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MDM-2 antagonists induce p53-dependent cell cycle arrest but not cell death in renal cancer cell lines
1Department of Genitourinary Medical Oncology, University of Texas Health Science Center, Houston, TX, USA.
Abstract:
Renal cell cancers (RCC) are notoriously resistant to chemotherapy and radiotherapy. While mutations of the p53 tumor suppressor gene frequently contribute to therapy resistance in other epithelial cancers, p53 mutations are relatively rare in RCC. To date, there is conflicting evidence as to whether p53 signaling and function are otherwise proficient or defective in tumors with wild-type p53. In this study, we assayed p53 function in a series of RCC cell lines and normal proximal epithelial tubule cells using two different MDM-2 antagonists, Nutlin-3a and MI-219. Most cell lines with wild-type p53 responded to MDM-2 antagonists as evidenced by induction of p53 and its target gene p21. RCC cell lines treated with MDM-2 antagonists consistently accumulated in the G2/M phase of the cell cycle and this event was associated with inhibition of proliferation in RCC cell lines but not in normal proximal epithelial tubule cells. MDM-2 antagonists did not induce significant cell death in RCC cell lines, even with induction of p53-dependent pro-apoptotic genes. In contrast, MDM-2 antagonists caused significant cell death in LNCaP prostate adenocarcinoma cells. RCC cell lines with reduced p53, either by mutation or through ectopic expression of p53 shRNA, demonstrated enhanced sensitivity to cell death following sequential treatment with DNA damage and G2/M checkpoint abrogation. Our results suggest that wild-type p53 RCC cell lines are proficient in p53-dependent cell cycle arrest but defective in p53-dependent cell death.
Insights
Renal cell carcinoma (RCC) cells with functional p53 can arrest the cell cycle but fail to undergo cell death. This suggests p53-dependent cell death pathways are defective in wild-type p53 RCC.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Renal cell carcinoma (RCC) exhibits resistance to conventional therapies.
- p53 tumor suppressor gene mutations are infrequent in RCC, unlike other cancers.
- The functional status of p53 signaling in wild-type p53 RCC remains unclear.
Purpose of the Study:
- To investigate the p53 pathway function in wild-type p53 renal cell carcinoma (RCC) cells.
- To determine the response of RCC cells to MDM-2 antagonists, which modulate p53 activity.
Main Methods:
- Assayed p53 function in RCC cell lines and normal kidney tubule cells using MDM-2 antagonists (Nutlin-3a, MI-219).
- Monitored p53 induction, p21 expression, cell cycle progression (G2/M arrest), proliferation, and cell death.
- Utilized p53 shRNA to assess the role of p53 in drug sensitivity.
Main Results:
- Wild-type p53 RCC cell lines showed p53 and p21 induction upon MDM-2 antagonist treatment.
- RCC cells accumulated in G2/M phase and exhibited inhibited proliferation, unlike normal cells.
- MDM-2 antagonists did not induce significant cell death in RCC cells, despite activating pro-apoptotic genes.
- Prostate cancer cells (LNCaP) showed significant cell death with MDM-2 antagonists.
- Reduced p53 levels in RCC cells enhanced sensitivity to sequential DNA damage and G2/M abrogation treatments.
Conclusions:
- Wild-type p53 RCC cell lines possess proficient p53-dependent cell cycle arrest.
- These cell lines demonstrate a defect in p53-dependent cell death.
- Targeting p53-dependent cell death may offer therapeutic strategies for RCC.
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