bioRxiv Science⌕ Search

Biology subjects

Frank-Kamenetskii, A.

Publications and source records attributed to Frank-Kamenetskii, A..

2 recordsLinked to original sources

The innate cytokine IL-18 inhibits CNS autoimmunity through preferential activation of protective CD8 T-cells

Chronic innate immune activation is widely thought to challenge self-tolerance. IL-18 is an inflammasome-activated cytokine and potent amplifier of T-cell activation whose excess is associated with certain autoinflammatory, but not autoimmune, diseases. We tested how excess IL-18 affected susceptibility to experimental autoimmune encephalomyelitis (EAE), a model of CNS autoimmunity driven by IL-18 responsive, myelin-autoreactive CD4 T-cells (CD4Tauto). We hypothesized that IL-18 would exacerbate immunopathology in EAE. Instead, excess IL-18 was profoundly protective. IL-18 did not impair CD4Tauto priming or early expansion. Rather, it selectively restricted later accumulation of highly activated, splenic CD4Tauto bearing CNS-homing integrins. Despite high IL-18 receptor expression on CD4Tauto and Foxp3+ CD4Treg, excess IL-18 acted specifically through mature CD8 T-cells to promote a highly activated CD8Teffector phenotype and IFN{gamma}-dependent protection from EAE. Therapeutic administration of a "decoy-resistant" IL-18 agonist (DR-18) to wild-type mice, even after CD4Tauto expansion, nevertheless engaged CD8 T-cells to diminish CD4Tauto abundance, prevent CNS infiltration, and block immunopathology. Together, these findings demonstrate IL-18s unexpected, dominant ability to mobilize protective CD8 T-cells against highly activated CD4Tauto and protect from CNS autoimmune pathology; illustrating a potential therapeutically relevant mechanism by which autoinflammation actively opposes autoimmunity.

immunology↗

Multimodal induction of fulminant HLH by IL-18 includes virus-specific NK immunodeficiency

Macrophage Activation Syndrome (MAS) is a cytokine storm syndrome associated with Stills Disease, XIAP deficiency, and elevation of both total and free IL-18. Modeling excess IL-18 using Il18tg mice, we found mild NK-cytopenia and cytotoxic T lymphocyte (CTL) activation in resting mice reminiscent of Stills patients. Infection with Lymphocytic Choriomeningitis Virus (LCMV) triggered MAS via and IFN{gamma}, despite normal viral clearance. Il18tg NK cell transcriptomes showed replicative activity, but few changes in canonical NK function or maturation pathways. LCMV clearance is NK-independent, so we challenged Il18tg mice with mousepox in which NK cells are critical early orchestrators of clearance. Il18tg mices NK cells failed to activate or expand, but mousepox further activated their CTL and early viral control was normal. Il18tg mice soon developed "MAS" including hepatosplenic necrosis, but (contrasting with LCMV) they showed poor virus-specific CTL expansion and viral clearance. Though more normal at rest, Il18bpKO mices NK cells were similarly inert upon mousepox infection, and the mice succumbed to viremic MAS like Il18tg. Rescue of Il18tg mice, and mousepox-specific CTL responses, by NK cell transfer required in vitro NK pre-activation. Thus, IL-18 can induce both hyperinflammation (CTL hyperactivation) and immunodeficiency (NK cell hypoactivation) depending on the nature of the infectious trigger.

immunology↗