Specific targeting of caspase-9/PP2A interaction as potential new anti-cancer therapy

Issam Arrouss1, Fariba Nemati, Fernando Roncal

  • 1Inserm UMRS 945, Hôpital Pitié Salpêtrière, Université Pierre et Marie Curie, Paris, France.

Plos One
|May 3, 2013
PubMed
Abstract

Insights

A novel cell-penetrating peptide, DPT-C9h, effectively disrupts the caspase-9/PP2A interaction, inducing cancer cell apoptosis and inhibiting tumor growth in vivo without observed toxicity.

Area of Science:

  • Biochemistry
  • Molecular Biology
  • Oncology

Background:

  • Protein phosphatase 2A (PP2A) is crucial for cellular processes like apoptosis.
  • Disrupting the interaction between caspase-9 and PP2A presents a potential therapeutic strategy for cancer.
  • Cell-penetrating peptides (CPPs) offer a means to deliver therapeutic molecules intracellularly.

Purpose of the Study:

  • To develop and evaluate cell-penetrating fusion peptides designed to inhibit the caspase-9/PP2A interaction.
  • To assess the therapeutic efficacy of these peptides in preclinical cancer models.

Main Methods:

  • A fusion peptide, DPT-C9h, was engineered by linking a CPP to the caspase-9/PP2A interaction motif.
  • In vitro studies utilized cancer cell lines and primary human cells.
  • In vivo efficacy was tested in breast cancer xenografts, lung, and breast cancer mouse models.

Main Results:

  • DPT-C9h specifically targeted and disrupted the caspase-9/PP2A interaction in vitro and in vivo.
  • The peptide induced caspase-9-dependent apoptosis in cancer cell lines and significant tumor growth inhibition (TGI) in xenograft models.
  • DPT-C9h demonstrated specific efficacy against transformed B cells from chronic lymphocytic leukemia patients, with no adverse effects on healthy cells.

Conclusions:

  • Cell-penetrating peptides blocking caspase-9/PP2A interactions, such as DPT-C9h, exhibit significant therapeutic potential.
  • DPT-C9h demonstrated strong in vitro and in vivo anti-tumor effects in preclinical models.
  • The findings support the development of CPP-based therapies targeting specific protein-protein interactions in cancer treatment.

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