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Published on: February 1, 2017
Hepatitis C virus core selectively suppresses interleukin-12 synthesis in human macrophages by interfering with AP-1
Audrey L Eisen-Vandervelde1, Stephen N Waggoner, Zhi Qiang Yao
1Beirne Carter Center for Immunology Research, University of Virginia, Charlottesville 22908, USA.
Insights
Hepatitis C virus (HCV) core protein evades immune response by interacting with gC1qR, suppressing crucial IL-12 cytokine production. This mechanism hinders T helper 1 (TH1) cell responses, aiding persistent HCV infection.
Area of Science:
- Virology
- Immunology
- Molecular Biology
Background:
- Hepatitis C virus (HCV) establishes persistent infections by evading host immune responses.
- T cell responses, including interferon-gamma production, are suppressed in chronic HCV patients.
- HCV core protein circulates in blood and inhibits immunity via gC1qR interaction.
Purpose of the Study:
- To investigate the role of the HCV core-gC1qR interaction in modulating inflammatory cytokine production.
- To examine the effect of HCV core protein on interleukin (IL)-12 production in human monocyte/macrophages.
Main Methods:
- Lipopolysaccharide (LPS)-stimulated human monocyte/macrophages were used.
- Binding of HCV core protein to cell surface gC1qR was assessed.
- Production of IL-12p70 and other cytokines (IL-6, IL-8, IL-1beta, TNF-alpha) was measured.
- IL-12p40 mRNA synthesis and AP-1 activation were analyzed.
Main Results:
- HCV core protein binds to gC1qR on monocyte/macrophages.
- Core protein selectively inhibited IL-12p70 production upon LPS stimulation.
- HCV core suppressed IL-12p40 mRNA synthesis at the transcriptional level.
- Inhibition of IL-12p40 mRNA was linked to impaired AP-1 activation, not increased IL-10.
Conclusions:
- The HCV core-gC1qR interaction plays a key role in persistent HCV infection.
- This interaction dampens T helper 1 (TH1) responses by suppressing IL-12 production.
- HCV evades host immunity through specific modulation of cytokine signaling pathways.
Abstract:
Hepatitis C virus (HCV) is remarkably efficient at establishing persistent infection, suggesting that it has evolved one or more strategies aimed at evading the host immune response. T cell responses, including interferon-gamma production, are severely suppressed in chronic HCV patients. The HCV core protein has been previously shown to circulate in the bloodstream of HCV-infected patients and inhibit host immunity through an interaction with gC1qR. To determine the role of the HCV core-gC1qR interaction in modulation of inflammatory cytokine production, we examined interleukin (IL)-12 production, which is critical for the induction of interferon-gamma synthesis, in lipopolysaccharide-stimulated human monocyte/macrophages. We found that core protein binds the gC1qR displayed on the cell surface of monocyte/macrophages and inhibits the production of IL-12p70 upon lipopolysaccharide stimulation. This inhibition was found to be selective in that HCV core failed to affect the production of IL-6, IL-8, IL-1beta, and tumor necrosis factor alpha. In addition, suppression of IL-12 production by core protein occurred at the transcriptional level by inhibition of IL-12p40 mRNA synthesis. Importantly, core-induced inhibition of IL-12p40 mRNA synthesis resulted from impaired activation of AP-1 rather than enhanced IL-10 production. These results suggest that the HCV core-gC1qR interaction may play a pivotal role in establishing persistent infection by dampening TH1 responses.
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