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首页> 外文期刊>Molecular diversity >Benzo[e]pyrimido[5,4-b][1,4]diazepin-6(11H)-one derivatives as Aurora A kinase inhibitors: LQTA-QSAR analysis and detailed systematic validation of the developed model
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Benzo[e]pyrimido[5,4-b][1,4]diazepin-6(11H)-one derivatives as Aurora A kinase inhibitors: LQTA-QSAR analysis and detailed systematic validation of the developed model

机译:苯并[e] pyrimido [5,4-b] [1,4] diazepin-6(11H)-one衍生物作为Aurora A激酶抑制剂:LQTA-QSAR分析和开发模型的详细系统验证

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摘要

Aurora kinases are sub-divided into Aurora A, Aurora B, and Aurora C kinases that are considered as prospective targets for a new class of anticancer drugs. In this work, a 4-D-QSAR model using an LQTA-QSAR approach with previously reported 31 derivatives of benzo[e]pyrimido[5,4 -b][1,4]diazepin -6(11H)-one as potent Aurora kinase A inhibitors has been created. Instead of single conformation, the conformational ensemble profile generated for each ligand by using trajectories and topology information retrieved from molecular dynamics simulations from GROMACS package were aligned and used for the calculation of intermolecular interaction energies at each grid point. The descriptors generated on the basis of these Coulomb and Lennard-Jones potentials as independent variables were used to perform a PLS analysis using biological activity as dependent variable. A good predictive model was generated with nine field descriptors and five latent variables. The model showed ; and . This model was further validated systematically by using different validation parameters. This 4D-QSAR model gave valuable information to recognize features essential to adapt and develop novel potential Aurora kinase inhibitors.
机译:Aurora激酶又分为Aurora A,Aurora B和Aurora C激酶,它们被视为新型抗癌药物的预期靶标。在这项工作中,使用LQTA-QSAR方法的4-D-QSAR模型与先前报道的31种苯并[e]嘧啶基[5,4-b] [1,4]二氮杂-6(11H)-衍生物为有效已经建立了极光激酶A抑制剂。代替单一构象,将通过使用从GROMACS软件包的分子动力学模拟中检索的轨迹和拓扑信息为每个配体生成的构象总体轮廓进行对齐​​,并将其用于计算每个网格点的分子间相互作用能。基于这些库仑势和伦纳德·琼斯势作为自变量生成的描述符用于使用生物活性作为因变量进行PLS分析。使用九个字段描述符和五个潜在变量生成了一个良好的预测模型。模型显示;和。通过使用不同的验证参数进一步对该模型进行了系统验证。此4D-QSAR模型提供了宝贵的信息,可识别出适应和开发新型潜在Aurora激酶抑制剂必不可少的功能。

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