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Abrogation of p53-induced apoptosis by the hepatitis B virus X gene
X W Wang1, M K Gibson, W Vermeulen
1Laboratory of Human Carcinogenesis, National Cancer Institute, NIH, Besthesda, Maryland 20892-4255, USA.
Abstract:
The p53 tumor suppressor gene product is a transcriptional transactivator and a potent apoptotic inducer. The fact that many of the DNA tumor virus oncoproteins bind to p53 and affect these p53 functions indicates that this interaction is an important step in oncogenic transformation. We and others have recently demonstrated that the hepatitis B virus oncoprotein, HBx, can form a complex with p53 and inhibit its DNA consensus sequence binding and transcriptional transactivator activity. Using a microinjection technique, we report here that HBx efficiently blocks p53-mediated apoptosis and describe the results of studies exploring two possible mechanisms of HBx action. First, inhibition of apoptosis may be a consequence of the failure of p53, in the presence of HBx, to upregulate genes, such as p21WAF1, Bax, or Fas, that are involved in the apoptotic pathway. Data consistent with this hypothesis include HBx reduction of p53-mediated p21WAF1 expression. Alternatively, HBx could affect p53 binding to the TFIIH transcription-nucleotide excision repair complex as HBx binds to the COOH terminus of p53 and inhibits its binding to XPB or XPD. Binding of p53 to these constituents of the core TFIIH is a process that may be involved in apoptosis. Because the HBx gene is frequently integrated into the genome of hepatocellular carcinoma cells, inhibition of p53-mediated apoptosis by HBx may provide a clonal selective advantage for hepatocytes expressing this integrated viral gene during the early stages of human liver carcinogenesis.
Insights
The hepatitis B virus oncoprotein HBx inhibits p53-mediated apoptosis, a key tumor suppressor function. This inhibition may promote liver cancer by allowing cells with integrated HBx to survive.
Area of Science:
- Molecular Biology
- Virology
- Cancer Research
Background:
- The p53 protein is a crucial tumor suppressor that induces apoptosis.
- Viral oncoproteins often interact with p53, disrupting its function during oncogenesis.
- The hepatitis B virus oncoprotein, HBx, is known to complex with p53.
Purpose of the Study:
- To investigate how HBx affects p53-mediated apoptosis.
- To explore the mechanisms by which HBx inhibits p53's apoptotic function.
- To understand the role of HBx in hepatocellular carcinoma development.
Main Methods:
- Microinjection technique to study HBx and p53 interactions.
- Analysis of p53-regulated gene expression (e.g., p21WAF1, Bax, Fas).
- Investigation of HBx binding to p53 and its effect on the TFIIH complex.
Main Results:
- HBx efficiently blocks p53-mediated apoptosis.
- HBx reduces p53-induced expression of apoptosis-related genes like p21WAF1.
- HBx interferes with p53 binding to the TFIIH complex components XPB and XPD.
Conclusions:
- HBx inhibits p53-mediated apoptosis through multiple mechanisms, including blocking gene upregulation and disrupting TFIIH complex binding.
- HBx-mediated inhibition of apoptosis may confer a selective advantage to hepatocytes during early liver carcinogenesis.
- Understanding HBx-p53 interactions is vital for comprehending hepatocellular carcinoma pathogenesis.