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QSAR and molecular docking studies of 13-dioxoisoindoline-4-aminoquinolines as potent antiplasmodium hybrid compounds

机译:13-二氧代异吲哚啉-4-氨基喹啉作为有效的抗疟原虫杂化化合物的QSAR和分子对接研究

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摘要

Quantitative structure–activity relationships (QSAR) provides a model that link biological activities of compounds to thier chemical stuctures and molecular docking study reveals the interaction between drug and its target enzyme. These studies were conducted on 1,3-dioxoisoindoline-4-aminoquinolines with the aim of producing a model that could be used to design highly potent antiplasmodium. The compounds were first optimized using Density Functional Theory (DFT) with basis set B3LYP/6-31G∗ then their descriptors calculated. Genetic Function Algorithm (GFA) was used to select descriptors and build the model. One of the four models generated was found to be the best having internal and external squared correlation coefficient ( ) of 0.9459 and 0.7015 respectively, adjusted squared correlation coefficient ( ) of 0.9278, leave-one-out (LOO) cross-validation coefficient ( ) of 0.8882. The model shows that antiplasmodial activities of 1,3-dioxoisoindoline-4-aminoquinolines depend on ATSC5i, GATS8p, minHBint3, minHBint5, MLFER_A and topoShape descriptors. The model was validated to be predictive, robust and reliable. Hence, it can predict the antiplasmodium activities of new 1,3-dioxoisoindoline-4-aminoquinolines.The docking result indicates strong binding between 1,3-dioxoisoindoline-4-aminoquinolines and lactate dehydrogenase ( LDH), and revealed the important of the morpholinyl substituent and amide linker in inhibiting LDH. These results could serve as a model for designing novel 1,3-dioxoisoindoline-4-aminoquinolines as inhibitors of LDH with higher antiplasmodial activities.
机译:定量构效关系(QSAR)提供了一个模型,将化合物的生物学活性与化学结构联系起来,分子对接研究揭示了药物与其靶酶之间的相互作用。这些研究是在1,3-二氧代异吲哚啉-4-氨基喹啉上进行的,目的是产生可用于设计高效抗疟原虫的模型。首先使用密度泛函理论(DFT)对化合物进行基础B3LYP / 6-31G *的优化,然后计算其描述符。遗传函数算法(GFA)用于选择描述符并建立模型。发现生成的四个模型之一是最好的,其内部和外部平方相关系数()分别为0.9459和0.7015,调整后平方相关系数()为0.9278,留一法(LOO)交叉验证系数()为0.8882。该模型显示1,3-二氧代异吲哚啉-4-氨基喹啉的抗血浆活性取决于ATSC5i,GATS8p,minHBint3,minHBint5,MLFER_A和topoShape描述子。该模型经验证具有预测性,鲁棒性和可靠性。因此,它可以预测新的1,3-二氧代异吲哚啉-4-氨基喹啉的抗疟原虫活性。对接结果表明1,3-二氧代异吲哚啉-4-氨基喹啉与乳酸脱氢酶(LDH)有很强的结合力,并揭示了吗啉基的重要性。取代基和酰胺连接基抑制LDH。这些结果可作为设计新型1,3-二氧代异吲哚啉-4-氨基喹啉作为LDH具有较高抗血浆活性的抑制剂的模型。

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