首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Pharmacophore identification and bioactivity prediction for triaminotriazine derivatives by electron conformational-genetic algorithm QSAR method.
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Pharmacophore identification and bioactivity prediction for triaminotriazine derivatives by electron conformational-genetic algorithm QSAR method.

机译:电子构象遗传算法QSAR方法对三氨基三嗪衍生物进行药理学鉴定和生物活性预测

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摘要

The electron conformational-genetic algorithm (EC-GA) method has been employed as a 4D-QSAR approach to reveal the pharmacophore (Pha) and to predict anticancer activity in the N-morpholino triaminotriazine derivatives. The electron conformational matrices of congruity (ECMCs) identified by electronic and structural parameters are constructed from data of conformational analysis and electronic structure calculation of molecules. Comparing the matrices, electron conformational submatrix of activity (ECSA, Pha) are revealed that are common for these compounds within a minimum tolerance. To predict the theoretical activity of training and test set and to select important variables for describing the activities, genetic algorithm and non-linear least square regression methods were applied. Regression coefficients were found 0.9708 for training and 0.9520 for test set.
机译:电子构象遗传算法(EC-GA)方法已被用作4D-QSAR方法,以揭示药效基团(Pha)并预测N-吗啉代三氨基三嗪衍生物的抗癌活性。由分子的构象分析和电子结构计算数据构建通过电子和结构参数识别的电子构象矩阵(ECMC)。比较基质,可以发现活性的电子构象子矩阵(ECSA,Pha)在最小公差范围内对于这些化合物是常见的。为了预测训练和测试集的理论活动并选择用于描述活动的重要变量,应用了遗传算法和非线性最小二乘回归方法。发现训练的回归系数为0.9708,测试集的回归系数为0.9520。

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