Aberrant interleukin-36Ra structure and function lead to unregulated secretion of inflammatory cytokines and generalized pustular psoriasis. (Funded by Agence Nationale de la Recherche and Société Française de Dermatologie.).
Background: IL-36 proteins are IL-1 family members with a key role in the skin. Results: Truncation of IL-36 ligands and IL-36Ra is required for full activity. IL-36Ra binds IL-1Rrp2 and prevents signaling.
Conclusion:The mechanism of action of IL-36Ra is directly analogous to that of IL-1Ra. Significance: Protease(s) that activate IL-36 cytokines could be excellent drug targets for psoriasis.
The phosphoinositide 3-kinase (PI3K) catalytic subunit p110␦ is expressed in neutrophils and is thought to play a role in their accumulation at sites of inflammation by contributing to chemoattractantdirected migration. We report here that p110␦ is present in endothelial cells and participates in neutrophil trafficking by modulating the proadhesive state of these cells in response to tumor necrosis factor ␣ (TNF␣). Specifically, administration of the selective inhibitor of PI3K␦, IC87114, to animals reduced neutrophil tethering to and increased rolling velocities on cytokine-activated microvessels in a manner similar to that observed in mice deficient in p110␦. These results were confirmed in vitro as inhibition of this isoform in endothelium, but not neutrophils, diminished cell attachment in flow. A role for PI3K␦ in TNF␣-induced signaling is demonstrated by a reduction in Aktphosphorylation and phosphatidylinositol-dependent kinase 1 (PDK1) enzyme activity upon treatment of this cell type with IC87114. p110␦ expressed in neutrophils also contributes to trafficking as demonstrated by the impaired movement of these cells across inflamed venules in animals in which this catalytic subunit was blocked or genetically deleted, results corroborated in transwell migration assays. Thus, PI3K␦ may be a reasonable therapeutic target in specific inflammatory conditions as blockade of its activity reduces neutrophil influx into tissues by diminishing their attachment to and migration across vascular endothelium. (Blood.
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