首页> 美国卫生研究院文献>Acta Crystallographica Section D: Biological Crystallography >Structure of the unique SEFIR domain from human interleukin 17 receptor A reveals a composite ligand-binding site containing a conserved α-helix for Act1 binding and IL-17 signaling
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Structure of the unique SEFIR domain from human interleukin 17 receptor A reveals a composite ligand-binding site containing a conserved α-helix for Act1 binding and IL-17 signaling

机译:人类白介素17受体A的独特SEFIR结构域的结构揭示了一个复合配体结合位点其中包含一个保守的α-螺旋用于Act1结合和IL-17信号传导

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摘要

Interleukin 17 (IL-17) cytokines play a crucial role in mediating inflammatory and autoimmune diseases. A unique intracellular signaling domain termed SEFIR is found within all IL-17 receptors (IL-17Rs) as well as the key adaptor protein Act1. SEFIR-mediated protein–protein interaction is a crucial step in IL-17 cytokine signaling. Here, the 2.3 Å resolution crystal structure of the SEFIR domain of IL-17RA, the most commonly shared receptor for IL-17 cytokine signaling, is reported. The structure includes the complete SEFIR domain and an additional α-helical C-terminal extension, which pack tightly together to form a compact unit. Structural comparison between the SEFIR domains of IL-17RA and IL-17RB reveals substantial differences in protein topology and folding. The uniquely long insertion between strand βC and helix αC in IL-17RA SEFIR is mostly well ordered, displaying a helix (αCC′ins) and a flexible loop (CC′). The DD′ loop in the IL-17RA SEFIR structure is much shorter; it rotates nearly 90° with respect to the counterpart in the IL-17RB SEFIR structure and shifts about 12 Å to accommodate the αCC′ins helix without forming any knots. Helix αC was identified as critical for its interaction with Act1 and IL-17-stimulated gene expression. The data suggest that the heterotypic SEFIR–SEFIR association via helix αC is a conserved and signature mechanism specific for IL-17 signaling. The structure also suggests that the downstream motif of IL-17RA SEFIR together with helix αC could provide a composite ligand-binding surface for recruiting Act1 during IL-17 signaling.
机译:白介素17(IL-17)细胞因子在介导炎性和自身免疫性疾病中起关键作用。在所有IL-17受体(IL-17Rs)以及关键衔接蛋白Act1中都存在一个称为SEFIR的独特细胞内信号传导域。 SEFIR介导的蛋白质间相互作用是IL-17细胞因子信号传导中的关键步骤。在此,报道了IL-17RA(最常见的IL-17细胞因子信号转导受体)的SEFIR结构域的2.3Å分辨率晶体结构。该结构包括完整的SEFIR域和一个附加的α-螺旋C端延伸部分,它们紧密堆积在一起形成一个紧凑的单元。 IL-17RA和IL-17RB的SEFIR结构域之间的结构比较揭示了蛋白质拓扑结构和折叠的实质差异。在IL-17RA SEFIR中,βC链和螺旋αC链之间独特的长插入大部分是有序的,显示出螺旋(αCC'ins)和柔性环(CC')。 IL-17RA SEFIR结构中的DD'环更短;它相对于IL-17RB SEFIR结构中的对应部分旋转近90°,并偏移约12Å,以容纳αCC'in螺旋而不会形成任何结。螺旋αC被认为对其与Act1和IL-17刺激的基因表达的相互作用至关重要。数据表明,通过螺旋αC的异型SEFIR–SEFIR关联是IL-17信号传导特有的保守和签名机制。该结构还表明,IL-17RA SEFIR的下游基序与螺旋αC在一起可为IL-17信号传导期间募集Act1提供复合配体结合表面。

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