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Published on: August 21, 2013
Mutant p53L194F Harboring Luminal-A Breast Cancer Cells Are Refractory to Apoptosis and Cell Cycle Arrest in Response
Ahmed Elwakeel1,2, Anissa Nofita Sari1,2, Jaspreet Kaur Dhanjal1,3
1AIST-INDIA DAILAB, National Institute of Advanced Industrial Science & Technology (AIST), Tsukuba, Ibaraki 305-8565, Japan.
Abstract:
We previously performed a drug screening to identify a potential inhibitor of mortalin-p53 interaction. In four rounds of screenings based on the shift in mortalin immunostaining pattern from perinuclear to pan-cytoplasmic and nuclear enrichment of p53, we had identified MortaparibPlus (4-[(1E)-2-(2-phenylindol-3-yl)-1-azavinyl]-1,2,4-triazole) as a novel synthetic small molecule. In order to validate its activity and mechanism of action, we recruited Luminal-A breast cancer cells, MCF-7 (p53wild type) and T47D (p53L194F) and performed extensive biochemical and immunocytochemical analyses. Molecular analyses revealed that MortaparibPlus is capable of abrogating mortalin-p53 interaction in both MCF-7 and T47D cells. Intriguingly, upregulation of transcriptional activation function of p53 (as marked by upregulation of the p53 effector gene-p21-responsible for cell cycle arrest and apoptosis) was recorded only in MortaparibPlus-treated MCF-7 cells. On the other hand, MortaparibPlus-treated T47D cells exhibited hyperactivation of PARP1 (accumulation of PAR polymer and decrease in ATP levels) as a possible non-p53 tumor suppression program. However, these cells did not show full signs of either apoptosis or PAR-Thanatos. Molecular analyses attributed such a response to the inability of MortaparibPlus to disrupt the AIF-mortalin complexes; hence, AIF did not translocate to the nucleus to induce chromatinolysis and DNA degradation. These data suggested that the cancer cells possessing enriched levels of such complexes may not respond to MortaparibPlus. Taken together, we report the multimodal anticancer potential of MortaparibPlus that warrants further attention in laboratory and clinical studies.
Insights
MortaparibPlus, a novel small molecule, inhibits mortalin-p53 interaction in breast cancer cells. It shows potential for cell cycle arrest in MCF-7 cells but limited apoptosis in T47D cells due to AIF-mortalin complexes.
Area of Science:
- Molecular Oncology
- Drug Discovery
- Cancer Therapeutics
Background:
- The interaction between mortalin and p53 is a target for cancer therapy.
- A novel small molecule, MortaparibPlus, was identified through drug screening.
- Understanding MortaparibPlus's mechanism in different breast cancer subtypes is crucial.
Purpose of the Study:
- To validate the activity and mechanism of action of MortaparibPlus.
- To investigate MortaparibPlus's effect on mortalin-p53 interaction in MCF-7 and T47D cells.
- To explore differential cellular responses to MortaparibPlus based on p53 status and complex formation.
Main Methods:
- Drug screening and identification of MortaparibPlus.
- Biochemical and immunocytochemical analyses in MCF-7 (p53 wild type) and T47D (p53 L194F) cells.
- Molecular analyses of p53 effector genes, PARP1 activation, and AIF-mortalin complex disruption.
Main Results:
- MortaparibPlus abrogated mortalin-p53 interaction in both cell lines.
- MCF-7 cells showed p53 transcriptional activation (p21 upregulation), leading to cell cycle arrest.
- T47D cells exhibited PARP1 hyperactivation but not full apoptosis due to intact AIF-mortalin complexes, hindering AIF translocation.
Conclusions:
- MortaparibPlus demonstrates multimodal anticancer potential by disrupting mortalin-p53 interaction.
- Differential responses observed highlight the role of p53 status and AIF-mortalin complexes in therapeutic efficacy.
- Further laboratory and clinical studies are warranted to explore MortaparibPlus as a cancer therapeutic.
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