Familial Mediterranean fever mutations lift the obligatory requirement for microtubules in Pyrin inflammasome activation

H Van Gorp, PHV Saavedra… - Proceedings of the …, 2016 - National Acad Sciences
H Van Gorp, PHV Saavedra, NM de Vasconcelos, N Van Opdenbosch, L Vande Walle…
Proceedings of the National Academy of Sciences, 2016National Acad Sciences
Familial Mediterranean fever (FMF) is the most common monogenic autoinflammatory
disease worldwide. It is caused by mutations in the inflammasome adaptor Pyrin, but how
FMF mutations alter signaling in FMF patients is unknown. Herein, we establish Clostridium
difficile and its enterotoxin A (TcdA) as Pyrin-activating agents and show that wild-type and
FMF Pyrin are differentially controlled by microtubules. Diverse microtubule assembly
inhibitors prevented Pyrin-mediated caspase-1 activation and secretion of IL-1β and IL-18 …
Familial Mediterranean fever (FMF) is the most common monogenic autoinflammatory disease worldwide. It is caused by mutations in the inflammasome adaptor Pyrin, but how FMF mutations alter signaling in FMF patients is unknown. Herein, we establish Clostridium difficile and its enterotoxin A (TcdA) as Pyrin-activating agents and show that wild-type and FMF Pyrin are differentially controlled by microtubules. Diverse microtubule assembly inhibitors prevented Pyrin-mediated caspase-1 activation and secretion of IL-1β and IL-18 from mouse macrophages and human peripheral blood mononuclear cells (PBMCs). Remarkably, Pyrin inflammasome activation persisted upon microtubule disassembly in PBMCs of FMF patients but not in cells of patients afflicted with other autoinflammatory diseases. We further demonstrate that microtubules control Pyrin activation downstream of Pyrin dephosphorylation and that FMF mutations enable microtubule-independent assembly of apoptosis-associated speck-like protein containing a caspase recruitment domain (ASC) micrometer-sized perinuclear structures (specks). The discovery that Pyrin mutations remove the obligatory requirement for microtubules in inflammasome activation provides a conceptual framework for understanding FMF and enables immunological screening of FMF mutations.
National Acad Sciences