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Updated: Jun 17, 2026

A Protocol for Analyzing Hepatitis C Virus Replication
Published on: June 26, 2014
RNA interference and single particle tracking analysis of hepatitis C virus endocytosis
Kelly E Coller1, Kristi L Berger, Nicholas S Heaton
1Department of Microbiology, The University of Chicago, Chicago, Illinois, USA.
Abstract:
Hepatitis C virus (HCV) enters hepatocytes following a complex set of receptor interactions, culminating in internalization via clathrin-mediated endocytosis. However, aside from receptors, little is known about the cellular molecular requirements for infectious HCV entry. Therefore, we analyzed a siRNA library that targets 140 cellular membrane trafficking genes to identify host genes required for infectious HCV production and HCV pseudoparticle entry. This approach identified 16 host cofactors of HCV entry that function primarily in clathrin-mediated endocytosis, including components of the clathrin endocytosis machinery, actin polymerization, receptor internalization and sorting, and endosomal acidification. We next developed single particle tracking analysis of highly infectious fluorescent HCV particles to examine the co-trafficking of HCV virions with cellular cofactors of endocytosis. We observe multiple, sequential interactions of HCV virions with the actin cytoskeleton, including retraction along filopodia, actin nucleation during internalization, and migration of internalized particles along actin stress fibers. HCV co-localizes with clathrin and the ubiquitin ligase c-Cbl prior to internalization. Entering HCV particles are associated with the receptor molecules CD81 and the tight junction protein, claudin-1; however, HCV-claudin-1 interactions were not restricted to Huh-7.5 cell-cell junctions. Surprisingly, HCV internalization generally occurred outside of Huh-7.5 cell-cell junctions, which may reflect the poorly polarized nature of current HCV cell culture models. Following internalization, HCV particles transport with GFP-Rab5a positive endosomes, which is consistent with trafficking to the early endosome. This study presents technical advances for imaging HCV entry, in addition to identifying new host cofactors of HCV infection, some of which may be antiviral targets.
Insights
Researchers identified 16 host factors crucial for Hepatitis C virus (HCV) entry, primarily involving clathrin-mediated endocytosis and actin dynamics. This discovery offers potential new antiviral targets for HCV infection.
Area of Science:
- Virology
- Cell Biology
- Molecular Biology
Background:
- Hepatitis C virus (HCV) entry into hepatocytes is complex, involving receptor interactions and clathrin-mediated endocytosis.
- The specific cellular molecular requirements beyond receptors for infectious HCV entry remain largely unknown.
Purpose of the Study:
- To identify host genes essential for infectious HCV production and HCV pseudoparticle entry.
- To elucidate the cellular mechanisms and molecular players involved in HCV entry.
Main Methods:
- Screening of a siRNA library targeting 140 cellular membrane trafficking genes.
- Development of single particle tracking analysis for fluorescently labeled HCV particles.
- Observation of HCV virion co-trafficking with endocytic cellular cofactors.
Main Results:
- Identified 16 host cofactors essential for HCV entry, predominantly involved in clathrin-mediated endocytosis, actin polymerization, and endosomal acidification.
- Observed sequential interactions of HCV virions with the actin cytoskeleton during entry and migration.
- HCV co-localizes with clathrin and c-Cbl before internalization and associates with CD81 and claudin-1 outside cell junctions.
Conclusions:
- This study advances imaging techniques for HCV entry and identifies novel host cofactors.
- The identified host cofactors, particularly those in clathrin-mediated endocytosis and actin dynamics, represent potential antiviral targets for HCV infection.

