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Published on: May 10, 2022
Determinants in the Ig Variable Domain of Human HAVCR1 (TIM-1) Are Required To Enhance Hepatitis C Virus Entry
Alla Kachko1, Maria Isabel Costafreda2, Iryna Zubkova1
1Division of Viral Products, Center for Biologics Evaluation and Research, Food and Drug Administration, Silver Spring, Maryland, USA.
Insights
Hepatitis C virus (HCV) entry is facilitated by human hepatitis A virus cellular receptor 1 (HAVCR1), also known as TIM-1. This receptor enhances HCV infection through its IgV domain, though it is not essential for viral replication.
Area of Science:
- Virology
- Immunology
- Cell Biology
Background:
- Hepatitis C virus (HCV) is a major cause of chronic hepatitis.
- The precise mechanisms of HCV cell entry involving host molecules are not fully understood.
- Human hepatitis A virus cellular receptor 1 (HAVCR1), also known as CD365 or TIM-1, is implicated in the entry of several enveloped viruses.
Purpose of the Study:
- To investigate the role of HAVCR1 in Hepatitis C virus infection.
- To elucidate the specific domains and functions of HAVCR1 involved in facilitating HCV entry.
- To understand the contribution of HAVCR1 to viral pathogenesis and identify potential therapeutic targets.
Main Methods:
- Utilized HAVCR1 antibodies to block HCV entry.
- Employed soluble HAVCR1 constructs for neutralization assays.
- Generated HAVCR1 knockout cell lines (Huh7) and studied the function of mouse HAVCR1 orthologs.
- Introduced mutations in the IgV domain and cytoplasmic tail of HAVCR1 to assess functional impact.
Main Results:
- HAVCR1 antibody inhibited HCV entry in a dose-dependent manner.
- Soluble HAVCR1 constructs neutralized HCV, with the IgV domain's phospholipid-binding pocket being crucial.
- HAVCR1 knockout reduced but did not abolish HCV replication, indicating it enhances rather than being essential for entry.
- The human HAVCR1 IgV domain, but not the mouse ortholog's, enhanced HCV infection, suggesting species-specific interactions.
Conclusions:
- The IgV domain of human HAVCR1, including its phospholipid-binding function, significantly enhances HCV infection.
- HAVCR1 appears to facilitate HCV entry by stabilizing virus attachment and promoting interactions with other receptors like CD81.
- While not essential, HAVCR1 plays a significant facilitating role in the complex HCV cell entry process.
Abstract:
Hepatitis C virus (HCV) is the leading cause of chronic hepatitis in humans. Several host molecules participate in HCV cell entry, but this process remains unclear. The complete unraveling of the HCV entry process is important to further understand viral pathogenesis and develop therapeutics. Human hepatitis A virus (HAV) cellular receptor 1 (HAVCR1), CD365, also known as TIM-1, functions as a phospholipid receptor involved in cell entry of several enveloped viruses. Here, we studied the role of HAVCR1 in HCV infection. HAVCR1 antibody inhibited entry in a dose-dependent manner. HAVCR1 soluble constructs neutralized HCV, which did not require the HAVCR1 mucinlike region and was abrogated by a mutation of N to A at position 94 (N94A) in the Ig variable (IgV) domain phospholipid-binding pocket, indicating a direct interaction of the HAVCR1 IgV domain with HCV virions. However, knockout of HAVCR1 in Huh7 cells reduced but did not prevent HCV growth. Interestingly, the mouse HAVCR1 ortholog, also a phospholipid receptor, did not enhance infection and a soluble form failed to neutralize HCV, although replacement of the mouse IgV domain with the human HAVCR1 IgV domain restored the enhancement of HCV infection. Mutations in the cytoplasmic tail revealed that direct HAVCR1 signaling is not required to enhance HCV infection. Our data show that the phospholipid-binding function and other determinant(s) in the IgV domain of human HAVCR1 enhance HCV infection. Although the exact mechanism is not known, it is possible that HAVCR1 facilitates entry by stabilizing or enhancing attachment, leading to direct interactions with specific receptors, such as CD81.IMPORTANCE Hepatitis C virus (HCV) enters cells through a multifaceted process. We identified the human hepatitis A virus cellular receptor 1 (HAVCR1), CD365, also known as TIM-1, as a facilitator of HCV entry. Antibody blocking and silencing or knockout of HAVCR1 in hepatoma cells reduced HCV entry. Our findings that the interaction of HAVCR1 with HCV early during infection enhances entry but is not required for infection support the hypothesis that HAVCR1 facilitates entry by stabilizing or enhancing virus binding to the cell surface membrane and allowing the correct virus-receptor positioning for interaction with the main HCV receptors. Furthermore, our data show that in addition to the phospholipid-binding function of HAVCR1, the enhancement of HCV infection involves other determinants in the IgV domain of HAVCR1. These findings expand the repertoire of molecules that HCV uses for cell entry, adding to the already complex mechanism of HCV infection and pathogenesis.
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