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首页> 外文期刊>Journal of Computer-Aided Molecular Design >Generation of a homology model of the human histamine H-3 receptor for ligand docking and pharmacophore-based screening
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Generation of a homology model of the human histamine H-3 receptor for ligand docking and pharmacophore-based screening

机译:人类组胺H-3受体的同源性模型用于配体对接和基于药效团的筛选

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The human histamine H-3 receptor (hH(3)R) is a G-protein coupled receptor (GPCR), which modulates the release of various neurotransmitters in the central and peripheral nervous system and therefore is a potential target in the therapy of numerous diseases. Although ligands addressing this receptor are already known, the discovery of alternative lead structures represents an important goal in drug design. The goal of this work was to study the hH(3)R and its antagonists by means of molecular modelling tools. For this purpose, a strategy was pursued in which a homology model of the hH(3)R based on the crystal structure of bovine rhodopsin was generated and refined by molecular dynamics simulations in a dipalmitoylphosphatidylcholine (DPPC)/water membrane mimic before the resulting binding pocket was used for high-throughput docking using the program GOLD. Alternatively, a pharmacophore-based procedure was carried out where the alleged bioactive conformations of three different potent hH(3)R antagonists were used as templates for the generation of pharmacophore models. A pharmacophore-based screening was then carried out using the program Catalyst. Based upon a database of 418 validated hH(3)R antagonists both strategies could be validated in respect of their performance. Seven hits obtained during this screening procedure were commercially purchased, and experimentally tested in a [H-3]N-alpha-methylhistamine binding assay. The compounds tested showed affinities at hH(3)R with K-i values ranging from 0.079 to 6.3 mu M.
机译:人类组胺H-3受体(hH(3)R)是一种G蛋白偶联受体(GPCR),它调节中枢神经系统和周围神经系统中各种神经递质的释放,因此是众多治疗的潜在靶标疾病。尽管解决该受体的配体是已知的,但是发现替代的前导结构代表了药物设计中的重要目标。这项工作的目的是通过分子建模工具研究hH(3)R及其拮抗剂。为此目的,寻求一种策略,其中基于牛视紫红质的晶体结构生成hH(3)R的同源性模型,并通过分子动力学模拟在二棕榈酰磷脂酰胆碱(DPPC)/水膜模拟物中进行合成,然后进行最终结合使用程序GOLD将Pocket用于高通量对接。或者,进行了基于药效团的程序,其中使用了三种不同的有效hH(3)R拮抗剂的所谓生物活性构象作为模板来生成药效团模型。然后使用程序Catalyst进行基于药效团的筛选。基于418个经过验证的hH(3)R拮抗剂的数据库,两种策略的性能都可以得到验证。在此筛选过程中获得的七个命中已商业购买,并在[H-3]N-α-甲基组胺结合测定中进行了实验测试。测试的化合物在hH(3)R处显示亲和力,K-i值为0.079至6.3μM.

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