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Published on: June 30, 2023
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.
Abstract:
Autophagy occurs at a basal level in all eukaryotic cells and may support cell survival or activate death pathways. Due to its pathophysiologic significance, the autophagic machinery is a promising target for the development of multiple approaches for anti-neoplastic agents. We have recently described the cytotoxic and pro-apoptotic mechanisms, targeting the tumour suppressor p53, of climacostol, a natural product of the ciliated protozoan Climacostomum virens. We report here on how climacostol regulates autophagy and the involvement of p53-dependent mechanisms. Using both in vitro and in vivo techniques, we show that climacostol potently and selectively impairs autophagy in multiple tumour cells that are committed to die by apoptosis. In particular, in B16-F10 mouse melanomas climacostol exerts a marked and sustained accumulation of autophagosomes as the result of dysfunctional autophagic degradation. We also provide mechanistic insights showing that climacostol affects autophagosome turnover via p53-AMPK axis, although the mTOR pathway unrelated to p53 levels plays a role. In particular, climacostol activated p53 inducing the upregulation of p53 protein levels in the nuclei through effects on p53 stability at translational level, as for instance the phosphorylation at Ser15 site. Noteworthy, AMPKα activation was the major responsible of climacostol-induced autophagy disruption in the absence of a key role regulating cell death, thus indicating that climacostol effects on autophagy and apoptosis are two separate events, which may act independently on life/death decisions of the cell. Since the activation of p53 system is at the molecular crossroad regulating both the anti-autophagic action of climacostol and its role in the apoptosis induction, it might be important to explore the dual targeting of autophagy and apoptosis with agents acting on p53 for the selective killing of tumours. These findings also suggest the efficacy of ciliate bioactive molecules to identify novel lead compounds in drug discovery and development.
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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