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首页> 外文期刊>Chemical biology and drug design >Comparative QSAR Studies of CYP1A2 Inhibitor Flavonoids Using 2D and 3D Descriptors
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Comparative QSAR Studies of CYP1A2 Inhibitor Flavonoids Using 2D and 3D Descriptors

机译:使用2D和3D描述符比较CYP1A2抑制剂类黄酮的QSAR研究

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摘要

Comparative Quantitative Structure Activity Relationship (QSAR) analyses have been performed with 21 naturally occurring flavonoids for their inhibitory effects on cytochrome P450 1A2 enzyme using two-dimensional (topological, structural, and thermodynamic) and three-dimensional (spatial) descriptors. The chemometric tools used for the analyses are stepwise multiple linear regression, partial least squares, genetic function approximation, and genetic partial least squares. The data set was divided into a training set (n=15) and test set (n=6), based on K-means clustering technique applied on standardized two-dimensional descriptor matrix, and models were developed from the training set compounds. The best model (genetic partial least squares model using two-dimensional descriptors) was selected based on the highest external predictive R-2 (R-pred(2)) value (0.840) and the lowest root mean square error of prediction value (0.351). The developed QSAR equations suggest the importance of the double bond present at 2 and 3 positions and requirement of absence of hydroxyl substituent or glycosidic linkage at 3 position of the 1,4-benzopyrone nucleus. Furthermore, the phenyl ring present at 2 position of the 1,4-benzopyrone ring should not be substituted with hydroxyl group. Moreover, hydroxyl groups present at 5 and 7 positions of the benzopyran nucleus should not be glycosylated for good cytochrome P450 1A2 enzyme inhibitory activity.
机译:使用二维(拓扑,结构和热力学)和三维(空间)描述符对21种天然存在的类黄酮对细胞色素P450 1A2酶的抑制作用进行了比较定量结构活性关系(QSAR)分析。用于分析的化学计量学工具是逐步多元线性回归,偏最小二乘,遗传函数逼近和遗传偏最小二乘。基于应用于标准化二维描述符矩阵的K均值聚类技术,将数据集分为训练集(n = 15)和测试集(n = 6),并从训练集化合物开发模型。基于最高外部预测R-2(R-pred(2))值(0.840)和预测值的最低均方根误差(0.351)选择最佳模型(使用二维描述符的遗传偏最小二乘模型) )。发达的QSAR方程表明在2和3位上存在双键的重要性,并要求在1,4-苯并吡喃酮核的3位上不存在羟基取代基或糖苷键。此外,存在于1,4-苯并吡喃酮环的2位上的苯环不应被羟基取代。此外,为了获得良好的细胞色素P450 1A2酶抑制活性,不应将苯并吡喃核的5和7位上存在的羟基糖基化。

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