Type-I interferon signaling through ISGF3 complex is required for sustained Rip3 activation and necroptosis in
Scott McComb1, Erin Cessford2, Norah A Alturki2
1Department of Biochemistry, Microbiology and Immunology, Faculty of Medicine, University of Ottawa, Ottawa, ON, Canada K1N 6N5;Department of Oncology, University Children's Hospital, University of Zurich, 8032 Zürich, Switzerland;
Abstract:
Myeloid cells play a critical role in perpetuating inflammation during various chronic diseases. Recently the death of macrophages through programmed necrosis (necroptosis) has emerged as an important mechanism in inflammation and pathology. We evaluated the mechanisms that lead to the induction of necrotic cell death in macrophages. Our results indicate that type I IFN (IFN-I) signaling is a predominant mechanism of necroptosis, because macrophages deficient in IFN-α receptor type I (IFNAR1) are highly resistant to necroptosis after stimulation with LPS, polyinosinic-polycytidylic acid, TNF-α, or IFN-β in the presence of caspase inhibitors. IFN-I-induced necroptosis occurred through both mechanisms dependent on and independent of Toll/IL-1 receptor domain-containing adaptor inducing IFN-β (TRIF) and led to persistent phosphorylation of receptor-interacting protein 3 (Rip3) kinase, which resulted in potent necroptosis. Although various IFN-regulatory factors (IRFs) facilitated the induction of necroptosis in response to IFN-β, IRF-9-STAT1- or -STAT2-deficient macrophages were highly resistant to necroptosis. Our results indicate that IFN-β-induced necroptosis of macrophages proceeds through tonic IFN-stimulated gene factor 3 (ISGF3) signaling, which leads to persistent expression of STAT1, STAT2, and IRF9. Induction of IFNAR1/Rip3-dependent necroptosis also resulted in potent inflammatory pathology in vivo. These results reveal how IFN-I mediates acute inflammation through macrophage necroptosis.
Insights
Type I interferon (IFN-I) signaling drives programmed cell death (necroptosis) in macrophages, a key driver of chronic inflammation. This IFN-I-mediated necroptosis involves specific signaling pathways and contributes to inflammatory pathology in vivo.
Area of Science:
- Immunology
- Cell Biology
- Molecular Medicine
Background:
- Myeloid cells, particularly macrophages, are central to chronic inflammation.
- Programmed necrosis (necroptosis) in macrophages is an emerging mechanism in inflammatory diseases.
Purpose of the Study:
- To elucidate the mechanisms inducing necrotic cell death in macrophages.
- To investigate the role of type I interferon (IFN-I) signaling in macrophage necroptosis.
Main Methods:
- Macrophage cell cultures stimulated with various inflammatory agents.
- Genetic deficiency models (e.g., IFNAR1, TRIF, IRF9, STAT1, STAT2 knockout).
- Analysis of necroptosis induction and signaling pathway activation (e.g., Rip3 phosphorylation).
Main Results:
- Type I IFN (IFN-I) signaling is a predominant inducer of macrophage necroptosis.
- Macrophages lacking IFN-α receptor type I (IFNAR1) showed resistance to necroptosis.
- IFN-I-induced necroptosis involved both TRIF-dependent and -independent pathways, leading to sustained Rip3 phosphorylation.
- IRF-9, STAT1, and STAT2 are crucial for IFN-β-induced necroptosis via ISGF3 signaling.
- IFNAR1/Rip3-dependent necroptosis induced significant inflammatory pathology in vivo.
Conclusions:
- Type I IFN (IFN-I) signaling is a critical mediator of macrophage necroptosis.
- IFN-I-induced necroptosis contributes to inflammatory pathology.
- Understanding this pathway offers potential therapeutic targets for inflammatory diseases.
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