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Clancy, D. M.

Publications and source records attributed to Clancy, D. M..

2 recordsLinked to original sources

Structural basis of pro-inflammatory signaling via the Interleukin-36 receptor (IL-36R) mediated by IL-36γ and IL-37

Interleukin-36 receptor (IL-36R) is activated by IL-36, IL-36{beta}, and IL-36{gamma} to elicit pro-inflammatory signaling and is targeted in acute skin inflammation by the approved antibody spesolimab. IL-37 was recently proposed as a new IL-36R agonist. Such diverse agonist repertoire together with the antagonistic IL-36Ra and IL-38 create a fascinating structure-function landscape for IL-36R, albeit one that is poorly understood. Here, we elucidate how IL-36R grapples IL-36{gamma} with low affinity to enable facile recruitment of the shared receptor IL-1RAcP with high-affinity. In contrast, IL-36R interacts with IL-37 via the exact opposite binding signature. Comparative interrogation of IL-36R activation by IL-36{gamma} and IL-37 confirmed their common pro-inflammatory signature and distinguished IL-36{gamma} as markedly more pro-inflammatory. Structural comparisons of cytokine-activated versus spesolimab-antagonized IL-36R revealed spesolimabs mode of action as an allosteric antagonist. Collectively, our study provides the structural and mechanistic blueprint of IL-36R activation by distinct cytokines and will facilitate its therapeutic targeting. One Sentence SummaryStructural blueprint for IL-36R activation by cognate cytokines and its antagonism by spesolimab in generalized pustular psoriasis.

immunology↗

Themis and Grb2 form a constitutive structural hub in T cell receptor signalling

Positive selection of thymocytes is essential for laying the foundations of the mammalian immune system that include the T cell repertoire, self-tolerance, and prevention of autoimmunity. Themis, the archetypal member of a metazoan protein family featuring distinctive CABIT domains, crucially regulates thymocyte positive selection by linking signalling by the T cell receptor (TCR) to the linker of activation of TCR (LAT). Intriguingly, Themis has been proposed to function via a constitutive complex with the multifunctional adaptor Grb2. Although poised to represent a paradigm shift in our understanding of TCR signalling, the structural and mechanistic basis of such an assembly has remained enigmatic. Here, we present the cryo-EM structure of Themis in complex with Grb2, which reveals how the tandem CABIT domains of Themis engulf the C-terminal SH3 domain of Grb2 (Grb2SH3C) to enable its latching onto the proline rich sequence of Themis. The remaining two domains of Grb2 adopt at least three conformational poses set to interact with other binding partners such as Sos1. Structural insights from unbound Themis unmask the pronounced flexibility of the CABIT domains of Themis, which becomes ordered upon binding to Grb2 to create a binding hotspot for their constitutive complex. Indeed, Themis variants that abrogate interactions with Grb2 also fail to activate the tyrosine phosphatase SHP-1 after TCR stimulation, analogous to the functional phenotype of Themis-deficient cells. Collectively, our study draws the blueprint of the Themis-Grb2 complex as a dynamic structural hub in T cell development.

immunology↗