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首页> 外文期刊>Biochemistry >A REFINED MODEL OF THE THYROTROPIN-RELEASING HORMONE (TRH) RECEPTOR BINDING POCKET - EXPERIMENTAL ANALYSIS AND ENERGY MINIMIZATION OF THE COMPLEX BETWEEN TRH AND TRH RECEPTOR
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A REFINED MODEL OF THE THYROTROPIN-RELEASING HORMONE (TRH) RECEPTOR BINDING POCKET - EXPERIMENTAL ANALYSIS AND ENERGY MINIMIZATION OF THE COMPLEX BETWEEN TRH AND TRH RECEPTOR

机译:促甲状腺激素释放激素结合口袋的精确模型-TRH和TRH受体之间复合物的实验分析和能量最小化

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摘要

Seven transmembrane (TM) spanning, G protein-coupled receptors (GPCRs) appear to bind large glycoprotein hormones predominantly within their extracellular domains, small nonpeptidic ligands within the TM helical bundle, and peptide ligands within the extracellular domains and TM bundle. The tripeptide thyrotropin-releasing hormone (TRH, pyroGlu-His-ProNH(2)) may bind entirely within the TM bundle of the TRH receptor (TRH-R). We have previously demonstrated direct binding contacts between the pyroGlu of TRH and two residues in TM helix 3 (TM-3) of TRH-R and proposed a model of the binding pocket of TRH-R [Perlman, J. H., Laakkonen, L., Osman, R., & Gershengorn, M. C. (1994) J. Biol. Chem. 269, 23383-23386]. Here, we provide evidence for two additional direct interactions between TRH and TRH-R. One interaction is between the aromatic ring of Tyr 282 of TM-6 and His of TRH. This is based on a large increase in the half-maximally effective concentration (EC(50)) of TRH for stimulation of inositol phosphate formation by Y282A TRH-R and a loss of selectivity of this mutant receptor for TRH analogs substituted at His. We provide evidence for another interaction between Arg 306 of TM-7 and the terminal carboxamide of TRH. Using four direct interactions as anchors, a refined model of the TRH-R binding pocket was constructed using geometry optimization through energy minimization. A novel method for modeling GPCRs based on Monte Carlo and stochastic dynamics simulations is presented in the accompanying paper.
机译:七个跨膜(TM),G蛋白偶联受体(GPCR)似乎主要结合其细胞外结构域中的大糖蛋白激素,TM螺旋束中的小非肽配体以及细胞外结构域和TM束中的肽配体。三肽促甲状腺激素释放激素(TRH,pyroGlu-His-ProNH(2))可能完全结合在TRH受体(TRH-R)的TM束内。我们先前已证明TRH的pyroGlu与TRH-R的TM螺旋3(TM-3)中的两个残基之间具有直接结合接触,并提出了TRH-R的结合口袋模型[Perlman,JH,Laakkonen,L., Osman,R.,&Gershengorn,MC(1994)J.Biol。化学269,23383-23386]。在这里,我们提供了TRH和TRH-R之间另外两个直接相互作用的证据。一种相互作用是在TM-6的Tyr 282的芳香环与TRH的His之间。这是基于TRH刺激Y282A TRH-R刺激肌醇磷酸形成的最大半数有效浓度(EC(50))的增加,以及该突变体受体对His取代的TRH类似物的选择性丧失所致。我们为TM-7的Arg 306和TRH的末端羧酰胺之间的另一种相互作用提供了证据。使用四个直接相互作用作为锚点,使用通过能量最小化的几何优化来构建TRH-R结合口袋的精炼模型。随附的论文提出了一种基于蒙特卡洛和随机动力学模拟的GPCR建模新方法。

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