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A Novel Late-Stage Autophagy Inhibitor That Efficiently Targets Lysosomes Inducing Potent Cytotoxic and Sensitizing
Adrià Molero-Valenzuela1, Pere Fontova2, Daniel Alonso-Carrillo2
1Department of Pathology and Experimental Therapeutics, Faculty of Medicine and Health Sciences, Universitat de Barcelona, L'Hospitalet de Llobregat, 08907 Barcelona, Spain.
Abstract:
Overcoming resistance is one of the most challenging features in current anticancer therapy. Autophagy is a cellular process that confers resistance in some advanced tumors, since it enables cancer cells to adapt to stressful situations, such as anticancer treatments. Hence, the inhibition of this cytoprotective autophagy leads to tumor cells sensitization and death. In this regard, we designed a novel potent anionophore compound that specifically targets lysosomes, called LAI-1 (late-stage autophagy inhibitor-1), and evaluated its role in blocking autophagy and its potential anticancer effects in three lung cancer cell lines from different histological subtypes. Compared to other autophagy inhibitors, such as chloroquine and 3-Methyladenine, the LAI-1 treatment induced more potent anticancer effects in all tested cancer cells. LAI-1 was able to efficiently target and deacidify lysosomes, while acidifying cytoplasmic pH. Consequently, LAI-1 efficiently blocked autophagy, indicated by the increased LC3-II/I ratio and p62/SQSTM1 levels. Moreover, no colocalization was observed between autophagosomes, marked with LC3 or p62/SQSTM1, and lysosomes, stained with LAMP-1, after the LAI-1 treatment, indicating the blockage of autophagolysosome formation. Furthermore, LAI-1 induced cell death by activating apoptosis (enhancing the cleavage of caspase-3 and PARP) or necrosis, depending on the cancer cell line. Finally, LAI-1 sensitized cancer cells to the first-line chemotherapeutic agent cisplatin. Altogether, LAI-1 is a new late-stage autophagy inhibitor that causes lysosomal dysfunction and the blockage of autophagolysosome formation, as well as potently induces cancer cell death and sensitization to conventional treatments at lower concentrations than other known autophagy inhibitors, appearing as a potential new therapeutic approach to overcome cancer resistance.
Insights
A novel compound, LAI-1, effectively inhibits late-stage autophagy by targeting lysosomes, leading to cancer cell death and increased sensitivity to chemotherapy, offering a new approach to overcome treatment resistance.
Area of Science:
- Oncology
- Cell Biology
- Biochemistry
Background:
- Cancer therapy faces challenges in overcoming drug resistance.
- Autophagy, a cellular survival mechanism, contributes to treatment resistance in advanced tumors.
- Inhibiting autophagy can sensitize cancer cells to therapy and promote cell death.
Purpose of the Study:
- To design and evaluate a novel lysosome-targeting compound, LAI-1 (late-stage autophagy inhibitor-1), for its ability to block autophagy and exert anticancer effects.
- To assess LAI-1's efficacy in lung cancer cell lines compared to existing autophagy inhibitors.
- To investigate LAI-1's mechanism of action, including lysosomal function, autophagy blockage, and induction of cell death.
Main Methods:
- LAI-1 was designed as a potent anionophore targeting lysosomes.
- Anticancer effects and autophagy inhibition were evaluated in three lung cancer cell lines.
- Lysosomal function, autophagolysosome formation (LC3, p62/SQSTM1, LAMP-1), apoptosis (caspase-3, PARP), necrosis, and chemosensitization to cisplatin were assessed.
Main Results:
- LAI-1 demonstrated more potent anticancer effects than chloroquine and 3-Methyladenine in tested lung cancer cells.
- LAI-1 successfully targeted lysosomes, deacidified them, and acidified the cytoplasm, blocking autophagy.
- LAI-1 inhibited autophagolysosome formation, induced apoptosis or necrosis, and sensitized cells to cisplatin.
Conclusions:
- LAI-1 is a novel late-stage autophagy inhibitor that induces lysosomal dysfunction and blocks autophagolysosome formation.
- LAI-1 effectively promotes cancer cell death and enhances sensitivity to conventional chemotherapy at lower concentrations.
- LAI-1 represents a promising therapeutic strategy for overcoming cancer resistance.
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