首页> 外文期刊>Drug design and discovery >QSAR with electrotopological state atom index: human factor Xa inhibitor N2-aroylanthranilamides.
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QSAR with electrotopological state atom index: human factor Xa inhibitor N2-aroylanthranilamides.

机译:具有电拓扑状态原子指数的QSAR:人因子Xa抑制剂N2-芳基兰酰胺。

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Recently, N2-aroylanthranilamides have been reported as novel series of possible anticoagulant drug candidates and the two aryl rings (A and B) have been suggested to interact with S1 and S4 regions, respectively, of human factor Xa (hfXa). In the present effort, quantitative structure-activity relationship (QSAR) of the hfXa binding affinity of 32 N2-aroylanthranilamides have been attempted, in continuation of our previous report on the QSAR analysis of the data set using linear free energy related (LFER) model, with electrotopological state atom (ETSA) index (Kier and Hall, 1991, Adv. Drug Design., 22, 1-38), to explore the atoms/regions of the compounds that modulate the activity comparatively to the greater extent. The univariate and bivariate relations involving the ETSA values of different common atoms of the compounds show importance of the atom nos. 12, 3 and 17 (arbitrary numbering): B ring carbon bearing meta R2 substituents, C ring carbon bearing R4 substituent, and carbonyl oxygen of A ringamide linkage. The importance of atom 12 is suggested to be due to detrimental effects of meta R2 substituents (B ring) on the hfXa binding affinity, which may be owing to interference in the attainment of the proper orientation of the phenyl ring in the S4 site. Atom 3 signifies the impact of R4 substituents (central C ring) on the binding affinity. Again, atom 17 (carbonyl oxygen of A ring amide linkage) has been suggested to form hydrogen bonding with the NH group of the other amide linkage, producing a pseudo ring and thus stabilizing the structure. The relations were improved further using indicator and physicochemical variables and the present results are in good agreement with the previous findings of the Hansch analysis.
机译:近来,已经报道了N 2-芳基蒽基酰胺作为可能的抗凝药物候选物的新系列,并且已经建议两个芳基环(A和B)分别与人因子Xa(hfXa)的S1和S4区域相互作用。在目前的研究中,已经尝试了32种N2-芳基邻氨基苯甲酰胺的hfXa结合亲和力的定量构效关系(QSAR),这是我们先前关于使用线性自由能相关(LFER)模型对数据集进行QSAR分析的报告的延续,用电拓扑状态原子(ETSA)指数(Kier and Hall,1991,Adv。Drug Design。,22,1-38),探索相对较大程度地调节活性的化合物的原子/区域。涉及化合物不同共同原子的ETSA值的单变量和双变量关系显示了原子序数的重要性。 12、3和17(任意编号):具有环R 2取代基的B环碳,具有R 4取代基的C环碳和A环酰胺键的羰基氧。提出原子12的重要性是由于间R2取代基(B环)对hfXa结合亲和力的有害影响,这可能是由于干扰了S4位点苯环的正确取向。原子3表示R4取代基(中心C环)对结合亲和力的影响。再次,建议原子17(A环酰胺键的羰基氧)与另一个酰胺键的NH基团形成氢键,产生假环并因此稳定结构。使用指示剂和理化变量进一步改善了这种关系,目前的结果与Hansch分析的先前发现非常吻合。

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