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首页> 外文期刊>Journal of receptor and signal transduction research >Docking ligands to vasopressin and oxytocin receptors via genetic algorithm
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Docking ligands to vasopressin and oxytocin receptors via genetic algorithm

机译:通过遗传算法将配体对接至加压素和催产素受体

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The aim of the study was to computer-dock selected ligands to neurophyseal receptors in order to identify amino acid residues responsible for ligand-receptor interactions. To this aim, reliable oxytocin receptor (OTR) and argininevasopressin receptor (V1aR/V2R) models were built. The OTR-selective agonist [Thr(4),Gly(7)]OT, the OTR-selective cyclohexapeptide antagonist L-366,948 and OT itself were docked via genetic algorithm to OTR, V1aR, and V2R and relaxed using a constrained simulated annealing protocol. For the analysis of receptor/ligand interactions a subset of initial conformations was chosen using energetic and steric criteria. All three ligands seem to prefer similar modes of binding to the receptors, manifested by repetitive residues of the receptors which directly interact with the ligands. Taking into account that many aspects of mechanisms of G protein-coupled receptor (GPCR) action are still unsolved, the results obtained with the docking simulations may propose future experimental research, especially in site-directed mutagenesis analysis and searching for key amino acid residues responsible for drug activities. [References: 41]
机译:这项研究的目的是将选定的配体对接至神经干细胞受体,以鉴定负责配体-受体相互作用的氨基酸残基。为此,建立了可靠的催产素受体(OTR)和精氨酸加压素受体(V1aR / V2R)模型。 OTR选择性激动剂[Thr(4),Gly(7)] OT,OTR选择性环六肽拮抗剂L-366,948和OT本身通过遗传算法分别与OTR,V1aR和V2R对接,并使用受限的模拟退火方案放松。为了分析受体/配体相互作用,使用能量和空间标准选择了初始构象的子集。这三种配体似乎都倾向于与受体的结合方式相似,这表现为直接与配体相互作用的受体的重复残基。考虑到G蛋白偶联受体(GPCR)作用机制的许多方面仍未解决,通过对接模拟获得的结果可能会提出未来的实验研究,尤其是在定点诱变分析和寻找负责的关键氨基酸残基方面用于毒品活动。 [参考:41]

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