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Updated: Apr 5, 2026

A Protocol for Analyzing Hepatitis C Virus Replication
Published on: June 26, 2014
Pathogen-Associated Molecular Pattern Recognition of Hepatitis C Virus Transmitted/Founder Variants by RIG-I Is
Alison Kell1, Mark Stoddard2, Hui Li2
1Center for Innate Immunity and Immune Disease, Department of Immunology, School of Medicine, University of Washington, Seattle, Washington, USA.
Insights
Hepatitis C virus (HCV) transmitted/founder variants with longer uridine cores in their RNA are recognized by RIG-I, activating innate immunity to restrict acute infection. This RIG-I recognition influences the transition from acute to chronic HCV infection.
Area of Science:
- Immunology
- Virology
- Hepatology
Background:
- Hepatitis C virus (HCV) infection persists despite direct-acting antiviral (DAA) treatments, necessitating understanding of early infection dynamics.
- Innate immunity, particularly the RIG-I pathway, plays a role in spontaneous clearance of acute HCV infections.
- Transmitted/founder (T/F) HCV variants possess unique genomic features that may influence early immune responses.
Purpose of the Study:
- To investigate how variations in the poly-uridine/cytosine (poly-U/UC) motif of HCV RNA affect RIG-I recognition and innate immune activation.
- To determine if specific characteristics of T/F HCV variants' PAMPs correlate with innate immune control during acute infection.
Main Methods:
- Analysis of 14 unique poly-U/UC sequences from T/F HCV genomes obtained from acutely infected patients.
- Assessing RIG-I binding and activation of innate immune signaling pathways in response to different poly-U/UC sequences.
- Correlating PAMP sequence characteristics, specifically U-core length, with the capacity to induce antiviral responses.
Main Results:
- HCV T/F variants are recognized by RIG-I in a sequence-dependent manner.
- The length of the uridine (U) core within the poly-U/UC motif is a critical determinant for RIG-I binding and activation.
- Longer U-core motifs in T/F variants were associated with robust RIG-I activation and innate immune signaling, leading to viral restriction.
Conclusions:
- RIG-I recognition of HCV T/F variants, primarily driven by the length of the U-core motif, is crucial for initiating innate immune responses.
- This RIG-I-mediated innate immune signaling can restrict acute HCV infection, impacting the transition to chronic disease.
- Understanding these early virus-host interactions is vital for developing strategies to prevent HCV chronicity.
Unlabelled:
Despite the introduction of direct-acting antiviral (DAA) drugs against hepatitis C virus (HCV), infection remains a major public health concern because DAA therapeutics do not prevent reinfection and patients can still progress to chronic liver disease. Chronic HCV infection is supported by a variety of viral immune evasion strategies, but, remarkably, 20% to 30% of acute infections spontaneously clear prior to development of adaptive immune responses, thus implicating innate immunity in resolving acute HCV infection. However, the virus-host interactions regulating acute infection are unknown. Transmission of HCV involves one or a few transmitted/founder (T/F) variants. In infected hepatocytes, the retinoic acid-inducible gene I (RIG-I) protein recognizes 5' triphosphate (5'ppp) of the HCV RNA and a pathogen-associated molecular pattern (PAMP) motif located within the 3' untranslated region consisting of poly-U/UC. PAMP binding activates RIG-I to induce innate immune signaling and type 1 interferon antiviral defenses. HCV poly-U/UC sequences can differ in length and complexity, suggesting that PAMP diversity in T/F genomes could regulate innate immune control of acute HCV infection. Using 14 unique poly-U/UC sequences from HCV T/F genomes recovered from acute-infection patients, we tested whether RIG-I recognition and innate immune activation correlate with PAMP sequence characteristics. We show that T/F variants are recognized by RIG-I in a manner dependent on length of the U-core motif of the poly-U/UC PAMP and are recognized by RIG-I to induce innate immune responses that restrict acute infection. PAMP recognition of T/F HCV variants by RIG-I may therefore impart innate immune signaling and HCV restriction to impact acute-phase-to-chronic-phase transition.
Importance:
Recognition of nonself molecular patterns such as those seen with viral nucleic acids is an essential step in triggering the immune response to virus infection. Innate immunity is induced by hepatitis C virus infection through the recognition of viral RNA by the cellular RIG-I protein, where RIG-I recognizes a poly-uridine/cytosine motif in the viral genome. Variation within this motif may provide an immune evasion strategy for transmitted/founder viruses during acute infection. Using 14 unique poly-U/UC sequences from HCV T/F genomes recovered from acutely infected HCV patients, we demonstrate that RIG-I binding and activation of innate immunity depend primarily on the length of the uridine core within this motif. T/F variants found in acute infection contained longer U cores within the motif and could activate RIG-I and induce innate immune signaling sufficient to restrict viral infection. Thus, recognition of T/F variants by RIG-I could significantly impact the transition from acute to chronic infection.
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