咪唑基丙基胍作为组胺H2受体激动剂:大系列的3D-QSAR。

Stefan Dove, Armin Buschauer
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引用次数: 5

摘要

咪唑基丙基胍是有效的组胺H2受体激动剂和收缩性血管扩张剂。在离体豚鼠心房中对141种衍生物进行了大量的测试,并提交给CoMFA。由于所有化合物都是完全激动剂,pD2值反映H2受体结合。疏水性考虑为变结构部分的Σf,采用Leo-Hansch方法计算。利用Σf, (Σf)2和指标变量进行的初步Hansch分析表明,pD2加性依赖于某些子结构的贡献,具有最佳疏水性。对于CoMFA,所有的三维结构都进行了优化和对齐。偏最小二乘分析pD2作为空间和静电场变量以及Σf和(Σf)2的函数,得到具有疏水性和无疏水性的模型r2分别为0.78和0.93。结果表明pD2对疏水效应呈抛物线依赖性。电场对pD2影响的三维分布提示了结合位点的模型(形状和静电势)。分支的作用和第一环和第二环的不同取代基效应表明,充分的分支结构诱导结合位点的构象变化,使第二环与各种取代基的有利容纳。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Imidazolylpropylguanidines as histamine H2 receptor agonists: 3D-QSAR of a large series

Imidazolylpropylguanidines are potent histamine H2 receptor agonists and act as inotropic vasodilators. A large series of 141 derivatives was tested in the isolated guinea pig atrium and submitted to CoMFA. Since all compounds are full agonists, pD2 values reflect H2 receptor binding. Hydrophobicity was considered as Σf of the variable structural moiety, calculated by the Leo–Hansch method. Preliminary Hansch analysis with Σf, (Σf)2 and indicator variables showed that pD2 additively depends on contributions of certain substructures and has a hydrophobic optimum. For CoMFA, all 3D structures were optimized and aligned. Partial Least Squares analysis of pD2 as function of steric and electrostatic field variables and of Σf and (Σf)2 led to models with r2 of 0.78 with and 0.93 without hydrophobicity. Results indicate a parabolic dependence of pD2 on hydrophobic effects. The 3D distribution of field influences on pD2 suggests a model (shape and electrostatic potential) of the binding site. The role of branching and different substituent effects of a first and a second ring indicate that adequately branched structures induce a conformational change of the binding site enabling a favourable accommodation of the second ring with various substituents.

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