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mTOR kinase inhibitor pp242 causes mitophagy terminated by apoptotic cell death in E1A-Ras transformed cells
Serguei A Gordeev1,2, Tatiana V Bykova1,2, Svetlana G Zubova1
1Institute of Cytology, Russian Academy of Sciences, St. Petersburg, Russia.
Abstract:
mTOR is a critical target for controlling cell cycle progression, senescence and cell death in mammalian cancer cells. Here we studied the role of mTOR-dependent autophagy in implementating the antiprolifrative effect of mTORC1-specific inhibitor rapamycin and ATP-competitive mTOR kinase inhibitor pp242. We carried out a comprehensive analysis of pp242- and rapamycin-induced autophagy in ERas tumor cells. Rapamycin exerts cytostatic effect on ERas tumor cells, thus causing a temporary and reversible cell cycle arrest, activation of non-selective autophagy not accompanied by cell death. The rapamycin-treated cells are able to continue proliferation after drug removal. The ATP-competitive mTORC1/mTORC2 kinase inhibitor pp242 is highly cytotoxic by suppressing the function of mTORC1-4EBP1 axis and mTORC1-dependent phosphorylation of mTORC1 target--ULK1-Ser757 (Atg1). In contrast to rapamycin, pp242 activates the selective autophagy targeting mitochondria (mitophagy). The pp242-induced mitophagy is accompanied by accumulation of LC3 and conversion of LC3-I form to LC3-II. However reduced degradation of p62/SQSTM indicates abnormal flux of autophagic process. According to transmission electron microscopy data, short-term pp242-treated ERas cells exhibit numerous heavily damaged mitochondria, which are included in single membrane-bound autophagic/autolysophagic vacuoles (mitophagy). Despite the lack of typical for apoptosis features, ERas-treated cells with induced mitophagy revealed the activation of caspase 3, 9 and nucleosomal DNA fragmentation. Thus, pp242 activates autophagy with suppressed later stages, leading to impaired recycling and accumulation of dysfunctional mitochondria and cell death. Better understanding of how autophagy determines the fate of a cell--survival or cell death, can help to development of new strategy for cancer therapy.
Insights
The mTOR inhibitor pp242 induces selective mitophagy and cell death in cancer cells by disrupting autophagy, unlike rapamycin which causes temporary cell cycle arrest. Understanding autophagy
Area of Science:
- Cell Biology
- Cancer Research
- Molecular Oncology
Background:
- Mammalian target of rapamycin (mTOR) is crucial for cell cycle, senescence, and death in cancer.
- Autophagy plays a key role in mediating the effects of mTOR inhibitors.
Purpose of the Study:
- To investigate the distinct roles of mTOR-dependent autophagy in response to rapamycin and pp242 in ERas tumor cells.
- To elucidate the mechanisms by which these inhibitors induce cell death or cytostatic effects.
Main Methods:
- Comprehensive analysis of autophagy induction by pp242 and rapamycin.
- Assessment of cell cycle progression, cell death markers, and mitochondrial integrity.
- Transmission electron microscopy and Western blotting for autophagic markers (LC3, p62/SQSTM).
Main Results:
- Rapamycin induced reversible cell cycle arrest and non-selective autophagy without cell death.
- pp242, an ATP-competitive inhibitor, triggered cytotoxic effects via selective mitophagy and impaired autophagic flux.
- pp242-treated cells showed damaged mitochondria, LC3-II accumulation, reduced p62/SQSTM degradation, and caspase activation, leading to cell death.
Conclusions:
- pp242 induces cancer cell death through autophagy with suppressed later stages, leading to mitochondrial dysfunction.
- Autophagy's role in determining cell fate (survival vs. death) is critical for developing novel cancer therapies.
- Targeting specific autophagic pathways offers a promising strategy for cancer treatment.
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