Apoptotic response of malignant rhabdoid tumor cells

Silvano Nocentini1

  • 1UMR 218 CNRS, Institut Curie, Institut Curie - Section de Recherche, 26 rue d'Ulm, 75248 Paris Cedex 05, France. Silvano.Nocentini@curie.fr

Insights

Malignant rhabdoid tumor cells resist apoptosis due to p53 pathway and survival factor signaling pathway dysfunctions. Combining treatments synergistically induced apoptosis, offering potential new therapeutic strategies for these aggressive cancers.

Area of Science:

  • Oncology
  • Molecular Biology
  • Cancer Research

Background:

  • Malignant rhabdoid tumors (MRTs) are aggressive cancers resistant to conventional therapies.
  • Understanding MRT cell apoptosis is crucial for developing effective treatments.

Purpose of the Study:

  • To investigate the apoptotic response of MRT cells (MON cell line) to various genotoxic and non-genotoxic agents.
  • To identify potential therapeutic targets by analyzing signaling pathways involved in MRT resistance.

Main Methods:

  • Exposure of MON cells to etoposide, cisplatin, X-rays, ultraviolet C (UVC) irradiation, vinblastine, and wortmannin (PI3-K inhibitor).
  • Analysis of chromatin morphology, DNA fragmentation, p53 protein levels, downstream effectors (p21WAF1/CIP1, Mdm2, Bax), and PARP cleavage.
  • Assessment of synergistic effects on apoptosis and cell growth inhibition.

Main Results:

  • MON cells showed resistance to apoptosis induced by etoposide, cisplatin, and X-rays, but responded to UVC irradiation.
  • Concomitant treatment with X-rays or vinblastine and wortmannin synergistically induced apoptosis and inhibited cell growth.
  • p53 protein was upregulated, but downstream effectors showed inconsistent induction; PARP cleavage was observed with synergistic treatments and UVC irradiation.

Conclusions:

  • MRTs exhibit abnormalities in the p53 pathway and apoptosis control.
  • The Ras/PI3-K/AKT signaling pathway may be deregulated, promoting survival in MRT cells.
  • These dysfunctions contribute to treatment resistance and suggest novel therapeutic strategies targeting these pathways.

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