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Development, evaluation and application of 3D QSAR Pharmacophore model in the discovery of potential human renin inhibitors

机译:3D QSAR Pharmacophore模型的开发,评估和在潜在的人类肾素抑制剂发现中的应用

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BackgroundRenin has become an attractive target in controlling hypertension because of the high specificity towards its only substrate, angiotensinogen. The conversion of angiotensinogen to angiotensin I is the first and rate-limiting step of renin-angiotensin system and thus designing inhibitors to block this step is focused in this study.MethodsLigand-based quantitative pharmacophore modeling methodology was used in identifying the important molecular chemical features present in the set of already known active compounds and the missing features from the set of inactive compounds. A training set containing 18 compounds including active and inactive compounds with a substantial degree of diversity was used in developing the pharmacophore models. A test set containing 93 compounds, Fischer randomization, and leave-one-out methods were used in the validation of the pharmacophore model. Database screening was performed using the best pharmacophore model as a 3D structural query. Molecular docking and density functional theory calculations were used to select the hit compounds with strong molecular interactions and favorable electronic features.ResultsThe best quantitative pharmacophore model selected was made of one hydrophobic, one hydrogen bond donor, and two hydrogen bond acceptor features with high a correlation value of 0.944. Upon validation using an external test set of 93 compounds, Fischer randomization, and leave-one-out methods, this model was used in database screening to identify chemical compounds containing the identified pharmacophoric features. Molecular docking and density functional theory studies have confirmed that the identified hits possess the essential binding characteristics and electronic properties of potent inhibitors.ConclusionA quantitative pharmacophore model of predictive ability was developed with essential molecular features of a potent renin inhibitor. Using this pharmacophore model, two potential inhibitory leads were identified to be used in designing novel and future renin inhibitors as antihypertensive drugs.
机译:背景技术由于对肾上腺素唯一的底物血管紧张素原具有高度特异性,因此肾上腺素已成为控制高血压的诱人靶标。血管紧张素原转化为血管紧张素I是肾素-血管紧张素系统的第一步和限速步骤,因此本研究着重于设计抑制剂来阻断这一步骤。存在于一组已知的活性化合物中以及缺少的活性成分。在开发药效团模型时,使用了包含18种化合物的训练集,其中包括具有很大程度多样性的活性和非活性化合物。包含93种化合物的测试集,Fischer随机化和留一法用于验证药效团模型。使用最佳药效团模型作为3D结构查询进行数据库筛选。结果通过分子对接和密度泛函理论计算,选择了具有较强分子相互作用和良好电子特性的命中化合物。值为0.944。通过使用93种化合物的外部测试集,费歇尔随机化和留一法进行验证后,该模型用于数据库筛选,以鉴定包含已确定药效学特征的化合物。分子对接和密度泛函理论研究已经证实,所鉴定的命中具有有效抑制剂的基本结合特性和电子特性。结论建立了具有有效肾素抑制剂基本分子特征的定量预测能力的药效团模型。使用该药效团模型,确定了两种潜在的抑制先导,可用于设计新型和未来的肾素抑制剂作为降压药。

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