IFNγ binding to extracellular matrix prevents fatal systemic toxicity

IFNγ与细胞外基质结合可防止致命的全身毒性

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作者:Josephine Kemna ,Evelyne Gout ,Leon Daniau ,Jessica Lao ,Kristoffer Weißert ,Sandra Ammann ,Ralf Kühn ,Matthias Richter ,Christine Molenda ,Anje Sporbert ,Dario Zocholl ,Robert Klopfleisch ,Anja Schütz ,Hugues Lortat-Jacob ,Peter Aichele ,Thomas Kammertoens ,Thomas Blankenstein

Abstract

Interferon-γ (IFNγ) is an important mediator of cellular immune responses, but high systemic levels of this cytokine are associated with immunopathology. IFNγ binds to its receptor (IFNγR) and to extracellular matrix (ECM) via four positively charged C-terminal amino acids (KRKR), the ECM-binding domain (EBD). Across evolution, IFNγ is not well conserved, but the EBD is highly conserved, suggesting a critical function. Here, we show that IFNγ lacking the EBD (IFNγΔKRKR) does not bind to ECM but still binds to the IFNγR and retains bioactivity. Overexpression of IFNγΔKRKR in tumors reduced local ECM binding, increased systemic levels and induced sickness behavior, weight loss and toxicity. To analyze the function of the EBD during infection, we generated IFNγΔKRKR mice lacking the EBD by using CRISPR-Cas9. Infection with lymphocytic choriomeningitis virus resulted in higher systemic IFNγΔKRKR levels, enhanced sickness behavior, weight loss and fatal toxicity. We conclude that local retention of IFNγ is a pivotal mechanism to protect the organism from systemic toxicity during prolonged immune stimulation.

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