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首页> 外文期刊>Medicinal chemistry >Molecular features for antitrypanosomal activity of thiosemicarbazones revealed by OPS-PLS QSAR studies
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Molecular features for antitrypanosomal activity of thiosemicarbazones revealed by OPS-PLS QSAR studies

机译:OPS-PLS QSAR研究揭示了硫半脲的抗锥虫活性的分子特征

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A quantitative structure-activity relationship analysis was employed to explore the relationship between the molecular structure of thiosemicarbazone analogues and the inhibition of the cysteine protease cruzain, a validated target for Chagas' disease treatment. A data set containing 53 thiosemicarbazone derivatives was used to produce a quantitative model for activity prediction of unknown compounds. Several electronic descriptors were obtained through DFT calculations, along with a large amount of Dragon descriptors. The ordered predictor selection (OPS) algorithm was employed to select the most relevant descriptors to perform PLS regressions. With this procedure, significant correlation coefficients (r 2 = 0.85, q 2 = 0.78) were achieved. Furthermore, predicted values for an external test set are in good agreement with the experimental results, indicating the potential of the model for untested compounds. Additional validation tests were carried out, indicating that a robust and reliable model was obtained to be used in the design of new thiosemicarbazones with improved cruzain inhibition potential.
机译:通过定量的构效关系分析,探讨了硫半脲酮类似物的分子结构与半胱氨酸蛋白酶克鲁萨因的抑制之间的关系。包含53个硫半脲衍生物的数据集用于产生定量模型以预测未知化合物的活性。通过DFT计算获得了一些电子描述符,以及大量的Dragon描述符。使用有序预测变量选择(OPS)算法来选择最相关的描述符以执行PLS回归。通过该程序,获得了显着的相关系数(r 2 = 0.85,q 2 = 0.78)。此外,外部测试集的预测值与实验结果非常吻合,表明该模型具有未经测试的化合物的潜力。进行了额外的验证测试,表明获得了可靠而可靠的模型,可用于设计具有改善的克鲁萨因抑制潜力的新型硫代半脲。

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