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Cutting Edge: Identification of a Pre-Ligand Assembly Domain (PLAD) and Ligand Binding Site in the IL-17 Receptor

机译:前沿:IL-17受体中配体前组装域(PLAD)和配体结合位点的鉴定

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摘要

IL-17 is the hallmark cytokine of the newly described “Th17” lymphocyte population. The composition, subunit dynamics, and ligand contacts of the IL-17 receptor are poorly defined. We previously demonstrated that the IL-17RA subunit oligomerizes in the membrane without a ligand. In this study, computational modeling identified two fibronectin-III-like (FN) domains in IL-17RA connected by a nonstructured linker, which we predicted to mediate homotypic interactions. In yeast two-hybrid, the membrane-proximal FN domain (FN2), but not the membrane-distal domain (FN1), formed homomeric interactions. The ability of FN2 to drive ligand-independent multimerization was verified by coimmunoprecipitation and fluorescence resonance energy transfer microscopy. Thus, FN2 constitutes a “pre-ligand assembly domain” (PLAD). Further studies indicated that the FN2 linker domain contains the IL-17 binding site, which was never mapped. However, the FN1 domain is also required for high affinity interactions with IL-17. Therefore, although the PLAD is located entirely within FN2, effective ligand binding also involves contributions from the linker and FN1.
机译:IL-17是新描述的“ Th17”淋巴细胞群的标志性细胞因子。 IL-17受体的组成,亚基动力学和配体接触定义不清。我们先前证明了IL-17RA亚基在没有配体的情况下会在膜中低聚。在这项研究中,计算模型确定了IL-17RA中两个由非结构化连接子连接的纤连蛋白-III-类(FN)域,我们预测它们会介导同型相互作用。在酵母双杂交中,膜近端FN结构域(FN2)而非膜-远端结构域(FN1)形成同质相互作用。通过免疫共沉淀和荧光共振能量转移显微镜验证了FN2驱动独立于配体的多聚反应的能力。因此,FN2构成“配体前组装域”(PLAD)。进一步的研究表明,FN2接头域包含从未被定位的IL-17结合位点。但是,与IL-17的高亲和力相互作用也需要FN1域。因此,尽管PLAD完全位于FN2内,但有效的配体结合也涉及接头和FN1的贡献。

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