Crystal Structure of the TSH Receptor in Complex with a Thyroid-Stimulating Autoantibody

自身抗体 化学 受体 促甲状腺激素受体 结合位点 生物物理学 结晶学 内科学 生物化学 生物 医学 抗体 免疫学
作者
Jane Sanders,Dimitri Y. Chirgadze,Paul W. Sanders,Stuart Baker,Andrew Sullivan,Anshu Bhardwaja,Jane Bolton,Magnus Reeve,Nobuhiro Nakatake,Michele K. Evans,Tonya Richards,Michael J. Powell,Ricardo Núñez Miguel,Tom L. Blundell,Jadwiga Furmaniak,Bernard Rees Smith
出处
期刊:Thyroid [Mary Ann Liebert]
卷期号:17 (5): 395-410 被引量:212
标识
DOI:10.1089/thy.2007.0034
摘要

To analyze interactions between the thyroid-stimulating hormone receptor (TSHR) and a thyroid-stimulating human monoclonal autoantibody (M22) at the molecular level.A complex of part of the TSHR extracellular domain (amino acids 1-260; TSHR260) bound to M22 Fab was prepared and purified. Crystals suitable for X-ray diffraction analysis were obtained and the structure solved at 2.55 A resolution.TSHR260 comprises of a curved helical tube and M22 Fab clasps its concave surface at 90 degrees to the tube length axis. The interface buried in the complex is large (2,500 A(2)) and an extensive network of ionic, polar, and hydrophobic bonding is involved in the interaction. There is virtually no movement in the atoms of M22 residues on the binding interface compared to unbound M22 consistent with "lock and key" binding. Mutation of residues showing strong interactions in the structure influenced M22 activity, indicating that the binding detail observed in the complex reflects interactions of M22 with intact, functionally active TSHR. The receptor-binding arrangements of the autoantibody are very similar to those reported for follicle-stimulating hormone (FSH) binding to the FSH receptor (amino acids 1-268) and consequently to those of TSH itself.It is remarkable that the thyroid-stimulating autoantibody shows almost identical receptor-binding features to TSH although the structures and origins of these two ligands are very different. Furthermore, our structure of the TSHR and its complex with M22 provide foundations for developing new strategies to understand and control both glycoprotein hormone receptor activation and the autoimmune response to the TSHR.

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