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OAS1/RNase L executes RIG-I ligand-dependent tumor cell apoptosis
Daniel F R Boehmer1,2, Simone Formisano2, Carina C de Oliveira Mann3
1Department of Medicine II, University Hospital, LMU Munich, 81377 Munich, Germany.
Abstract:
Cytoplasmic double-stranded RNA is sensed by RIG-I-like receptors (RLRs), leading to induction of type I interferons (IFN-Is), proinflammatory cytokines, and apoptosis. Here, we elucidate signaling mechanisms that lead to cytokine secretion and cell death induction upon stimulation with the bona fide RIG-I ligand 5'-triphosphate RNA (3p-RNA) in tumor cells. We show that both outcomes are mediated by dsRNA-receptor families with RLR being essential for cytokine production and IFN-I-mediated priming of effector pathways but not for apoptosis. Affinity purification followed by mass spectrometry and subsequent functional analysis revealed that 3p-RNA bound and activated oligoadenylate synthetase 1 and RNase L. RNase L-deficient cells were profoundly impaired in their ability to undergo apoptosis. Mechanistically, the concerted action of translational arrest triggered by RNase L and up-regulation of NOXA was needed to deplete the antiapoptotic MCL-1 to cause intrinsic apoptosis. Thus, 3p-RNA-induced apoptosis is a two-step process consisting of RIG-I-dependent priming and an RNase L-dependent effector phase.
Insights
Double-stranded RNA triggers tumor cell death through RIG-I-like receptors and RNase L. RIG-I primes cells, while RNase L executes apoptosis by degrading MCL-1, revealing a two-step cell death pathway.
Area of Science:
- Immunology
- Molecular Biology
- Cell Biology
Background:
- Cytoplasmic double-stranded RNA (dsRNA) is recognized by RIG-I-like receptors (RLRs).
- RLR activation induces type I interferons (IFN-Is), pro-inflammatory cytokines, and apoptosis.
- Tumor cells are a key target for immune-mediated destruction.
Purpose of the Study:
- To elucidate the signaling mechanisms by which 5'-triphosphate RNA (3p-RNA), a RIG-I ligand, induces cytokine secretion and apoptosis in tumor cells.
- To differentiate the roles of RLRs and other dsRNA sensors in these cellular responses.
Main Methods:
- Affinity purification coupled with mass spectrometry to identify 3p-RNA binding proteins.
- Functional assays using RNase L-deficient cells to assess apoptosis induction.
- Analysis of apoptotic pathways, including NOXA and MCL-1 expression.
Main Results:
- RIG-I-like receptors (RLRs) are essential for cytokine production and IFN-I-mediated priming but not for 3p-RNA-induced apoptosis.
- 3p-RNA directly binds and activates oligoadenylate synthetase 1 (OAS1) and RNase L.
- RNase L deficiency significantly impairs 3p-RNA-induced apoptosis, which requires translational arrest and NOXA upregulation to deplete MCL-1.
Conclusions:
- 3p-RNA-induced apoptosis in tumor cells is a two-step process.
- The first step involves RIG-I-dependent priming of effector pathways.
- The second step is an RNase L-dependent effector phase leading to intrinsic apoptosis.
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