GSD MD is critical for autoinflammatory pathology in a mouse model of Familial Mediterranean Fever

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Abstract

Pyroptosis is an inflammasome-induced lytic cell death mode, the physiological role of which in chronic inflammatory diseases is unknown. Familial Mediterranean Fever (FMF) is the most common monogenic autoinflammatory disease worldwide, affecting an estimated 150,000 patients. The disease is caused by missense mutations in Mefv that activate the Pyrin inflammasome, but the pathophysiologic mechanisms driving autoinflammation in FMF are incompletely understood. Here, we show that Clostridium difficile infection of FMF knock-in macrophages that express a chimeric FMF-associated MefvV726A Pyrin elicited pyroptosis and gasdermin D (GSD MD)-mediated interleukin (IL)-1β secretion. Importantly, in vivo GSD MD deletion abolished spontaneous autoinflammatory disease. GSD MD-deficient FMF knock-in mice were fully protected from the runted growth, anemia, systemic inflammatory cytokine production, neutrophilia, and tissue damage that characterize this autoinflammatory disease model. Overall, this work identifies pyroptosis as a critical mechanism of IL-1β-dependent autoinflammation in FMF and highlights GSD MD inhibition as a potential antiinflammatory strategy in inflammasome-driven diseases.

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Kanneganti, A., Malireddi, R. K. S., Saavedra, P. H. V., Walle, L. V., Van Gorp, H., Kambara, H., … Lamkanfi, M. (2018). GSD MD is critical for autoinflammatory pathology in a mouse model of Familial Mediterranean Fever. Journal of Experimental Medicine, 215(6), 1519–1529. https://doi.org/10.1084/jem.20172060

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