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配体诱导胰岛素受体激活的结构见解。

Structural insights into ligand-induced activation of the insulin receptor.

作者信息

Ward C, Lawrence M, Streltsov V, Garrett T, McKern N, Lou M Z, Lovrecz G, Adams T

机构信息

CSIRO Molecular & Health Technologies, Parkville, Vic., Australia.

出版信息

Acta Physiol (Oxf). 2008 Jan;192(1):3-9. doi: 10.1111/j.1748-1716.2007.01781.x.

Abstract

The current model for insulin binding to the insulin receptor proposes that there are two binding sites, referred to as sites 1 and 2, on each monomer in the receptor homodimer and two binding surfaces on insulin, one involving residues predominantly from the dimerization face of insulin (the classical binding surface) and the other residues from the hexamerization face. High-affinity binding involves one insulin molecule using its two surfaces to make bridging contacts with site 1 from one receptor monomer and site 2 from the other. Whilst the receptor dimer has two identical site 1-site 2 pairs, insulin molecules cannot bridge both pairs simultaneously. Our structures of the insulin receptor (IR) ectodomain dimer and the L1-CR-L2 fragments of IR and insulin-like growth factor receptor (IGF-1R) explain many of the features of ligand-receptor binding and allow the two binding sites on the receptor to be described. The IR dimer has an unexpected folded-over conformation which places the C-terminal surface of the first fibronectin-III domain in close juxtaposition to the known L1 domain ligand-binding surface suggesting that the C-terminal surface of FnIII-1 is the second binding site involved in high-affinity binding. This is very different from previous models based on three-dimensional reconstruction from scanning transmission electron micrographs. Our single-molecule images indicate that IGF-1R has a morphology similar to that of IR. In addition, the structures of the first three domains (L1-CR-L2) of the IR and IGF-1R show that there are major differences in the two regions governing ligand specificity. The implications of these findings for ligand-induced receptor activation will be discussed. This review summarizes the key findings regarding the discovery and characterization of the insulin receptor, the identification and arrangement of its structural domains in the sequence and the key features associated with ligand binding. The remainder of the review deals with a description of the receptor structure and how it explains much of the large body of biochemical data in the literature on insulin binding and receptor activation.

摘要

目前胰岛素与胰岛素受体结合的模型提出,在受体同型二聚体的每个单体上存在两个结合位点,分别称为位点1和位点2,胰岛素上有两个结合面,一个主要涉及胰岛素二聚化面上的残基(经典结合面),另一个涉及六聚化面上的残基。高亲和力结合涉及一个胰岛素分子利用其两个表面与一个受体单体的位点1和另一个受体单体的位点2进行桥接接触。虽然受体二聚体有两个相同的位点1-位点2对,但胰岛素分子不能同时桥接这两对。我们解析的胰岛素受体(IR)胞外域二聚体以及IR和胰岛素样生长因子受体(IGF-1R)的L1-CR-L2片段的结构解释了配体-受体结合的许多特征,并使得能够描述受体上的两个结合位点。IR二聚体具有意想不到的折叠构象,使得第一个纤连蛋白III结构域的C末端表面与已知的L1结构域配体结合表面紧密并列,这表明FnIII-1的C末端表面是参与高亲和力结合的第二个结合位点。这与之前基于扫描透射电子显微镜三维重建的模型有很大不同。我们的单分子图像表明,IGF-1R的形态与IR相似。此外,IR和IGF-1R的前三个结构域(L1-CR-L2)的结构表明,在决定配体特异性的两个区域存在主要差异。将讨论这些发现对配体诱导受体激活的影响。本综述总结了关于胰岛素受体的发现和表征、其结构域在序列中的鉴定和排列以及与配体结合相关的关键特征的主要发现。综述的其余部分描述了受体结构,以及它如何解释文献中关于胰岛素结合和受体激活的大量生化数据。

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