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RITA can induce cell death in p53-defective cells independently of p53 function via activation of JNK/SAPK and p38
A Weilbacher1, M Gutekunst1, M Oren2
1Dr Margarete Fischer-Bosch Institute of Clinical Pharmacology and University of Tuebingen, Auerbachstrasse 112, Stuttgart, Germany.
Abstract:
Significant advances have been made in the development of small molecules blocking the p53/MDM2 interaction. The Mdm2 inhibitor Nutlin-3 is restricted to tumors carrying wtp53. In contrast, RITA, a compound that binds p53, has recently been shown also to restore transcriptional functions of mtp53. As more than 50% of solid tumors carry p53 mutations, RITA promises to be a more effective therapeutic strategy than Nutlin-3. We investigated effects of RITA on apoptosis, cell cycle and induction of 45 p53 target genes in a panel of 14 cell lines from different tumor entities with different p53 status as well as primary lymphocytes and fibroblasts. Nine cell strains expressed wtp53, four harbored mtp53, and three were characterized by the loss of p53 protein. A significant induction of cell death upon RITA was observed in 7 of 16 cell lines. The nonmalignant cells in our panel were substantially less sensitive. We found that in contrast to Nultin-3, RITA is capable to induce cell death not only in tumor cells harboring wtp53 and mtp53 but also in p53-null cells. Importantly, whereas p53 has a central role for RITA-mediated effects in wtp53 cells, neither p53 nor p63 or p73 were essential for the RITA response in mtp53 or p53-null cells in our panel demonstrating that besides the known p53-dependent action of RITA in wtp53 cells, RITA can induce cell death also independently of p53 in cells harboring defective p53. We identified an important role of both p38 and JNK/SAPK for sensitivity to RITA in these cells leading to a typical caspase- and BAX/BAK-dependent mitochondrial apoptosis. In conclusion, our data demonstrate that RITA can induce apoptosis through p38 and JNK/SAPK not only in tumor cells harboring wtp53 and mtp53 but also in p53-null cells, making RITA an interesting tumor-selective drug.
Insights
RITA, a p53-binding compound, induces cell death in various cancer cells, including those with wild-type, mutated, or no p53 protein. This p53-independent apoptosis pathway offers a promising cancer therapeutic strategy.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- p53 protein is frequently mutated in solid tumors.
- MDM2 inhibitors like Nutlin-3 are effective only in tumors with wild-type p53.
- RITA, a p53-binding compound, shows potential for broader therapeutic application.
Purpose of the Study:
- To investigate the effects of RITA on apoptosis and gene expression in cancer cell lines with varying p53 statuses.
- To compare RITA's efficacy with Nutlin-3.
- To elucidate the mechanisms of RITA-induced cell death.
Main Methods:
- Treatment of 14 cancer cell lines and primary cells with RITA.
- Analysis of apoptosis, cell cycle, and p53 target gene induction.
- Assessment of p53, p63, and p73 involvement.
- Investigation of signaling pathways (p38, JNK/SAPK) and mitochondrial apoptosis.
Main Results:
- RITA induced significant cell death in 7 of 16 cell lines, with less sensitivity in nonmalignant cells.
- RITA effectively induced cell death in tumor cells with wild-type p53, mutated p53, and p53-null status.
- RITA-mediated apoptosis in p53-mutated or p53-null cells occurred independently of p53, p63, or p73.
- p38 and JNK/SAPK pathways were crucial for RITA sensitivity, leading to caspase- and BAX/BAK-dependent mitochondrial apoptosis.
Conclusions:
- RITA induces apoptosis through p53-dependent and independent mechanisms.
- RITA activates p38 and JNK/SAPK signaling, resulting in mitochondrial apoptosis.
- RITA demonstrates potential as a tumor-selective drug for a broad range of cancers, including those with p53 alterations.
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