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A High Resolution Method to Monitor Phosphorylation-dependent Activation of IRF3
Published on: January 24, 2016
Hepatitis C virus NS5A disrupts STAT1 phosphorylation and suppresses type I interferon signaling
Kattareeya Kumthip1, Pattranuch Chusri, Nikolaus Jilg
1Gastrointestinal Unit, Department of Medicine, Massachusetts General Hospital, Harvard Medical School, Boston, Massachusetts, USA.
Abstract:
Responses to alpha interferon (IFN-α)-based treatment are dependent on both host and viral factors and vary markedly among patients infected with different hepatitis C virus (HCV) genotypes (GTs). Patients infected with GT3 viruses consistently respond better to IFN treatment than do patients infected with GT1 viruses. The mechanisms underlying this difference are not well understood. In this study, we sought to determine the effects of HCV NS5A proteins from different genotypes on IFN signaling. We found that the overexpression of either GT1 or GT3 NS5A proteins significantly inhibited IFN-induced IFN-stimulated response element (ISRE) signaling, phosphorylated STAT1 (P-STAT1) levels, and IFN-stimulated gene (ISG) expression compared to controls. GT1 NS5A protein expression exhibited stronger inhibitory effects on IFN signaling than did GT3 NS5A protein expression. Furthermore, GT1 NS5A bound to STAT1 with a higher affinity than did GT3 NS5A. Domain mapping revealed that the C-terminal region of NS5A conferred these inhibitory effects on IFN signaling. The overexpression of HCV NS5A increased HCV replication levels in JFH1-infected cells through the further reduction of levels of P-STAT1, ISRE signaling, and downstream ISG responses. We demonstrated that the overexpression of GT1 NS5A proteins resulted in less IFN responsiveness than did the expression of GT3 NS5A proteins through stronger binding to STAT1. We confirmed that GT1 NS5A proteins exerted stronger IFN signaling inhibition than did GT3 NS5A proteins in an infectious recombinant JFH1 virus. The potent antiviral NS5A inhibitor BMS-790052 did not block NS5A-mediated IFN signaling suppression in an overexpression model, suggesting that NS5A's contributions to replication are independent of its subversive action on IFN. We propose a model in which the binding of the C-terminal region of NS5A to STAT1 leads to decreased levels of P-STAT1, ISRE signaling, and ISG transcription and, ultimately, to preferential GT1 resistance to IFN treatment.
Insights
Hepatitis C virus (HCV) genotype 1 (GT1) NS5A protein inhibits interferon (IFN) signaling more strongly than genotype 3 (GT3) NS5A by binding to STAT1, leading to GT1 resistance to IFN treatment.
Area of Science:
- Virology
- Immunology
- Hepatology
Background:
- Hepatitis C virus (HCV) treatment response to interferon (IFN) varies by viral genotype.
- HCV genotype 1 (GT1) shows poorer response to IFN than genotype 3 (GT3).
- Mechanisms for differential IFN response based on HCV genotype are not fully understood.
Purpose of the Study:
- To investigate the differential effects of HCV NS5A proteins from GT1 and GT3 on IFN signaling pathways.
- To elucidate the molecular mechanisms underlying genotype-specific IFN resistance in HCV.
Main Methods:
- Overexpression of GT1 and GT3 HCV NS5A proteins in cell culture.
- Assessment of IFN-stimulated response element (ISRE) signaling, STAT1 phosphorylation (P-STAT1), and IFN-stimulated gene (ISG) expression.
- Analysis of STAT1-NS5A binding affinity and domain mapping of NS5A.
- Replication studies using JFH1-infected cells and infectious recombinant JFH1 virus.
Main Results:
- Both GT1 and GT3 NS5A inhibited IFN signaling, but GT1 NS5A showed stronger inhibition.
- GT1 NS5A bound to STAT1 with higher affinity than GT3 NS5A, primarily through its C-terminal region.
- HCV NS5A overexpression increased viral replication by suppressing P-STAT1, ISRE signaling, and ISG responses.
- The NS5A inhibitor BMS-790052 did not affect NS5A-mediated IFN suppression, indicating independent mechanisms.
Conclusions:
- GT1 NS5A confers greater resistance to IFN treatment than GT3 NS5A through enhanced inhibition of IFN signaling via STAT1 binding.
- The C-terminal region of NS5A is crucial for suppressing IFN signaling.
- NS5A's suppression of IFN signaling contributes to viral replication and genotype-specific IFN resistance.
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