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A Protocol for Analyzing Hepatitis C Virus Replication
Published on: June 26, 2014
Molecular determinants of TRIF proteolysis mediated by the hepatitis C virus NS3/4A protease
Josephine C Ferreon1, Allan Chris M Ferreon, Kui Li
1Department of Microbiology and Immunology, Center for Hepatitis Research, Institute for Human Infections and Immunity, University of Texas Medical Branch at Galveston, Galveston, Texas 77555-1019, USA.
Abstract:
Persistent infections with hepatitis C virus (HCV) are a major cause of liver disease and reflect its ability to disrupt virus-induced signaling pathways activating cellular antiviral defenses. HCV evasion of double-stranded RNA signaling through Toll-like receptor 3 is mediated by the viral protease NS3/4A, which directs proteolysis of its proline-rich adaptor protein, Toll-IL-1 receptor domain containing adaptor-inducing interferon-beta (TRIF). The TRIF cleavage site has remarkable homology with the viral NS4B/5A substrate, although an 8-residue polyproline track extends upstream from the P(6) position in lieu of the acidic residue present in viral substrates. Circular dichroism (CD) spectroscopy confirmed that a substantial fraction of TRIF exists as polyproline II helices, and inclusion of the polyproline track increased affinity of P side TRIF peptides for the HCV-BK protease. A polyproline II peptide representing an SH3 binding motif (PPPVPPRRR, Sos) bound NS3 with moderate affinity, resulting in inhibition of proteolytic activity. Chemical shift perturbations in NMR spectra indicated that Sos binds a 3(10) helix close to the protease active site. Thus, a polyproline II interaction with the 3(10) helix likely facilitates NS3/4A recognition of TRIF, indicating a significant difference from NS3/4A recognition of viral substrates. Because SH3 binding motifs are also present in NS5A, a viral protein that interacts with NS3, we speculate that the NS3 3(10) helix may be a site of interaction with other viral proteins.
Insights
Hepatitis C virus (HCV) evades antiviral defenses by cleaving TRIF, a key signaling protein. This study reveals HCV protease NS3/4A uses a unique polyproline II helix interaction to recognize TRIF, differing from viral substrate recognition.
Area of Science:
- Virology
- Molecular Biology
- Biochemistry
Background:
- Persistent Hepatitis C virus (HCV) infections cause liver disease by disrupting cellular antiviral defenses.
- HCV evades double-stranded RNA signaling via Toll-like receptor 3 by protease NS3/4A cleaving the adaptor protein TRIF.
- The TRIF cleavage site shares homology with viral substrates but includes an upstream polyproline track.
Purpose of the Study:
- To investigate the molecular mechanism of TRIF recognition and cleavage by HCV protease NS3/4A.
- To elucidate the role of the polyproline track in TRIF's interaction with NS3/4A.
- To explore potential implications for viral protein-host factor interactions.
Main Methods:
- Circular dichroism (CD) spectroscopy to analyze TRIF secondary structure.
- Protease-peptide binding assays to determine affinity and inhibition.
- Nuclear Magnetic Resonance (NMR) spectroscopy to map binding interactions.
Main Results:
- TRIF contains a polyproline II helix structure that enhances binding to HCV protease NS3/4A.
- A polyproline II peptide (Sos) bound NS3, inhibiting its proteolytic activity.
- NMR revealed Sos binds to a 3(10) helix near the NS3 active site.
Conclusions:
- HCV protease NS3/4A utilizes a polyproline II helix interaction for TRIF recognition, distinct from its interaction with viral substrates.
- This polyproline II interaction with the NS3 3(10) helix is crucial for disrupting host antiviral signaling.
- The NS3 3(10) helix may also mediate interactions with other viral proteins like NS5A.

