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Pw1/Peg3 is a potential cell death mediator and cooperates with Siah1a in p53-mediated apoptosis
1The Derald H. Ruttenberg Cancer Center, The Brookdale Center for Molecular and Developmental Biology, The Mount Sinai Medical Center, New York, NY 10029, USA.
Abstract:
Induction of wild-type p53 in mouse fibroblasts causes cell cycle arrest at the G(1) phase, whereas coexpression of p53 and the protooncogene c-myc induces apoptosis. Although p53 transcriptional activity generally is required for both pathways, the molecular components mediating p53-dependent apoptosis are not well understood. To identify factors that could mediate p53-induced cell death, we used a comparative RNA differential display procedure. We have identified Pw1/Peg3 as a gene product induced during p53/c-myc-mediated apoptosis. Pw1/Peg3 is not induced during p53-mediated G(1) growth arrest nor by c-myc alone. Although it is not clear whether the induction of Pw1/Peg3 depends on p53 activity, we show that Pw1/Peg3 interacts with a p53-inducible gene product Siah1a. We demonstrate that coexpression of Pw1/Peg3 with Siah1a induces apoptosis independently of p53 whereas expression of Pw1/Peg3 or Siah1a separately has no effect on cell death. These data suggest that Siah1a and Pw1/Peg3 cooperate in the p53-mediated cell death pathway. Furthermore, we show that inhibiting Pw1/Peg3 activity blocks p53-induced apoptosis. The observation that Pw1/Peg3 is necessary for the p53 apoptotic response suggests a pivotal role for this gene in determining cell death versus survival.
Insights
The tumor suppressor p53 can induce cell cycle arrest or apoptosis. Researchers identified Pw1/Peg3 as crucial for p53-mediated apoptosis, working with Siah1a to trigger cell death.
Area of Science:
- Molecular Biology
- Cell Biology
- Oncology
Background:
- Wild-type p53 induces G1 cell cycle arrest in mouse fibroblasts.
- Coexpression of p53 and c-myc leads to apoptosis.
- The molecular mechanisms of p53-dependent apoptosis are not fully understood.
Purpose of the Study:
- To identify molecular factors mediating p53-induced cell death.
- To elucidate the role of Pw1/Peg3 in p53-mediated apoptosis.
Main Methods:
- Comparative RNA differential display to identify induced genes.
- Analysis of Pw1/Peg3 and Siah1a expression and interaction.
- Assessment of apoptosis induction upon coexpression of Pw1/Peg3 and Siah1a.
- Inhibition of Pw1/Peg3 activity to study its role in p53-induced apoptosis.
Main Results:
- Pw1/Peg3 was identified as a gene product induced during p53/c-myc-mediated apoptosis.
- Pw1/Peg3 is not induced by p53-mediated G1 arrest or c-myc alone.
- Pw1/Peg3 interacts with Siah1a, a p53-inducible protein.
- Coexpression of Pw1/Peg3 and Siah1a induces apoptosis independently of p53.
- Inhibition of Pw1/Peg3 blocks p53-induced apoptosis.
Conclusions:
- Pw1/Peg3 and Siah1a cooperate to induce apoptosis in the p53-mediated cell death pathway.
- Pw1/Peg3 is essential for p53-induced apoptosis, playing a critical role in cell fate determination.