Tumor cells suppress radiation-induced immunity by hijacking caspase 9 signaling
High-dose radiation activates caspases in tumor cells to produce abundant DNA fragments for DNA sensing in antigen-presenting cells, but the intrinsic DNA sensing in tumor cells after radiation is rather limited. Here we demonstrate that irradiated tumor cells hijack caspase 9 signaling to suppress...
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Veröffentlicht in: | Nature immunology 2020-05, Vol.21 (5), p.546-554 |
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Sprache: | eng |
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Zusammenfassung: | High-dose radiation activates caspases in tumor cells to produce abundant DNA fragments for DNA sensing in antigen-presenting cells, but the intrinsic DNA sensing in tumor cells after radiation is rather limited. Here we demonstrate that irradiated tumor cells hijack caspase 9 signaling to suppress intrinsic DNA sensing. Instead of apoptotic genomic DNA, tumor-derived mitochondrial DNA triggers intrinsic DNA sensing. Specifically, loss of mitochondrial DNA sensing in
Casp9
−/−
tumors abolishes the enhanced therapeutic effect of radiation. We demonstrated that combining emricasan, a pan-caspase inhibitor, with radiation generates synergistic therapeutic effects. Moreover, loss of CASP9 signaling in tumor cells led to adaptive resistance by upregulating programmed death-ligand 1 (PD-L1) and resulted in tumor relapse. Additional anti-PD-L1 blockade can further overcome this acquired immune resistance. Therefore, combining radiation with a caspase inhibitor and anti-PD-L1 can effectively control tumors by sequentially blocking both intrinsic and extrinsic inhibitory signaling.
Therapeutic irradiation can trigger DNA-sensing pathways and trigger antitumor immunity. Fu and colleagues demonstrate that tumors can co-opt intrinsic apoptotic pathways to avoid immunogenic cell death following irradiation. |
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ISSN: | 1529-2908 1529-2916 |
DOI: | 10.1038/s41590-020-0641-5 |