Structure of the insulin receptor ectodomain reveals a folded-over conformation

被引:238
作者
McKern, Neil M. [1 ]
Lawrence, Michael C. [1 ]
Streltsov, Victor A. [1 ]
Lou, Mei-Zhen [1 ]
Adams, Timothy E. [1 ]
Lovrecz, George O. [1 ]
Elleman, Thomas C. [1 ]
Richards, Kim M. [1 ]
Bentley, John D. [1 ]
Pilling, Patricia A. [1 ]
Hoyne, Peter A. [1 ]
Cartledge, Kellie A. [1 ]
Pham, Tam M. [1 ]
Lewis, Jennifer L. [1 ]
Sankovich, Sonia E. [1 ]
Stoichevska, Violet [1 ]
Da Silva, Elizabeth [1 ]
Robinson, Christine P. [1 ]
Frenkel, Maurice J. [1 ]
Sparrow, Lindsay G. [1 ]
Fernley, Ross T. [1 ]
Epa, V. Chandana [1 ]
Ward, Colin W. [1 ]
机构
[1] CSIRO Mol & Hlth Technol, Parkville, Vic 3052, Australia
关键词
D O I
10.1038/nature05106
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The insulin receptor is a phylogenetically ancient tyrosine kinase receptor found in organisms as primitive as cnidarians and insects. In higher organisms it is essential for glucose homeostasis(1), whereas the closely related insulin-like growth factor receptor (IGF-1R) is involved in normal growth and development(2). The insulin receptor is expressed in two isoforms, IR-A and IR-B; the former also functions as a high-affinity receptor for IGF-II and is implicated, along with IGF-1R, in malignant transformation(3). Here we present the crystal structure at 3.8 angstrom resolution of the IR-A ectodomain dimer, complexed with four Fabs from the monoclonal antibodies 83-7 and 83-14 ( ref. 4), grown in the presence of a fragment of an insulin mimetic peptide(5). The structure reveals the domain arrangement in the disulphide-linked ectodomain dimer, showing that the insulin receptor adopts a folded-over conformation that places the ligand-binding regions in juxtaposition. This arrangement is very different from previous models(6). It shows that the two L1 domains are on opposite sides of the dimer, too far apart to allow insulin to bind both L1 domains simultaneously as previously proposed(7). Instead, the structure implicates the carboxy-terminal surface of the first fibronectin type III domain as the second binding site involved in high-affinity binding.
引用
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页码:218 / 221
页数:4
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