...
首页> 外文期刊>Bulletin of the Korean Chemical Society >Pharmacophore Modeling, Virtual Screening and Molecular Docking Studies for Identification of New Inverse Agonists of Human Histamine H1 Receptor
【24h】

Pharmacophore Modeling, Virtual Screening and Molecular Docking Studies for Identification of New Inverse Agonists of Human Histamine H1 Receptor

机译:鉴定人类组胺H 1 受体新反向激动剂的药理学模型,虚拟筛选和分子对接研究

获取原文

摘要

Human histamine H1 receptor (HHR1) is a G protein-coupled receptor and a primary target for antiallergic therapy. Here, the ligand-based three-dimensional pharmacophore models were built from a set of known HHR1 inverse agonists using HypoGen module of CATALYST software. All ten generated pharmacophore models consist of five essential features: hydrogen bond acceptor, ring aromatic, positive ionizable and two hydrophobic functions. Best model had a correlation coefficient of 0.854 for training set compounds and it was validated with an external test set with a high correlation value of 0.925. Using this model Maybridge database containing 60,000 compounds was screened for potential leads. A rigorous screening for drug-like compounds unveiled RH01692 and SPB00834, two novel molecules for HHR1 with good CATALYST fit and estimated activity values. The new lead molecules were docked into the active site of constructed HHR1 homology model based on recently crystallized squid rhodopsin as template. Both the hit compounds were found to have critical interactions with Glu177, Phe432 and other important amino acids. The interpretations of this study may effectively be deployed in designing of novel HHR1 inverse agonists.
机译:人组胺H1受体(HHR1)是一种G蛋白偶联受体,是抗过敏治疗的主要靶标。在此,使用CATALYST软件的HypoGen模块,从一组已知的HHR1反向激动剂中建立了基于配体的三维药效团模型。所有十个生成的药效团模型均包含五个基本特征:氢键受体,环芳烃,可电离的正离子和两个疏水功能。最佳模型与训练集化合物的相关系数为0.854,并通过具有0.925的高相关值的外部测试集进行了验证。使用该模型,对包含60,000种化合物的Maybridge数据库进行了潜在铅筛选。对药物样化合物进行了严格筛选,发现了RH01692和SPB00834,这两种HHR1新型分子具有良好的CATALYST拟合和估计的活性值。以最近结晶的鱿鱼视紫红质为模板,将新的先导分子对接到构建的HHR1同源性模型的活性位点中。发现这两种命中化合物均与Glu177,Phe432和其他重要氨基酸具有关键的相互作用。这项研究的解释可以有效地用于新型HHR1反向激动剂的设计。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号