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Published on: July 16, 2012
Hepatitis C virus core protein inhibits human T lymphocyte responses by a complement-dependent regulatory pathway
Z Q Yao1, D T Nguyen, A I Hiotellis
1Department of Microbiology and Pathology, Beirne B. Carter Center for Immunology Research, University of Virginia, Charlottesville, VA 22908, USA.
Insights
Hepatitis C virus (HCV) core protein inhibits T cell activation by blocking key signaling pathways. This interaction with complement receptor gC1qR impairs immune responses, potentially aiding viral persistence.
Area of Science:
- Immunology
- Virology
Background:
- Complement proteins are crucial for innate immunity and clearing viral antigens.
- Hepatitis C virus (HCV) core protein is expressed early and circulates, potentially interfering with immune responses.
Purpose of the Study:
- To investigate the mechanisms by which HCV core protein inhibits T cell proliferation via interaction with the complement receptor gC1qR.
- To examine the effect of HCV core protein on early T cell activation events.
Main Methods:
- Examined the impact of HCV core protein on T cell activation.
- Assessed the phosphorylation of extracellular signal-regulated kinase (ERK) and mitogen-activated ERK kinase (MEK).
- Investigated the role of the HCV core/gC1qR interaction using anti-gC1qR antibody treatment.
Main Results:
- HCV core protein inhibited ERK and MEK phosphorylation, crucial for T cell activation.
- This impairment led to reduced IL-2 and IL-2Ralpha gene transcription and subsequent inhibition of IL-2 production and high-affinity IL-2R expression.
- Anti-gC1qR antibody treatment reversed the inhibition of ERK/MEK phosphorylation, confirming the role of the HCV core/gC1qR interaction.
Conclusions:
- HCV core protein blocks intracellular T cell activation events through a complement-dependent pathway involving gC1qR.
- This mechanism may be critical for establishing HCV persistence during acute infection.
- Targeting the HCV core/gC1qR interaction could be a strategy to restore T cell function.
Abstract:
Complement proteins are involved in early innate immune responses against pathogens and play a role in clearing circulating viral Ags from the blood of infected hosts. We have previously demonstrated that hepatitis C virus (HCV) core, the first protein to be expressed and circulating in the blood of infected individuals, inhibited human T cell proliferative response through interaction with the complement receptor, globular domain of C1q receptor (gC1qR). To investigate the mechanisms of HCV core/gC1qR-induced inhibition of T cell proliferation, we examined the effect of core protein on the early events in T cell activation. We found that HCV core inhibited phosphorylation of extracellular signal-regulated kinase (ERK) and mitogen-activated ERK kinase (MEK). HCV core-induced impairment of ERK/MEK mitogen-activated protein kinase resulted in the inhibition of IL-2 and IL-2Ralpha gene transcription, which led to the inhibition of IL-2 production and high-affinity IL-2R expression. Importantly, the ability of anti-gC1qR Ab treatment to reverse HCV core-induced inhibition of ERK/MEK phosphorylation reveals that the interaction between HCV core and gC1qR is linked to the interference of ERK/MEK mitogen-activated protein kinase activation. These results imply that HCV core-induced blockage of intracellular events in T cell activation by a complement-dependent regulatory pathway may play a critical role in the establishment of HCV persistence during the acute phase of viral infection.
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