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p53-dependent transcriptional repression of p21(waf1) by hepatitis C virus NS3
Hyun Jin Kwun1, Eun Young Jung1, Ji Young Ahn1
1Department of Microbiology, College of Natural Sciences, Pusan National University, Pusan 609-735, Republic of Korea1.
Abstract:
Hepatitis C virus (HCV) NS3 protein is known to affect normal cellular functions, such as cell proliferation and cell death, and to be involved, either directly or indirectly, in HCV hepatocarcinogenesis. In this study, we demonstrated that NS3 protein could specifically repress the promoter activity of p21 in a dose-dependent manner. The effect was not cell type-specific and was synergistic when combined with HCV core protein. Repression of the p21 promoter by NS3 was almost completely lost when p53 binding sites present on the p21 promoter were removed. Furthermore, p53 binding sites were sufficient to confer a strong NS3 responsiveness to an heterologous promoter, suggesting that NS3 represses the transcription of p21 by modulating the activity of p53. Although the NS3 protein domain required for the majority of p21 repression was located on the protease domain, the proteinase activity itself does not seem to be necessary for repression. Both transcription and protein stability of p53 were unaffected by NS3, suggesting that NS3 might repress transcription of p21 by inhibiting the regulatory activity of p53 via protein-protein interaction(s). Finally, the growth rate of NS3-expressing cell lines was at least twice as fast as that of the parent NIH 3T3 cells, indicating that the repression of p21 is actually reflected by the stimulation of cell growth.
Insights
Hepatitis C virus NS3 protein represses p21 promoter activity, impacting cell growth. This repression involves p53 modulation, suggesting a role in HCV-related liver cancer development.
Area of Science:
- Hepatology
- Molecular Biology
- Virology
Background:
- Hepatitis C virus (HCV) NS3 protein influences cellular functions and is implicated in liver cancer.
- The p21 gene is a key regulator of cell cycle progression and is often dysregulated in cancer.
Purpose of the Study:
- To investigate the effect of HCV NS3 protein on p21 promoter activity.
- To elucidate the mechanism by which NS3 modulates p21 expression and its impact on cell growth.
Main Methods:
- Reporter gene assays to measure p21 promoter activity.
- Site-directed mutagenesis to assess the role of p53 binding sites.
- Co-expression studies with HCV core protein.
- Cell proliferation assays in NS3-expressing cells.
Main Results:
- HCV NS3 protein dose-dependently repressed p21 promoter activity.
- Repression was dependent on p53 binding sites within the p21 promoter.
- NS3 synergized with HCV core protein to repress p21.
- NS3 protease activity was not required for p21 repression.
- NS3 expression accelerated cell growth, correlating with p21 repression.
Conclusions:
- HCV NS3 protein represses p21 transcription, likely by interacting with p53.
- This NS3-mediated repression of p21 contributes to increased cell proliferation, potentially promoting HCV-associated hepatocarcinogenesis.