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Solution Structure of Ectodomains of the Insulin Receptor Family: The Ectodomain of the Type 1 Insulin-Like Growth Factor Receptor Displays Asymmetry of Ligand Binding Accompanied by Limited Conformational Change
Authors:Andrew E. Whitten  Brian J. Smith  Mai B. Margetts  George O. Lovrecz  Kim Richards  John D. Bentley  Colin W. Ward
Affiliation:1 Bragg Institute, Australian Nuclear Science and Technology Organisation, NSW 2234, Australia
2 School of Molecular and Microbial Biosciences, University of Sydney, NSW 2006, Australia
3 Walter and Eliza Hall Institute of Medical Research, 1G Royal Parade, Parkville, Victoria 3052, Australia
4 CSIRO Molecular and Health Technologies, Parkville, Victoria 3052, Australia
Abstract:
The insulin receptor (IR) and the homologous Type 1 insulin-like growth factor receptor (IGF-1R) are cell-surface tyrosine kinase receptors that effect signaling within the respective pathways of glucose metabolism and normal human growth. While ligand binding to these receptors is assumed to result in a structural transition within the receptor ectodomain that then effects signal transduction across the cell membrane, little is known about the molecular detail of these events. Presented here are small-angle X-ray scattering data obtained from the IR and IGF-1R ectodomains in solution. We show that, in solution, the ectodomains of IR and IGF-1R have a domain disposition that is very similar to that seen in the crystal structure of the ectodomain of IR, despite the constituent domains being in relatively sparse contact and potentially mobile. We also show that the IGF-1R ectodomain is capable of binding up to three molecules of IGF-1 in solution, with surprisingly little apparent change in relative domain disposition compared to the apo form. While the observed 3:1 ligand-binding stoichiometry appears to contradict earlier explanations of the absence of a bell-shaped dose-response curve for IGF-1R in ligand displacement assays, it is readily understood in the context of the harmonic oscillator model of the negative cooperativity of ligand binding to IGF-1R. Taken together, our findings suggest that the structural movements within these receptors upon ligand binding are small and are possibly limited to local rotation of domains.
Keywords:FnIII, fibronectin Type III domain   IGF-1, insulin-like growth factor 1   IGF-1R, Type 1 insulin-like growth factor receptor   IR, insulin receptor   SAXS, small-angle X-ray scattering   SEC, size-exclusion chromatography   TBSA, Tris-buffered saline containing 0.02% sodium azide   wtIR, wild-type IR   wtIGF-1R, wild-type IGF-1R   mAb, monoclonal antibody
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