Dysfunctional autophagy induced by the pro-apoptotic natural compound climacostol in tumour cells

Silvia Zecchini1, Francesca Proietti Serafini2, Elisabetta Catalani2

  • 1Unit of Clinical Pharmacology, University Hospital "Luigi Sacco"-ASST Fatebenefratelli Sacco, Milano, Italy.

Cell Death & Disease
|December 26, 2018
PubMed

Insights

Climacostol, a natural compound, disrupts autophagy in tumor cells by affecting the p53-AMPK pathway, leading to autophagosome accumulation. This action is separate from its apoptosis-inducing effects, suggesting dual targeting potential for cancer therapy.

Area of Science:

  • Cell Biology
  • Molecular Oncology
  • Natural Product Chemistry

Background:

  • Autophagy is a cellular process involved in survival and death pathways, making it a target for anti-cancer drug development.
  • Climacostol, a natural product from Climacostomum virens, has shown cytotoxic and pro-apoptotic effects by targeting the tumor suppressor p53.
  • Understanding climacostol's regulation of autophagy is crucial for exploring its therapeutic potential.

Purpose of the Study:

  • To investigate how climacostol regulates autophagy in cancer cells.
  • To elucidate the involvement of p53-dependent mechanisms in climacostol's effect on autophagy.
  • To explore the relationship between climacostol's impact on autophagy and apoptosis.

Main Methods:

  • In vitro and in vivo experiments were conducted on multiple tumor cell types, including B16-F10 mouse melanomas.
  • Mechanistic studies focused on the p53-AMPK and mTOR pathways.
  • Analysis included assessment of autophagosome accumulation, p53 protein levels, and AMPK activation.

Main Results:

  • Climacostol potently and selectively impairs autophagy in apoptotic tumor cells, causing autophagosome accumulation.
  • Climacostol affects autophagosome turnover via the p53-AMPK axis, with mTOR also playing a role independent of p53.
  • Climacostol activates p53, increasing nuclear p53 protein levels through translational effects like Ser15 phosphorylation.
  • AMPKα activation is primarily responsible for disrupting autophagy, distinct from cell death induction.

Conclusions:

  • Climacostol's effects on autophagy and apoptosis are separate events influencing cell fate.
  • The p53 system is a key regulator of both climacostol's anti-autophagic and pro-apoptotic actions.
  • Targeting both autophagy and apoptosis via p53 activation presents a promising strategy for selective tumor killing.
  • Bioactive molecules from ciliates like Climacostomum virens are valuable sources for novel anti-cancer drug discovery.

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