.
- Neutralizing antibodies often target the E2 glycoprotein's interaction with the CD81 receptor's large extracellular loop (CD81-LEL).
Purpose of the Study:
- To elucidate the structural and molecular mechanisms of HCV entry.
- To investigate the role of pH and CD81 binding in the interaction between HCV E2 and CD81-LEL.
- To determine the structural basis for E2-mediated membrane fusion.
Main Methods:
- X-ray crystallography was used to determine the structures of E2 complexes.
- Mutagenesis studies were performed on key E2 residues.
- Liposome flotation assays assessed the interaction of E2 with membranes.
Main Results:
- Low pH enhances the binding of CD81-LEL to the E2 glycoprotein.
- Crystal structures revealed conformational changes in E2 upon CD81-LEL binding, displacing residues 418-422 and extending an internal loop (520-539).
- Specific E2 residues (Tyr529, Trp531, Ile422) are crucial for membrane interaction, which is promoted by low pH and CD81-LEL.
Conclusions:
- Acidification and CD81-LEL binding induce a conformational shift in E2.
- This conformational change primes E2 for membrane fusion, representing a key step in HCV entry.
- The findings provide a molecular model for HCV-host cell membrane interaction.
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