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Published on: September 25, 2019
Effects of HCV on basal and tat-induced HIV LTR activation
Satarupa Sengupta1, Eleanor Powell, Ling Kong
1Division of Digestive Diseases, Department of Internal Medicine, University of Cincinnati College of Medicine, Cincinnati, Ohio, United States of America.
Insights
Hepatitis C virus (HCV) Core protein suppresses HIV replication in liver cells, but infectious HCV virions increase it. This interaction may accelerate HIV disease in co-infected patients.
Area of Science:
- Hepatology
- Virology
- Immunology
Background:
- Hepatitis C virus (HCV) co-infection is common in HIV-infected individuals.
- The impact of HCV on HIV infection and disease progression is not well understood.
- Hepatocytes can act as reservoirs for HIV replication.
Purpose of the Study:
- To investigate the effects of HCV Core protein and infectious HCV virions on HIV replication in hepatocytes.
- To understand how HCV influences HIV long terminal repeat (LTR) activation.
Main Methods:
- Evaluated basal and Tat-induced HIV LTR activation in hepatocytes.
- Utilized NF-kB inhibitors and LTR deletion mutants to study pathway involvement.
- Assessed the impact of HCV Core protein and infectious HCV virions on HIV LTR activity.
Main Results:
- HIV LTR was highly induced by HIV Tat protein in hepatocytes, influenced by NF-kB binding sites.
- HCV Core protein suppressed HIV LTR activity, even with TNFα stimulation.
- Infectious HCV virions, however, upregulated HIV LTR activation and gene transcription.
Conclusions:
- HCV may accelerate HIV disease progression in co-infected patients.
- HCV Core protein's suppressive effect is independent of NS3/4A protein.
- Further research is needed to elucidate mechanisms and develop targeted therapies for HIV/HCV co-infection.
Abstract:
Hepatitis C virus (HCV) co-infection occurs in ∼30-40% of the HIV-infected population in the US. While a significant body of research suggests an adverse effect of HIV on HCV replication and disease progression, the impact of HCV on HIV infection has not been well studied. Increasing data suggest that hepatocytes and other liver cell populations can serve as reservoirs for HIV replication. Therefore, to gain insight into the impact of HCV on HIV, the effects of the HCV Core protein and infectious hepatitis C virions were evaluated on basal and Tat-induced activation of the HIV long terminal repeat (LTR) in hepatocytes. The HIV LTR was highly induced by the HIV transactivator protein Tat in hepatocytes. Activation varied according to the number of NF-kB binding sites present in the LTRs from different HIV subtypes. Involvement of the NF-kB binding pathway in LTR activation was demonstrated using an NF-kB inhibitor and deletion of the NF-kB binding sites. TNFα, a pro-inflammatory cytokine that plays an important role in HIV pathogenesis, also induced LTR activity in hepatocytes. However, HIV LTR activity was suppressed in hepatocytes in the presence of HCV Core protein, and the suppressive effect persisted in the presence of TNFα. In contrast, infectious hepatitis C virions upregulated HIV LTR activation and gene transcription. Core-mediated suppression remained unaltered in the presence of HCV NS3/4A protein, suggesting the involvement of other viral/cellular factors. These findings have significant clinical implications as they imply that HCV could accelerate HIV disease progression in HIV/HCV co-infected patients. Such analyses are important to elucidate the mechanisms by which these viruses interact and could facilitate the development of more effective therapies to treat HIV/HCV co-infection.
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