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Construction of hypothetical three-dimensional structure of P2Y1 receptor based on Fourier transform analysis
Authors:Hiramoto Takeshi  Nemoto Wataru  Kikuchi Takeshi  Fujita Norihisa
Affiliation:(1) Laboratory of Bio-Signaling Chemistry Department of Bioscience and Biotechnology, Ritsumeikan University, 1-1-1 Noji-higashi, Kusatsu, 525-8577, Japan;(2) College of Science and Industrial Technology, Kurashiki University of Science and The Art, 2640 Nishinoura, Tsurajima-cho, Kurashiki, 712-8505, Japan
Abstract:G protein-coupled receptors constitute a large family of homologous transmembrane proteins that represents one of the most important classes of confirmed drug targets. For novel drug discovery, the 3D structure of target protein is indispensable. To construct hypothetical 3D structures of G protein-coupled receptors, several prediction methods have been proposed. But none of the them has confirmed a correct ligand binding site. In this study we constructed the 3D structure of bovine rhodopsin using the prediction method proposed by Donnelly et al., with some modification. We found that our 3D model showed a good agreement with the reported retinal binding site. Using the similar method, we constructed the 3D structure of the P2Y1 receptor; one of the G protein-coupled receptors, and showed a binding site of an endogenous ligand, ADP, on the basis of the 3D model and in vitro experimental data. These results should be valuable for design of a specific antagonist for P2Y1 receptor.
Keywords:GPCR  P2Y receptor  Fourier transform  secondary structure prediction  protein modeling
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