An antibiotic that mediates immune destruction of senescent cancer cells

Drugs that eliminate senescent cells, senolytics, can be powerful when combined with prosenescence cancer therapies. Using a CRISPR/Cas9-based genetic screen, we identify here SLC25A23 as a vulnerability of senescent cancer cells. Suppressing SLC25A23 disrupts cellular calcium homeostasis, impairs o...

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Veröffentlicht in:Proceedings of the National Academy of Sciences - PNAS 2024-12, Vol.121 (52), p.e2417724121
Hauptverfasser: Casagrande Raffi, Gabriele, Chen, Jian, Feng, Xuezhao, Chen, Zhen, Lieftink, Cor, Deng, Shuang, Mo, Jinzhe, Zeng, Chuting, Steur, Marit, Wang, Jing, Bleijerveld, Onno B, Hoekman, Liesbeth, van der Wel, Nicole, Wang, Feng, Beijersbergen, Roderick, Zheng, Jian, Bernards, Rene, Wang, Liqin
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Sprache:eng
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Zusammenfassung:Drugs that eliminate senescent cells, senolytics, can be powerful when combined with prosenescence cancer therapies. Using a CRISPR/Cas9-based genetic screen, we identify here SLC25A23 as a vulnerability of senescent cancer cells. Suppressing SLC25A23 disrupts cellular calcium homeostasis, impairs oxidative phosphorylation, and interferes with redox signaling, leading to death of senescent cells. These effects can be replicated by salinomycin, a cation ionophore antibiotic. Salinomycin prompts a pyroptosis-apoptosis-necroptosis (PAN)optosis-like cell death in senescent cells, including apoptosis and two forms of immunogenic cell death: necroptosis and pyroptosis. Notably, we observed that salinomycin treatment or SLC25A23 suppression elevates reactive oxygen species, upregulating death receptor 5 via Jun N-terminal protein kinase (JNK) pathway activation. We show that a combination of a death receptor 5 (DR5) agonistic antibody and salinomycin is a robust senolytic cocktail. We provide evidence that this drug combination provokes a potent natural killer (NK) and CD8+ T cell-mediated immune destruction of senescent cancer cells, mediated by the pyroptotic cytokine interleukin 18 (IL18).
ISSN:0027-8424
1091-6490
1091-6490
DOI:10.1073/pnas.2417724121