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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Exploration of physicochemical properties and molecular modelling studies of 2-sulfonyl-phenyl-3-phenyl-indole analogs as cyclooxygenase-2 inhibitors.
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Exploration of physicochemical properties and molecular modelling studies of 2-sulfonyl-phenyl-3-phenyl-indole analogs as cyclooxygenase-2 inhibitors.

机译:作为环加氧酶-2抑制剂的2-磺酰基-苯基-3-苯基-吲哚类似物的理化性质和分子模型研究。

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In the present work, modelling study has been performed to explore the physicochemical requirements of 2-sulfonyl-phenyl-3-phenyl-indole analogs as COX-2 enzyme inhibitors. The multivariant regression expressions were developed using sequential multiple linear regression (SEQ-MLR) technique, considering adjustable correlation coefficient (r(adj)(2)). The statistical quality of SEQ-MLR equations was evaluated considering parameters like correlation coefficient (r), standard error of estimation (SEE), and variance ratio (F) at explicit degree of freedom (df). Orthogonality of the descriptors in SEQ-MLR was established through variance inflation factor (VIF). Developed equations have been internally validated using leave-one-out technique and further validated with test set, considering predictive squared correlation coefficient (r(pred)(2)). The orientation of the most potent and selective COX-2 inhibitor of training set, 2-(4-phenyl sulfonamide)-3-phenyl-5-methylindole, in the COX-2 active site was explored by docking. The phenyl sulfonamide moiety positioned in secondary pocket of enzyme which consists of amino acid residues Phe(518), Gln(192), Arg(513), Leu(352), Ser(353) and Val(523) is responsible for the selectivity. The unsubstituted phenyl ring positions in a hydrophobic cavity are lined by Tyr(385), Trp(387), Tyr(348), Leu(384) and Met(522). Interestingly, the indole C-5 CH(3)-substituent is located in a hydrophobic region formed by Ile(345), Val(349), Ala(527), Leu(531) and Leu(534). The hydrophobic interactions of methyl group might be crucial for the potency of 2-sulfonyl-phenyl-3-phenyl-indole analogs. Study has revealed that atomic van der Waals volume and atomic masses explain COX-2 inhibitory activity of 2-sulfonyl-phenyl-3-phenyl-indole analogs significantly.
机译:在目前的工作中,已经进行了建模研究以探索2-磺酰基-苯基-3-苯基-吲哚类似物作为COX-2酶抑制剂的理化要求。考虑到可调相关系数(r(adj)(2)),使用顺序多重线性回归(SEQ-MLR)技术开发了多元回归表达式。评估SEQ-MLR方程的统计质量时,应考虑相关参数(r),估计的标准误差(SEE)和显式自由度(df)的方差比(F)等参数。 SEQ-MLR中描述符的正交性是通过方差膨胀因子(VIF)建立的。考虑到预测平方相关系数(r(pred)(2)),已使用留一法技术对开发的方程式进行了内部验证,并通过测试集进行了进一步验证。通过对接研究了训练集中最有效和选择性最强的COX-2抑制剂2-(4-苯基磺酰胺)-3-苯基-5-甲基吲哚的取向。苯磺酰胺部分位于酶的第二个口袋中,由氨基酸残基Phe(518),Gln(192),Arg(513),Leu(352),Ser(353)和Val(523)组成。疏水腔中未取代的苯环位置由Tyr(385),Trp(387),Tyr(348),Leu(384)和Met(522)排列。有趣的是,吲哚的C-5 CH(3)取代基位于由Ile(345),Val(349),Ala(527),Leu(531)和Leu(534)形成的疏水区域中。甲基的疏水相互作用对于2-磺酰基-苯基-3-苯基-吲哚类似物的效力可能至关重要。研究表明,原子范德华体积和原子质量可以很好地解释2-磺酰基-苯基-3-苯基-吲哚类似物的COX-2抑制活性。

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