Complementary roles of FADD and RIPK3 in T cell homeostasis and antiviral immunity (163.24)

作者
Jennifer Lu,Brian M. Weist,Bram J. van Raam,Brett S. Marro,Long Nguyen,P. L. Srinivas,Bryan D. Bell,L Kirkwood Keith,Thomas E. Lane,Guy S. Salvesen,Craig M. Walsh
出处
期刊:Journal of Immunology [American Association of Immunologists]
卷期号:188 (1_Supplement): 163.24-163.24 被引量:4
标识
DOI:10.4049/jimmunol.188.supp.163.24
摘要

Abstract T cells lacking caspase 8 develop a hyper-autophagic morphology, and succumb to a programmed necrosis-like death process termed necroptosis. RIP kinases RIPK1 and RIPK3 together facilitate necroptosis in response to TNF-α ligation and mitogenic stimulation. We have previously shown the defective proliferation of T cells lacking caspase 8 activity is rescued by crossing with RIPK3-/- mice, and caspase-mediated cleavage of RIPK1/3 necrosis inducing complexes (necrosomes) is sufficient to prevent necroptosis. Enhanced recovery of these double-mutant T cells following stimulation demonstrates that caspase 8 and RIPK3 are essential for clonal expansion, contraction, and anti-viral responses, though such rescue ultimately leads to lymphadenopathy. Enhanced death in wildtype T cells blocked by RIPK1 inihibitor Nec-1 suggests an important physiological role for necroptotic signaling in normal T cells. The NF-κβ pathway plays a key role in regulating T cell death as well, as blockade of NF-κβ signaling results in increased death that can be rescued with Nec-1. This result implicates the role of NF-κβ in regulating levels of sensitivity to necroptosis in CD4+ vs. CD8+ cells. The mechanism of inhibition by NF-κB signaling as well as the spatial and temporal regulation of necrosomes are critical in regulating downstream activating and inhibitory pathways induced during necroptosis.

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