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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Docking, 3D-QSAR studies and in silico ADME prediction on c-Src tyrosine kinase inhibitors.
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Docking, 3D-QSAR studies and in silico ADME prediction on c-Src tyrosine kinase inhibitors.

机译:c-Src酪氨酸激酶抑制剂的对接,3D-QSAR研究和计算机模拟ADME。

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摘要

Docking simulations and three-dimensional quantitative structure-activity relationship (3D-QSAR) analysis were performed on a wide set of c-Src inhibitors. The study was conducted using a structure-based alignment and by applying the GRID/GOLPE approach. The present 3D-QSAR investigation proved to be of good statistical value, displaying r(2), q(2) and cross-validation SDEP values of 0.94, 0.84 and 0.42, respectively. Moreover, such a model also proved to be capable of predicting the activities of an external test set of compounds. The availability of the 3D structure of the target made possible the interpretation of steric and electrostatic maps within the binding site environment and provided useful insight into the structural requirements for inhibitory activity against c-Src. Two regions whose occupation by hydrophobic portions of ligands would favourably affect the activity were clearly identified. Moreover, hydrogen bond interactions involving residues Met343, Asp406 and Ser347 emerged as playinga key role in determining the affinity of the active inhibitors toward c-Src. Furthermore, the inhibitors bearing a basic nitrogen provided enhanced potency through protonation and salt bridge formation with Asp350. A preliminary pharmacokinetic profile of the molecules under analysis was also drawn on the basis of Volsurf predictions.
机译:对多种c-Src抑制剂进行了对接模拟和三维定量构效关系(3D-QSAR)分析。该研究使用基于结构的比对并通过使用GRID / GOLPE方法进行。当前的3D-QSAR研究证明具有良好的统计价值,分别显示r(2),q(2)和交叉验证的SDEP值分别为0.94、0.84和0.42。此外,这种模型还被证明能够预测化合物外部测试集的活性。靶标3D结构的可用性使解释结合位点环境中的空间图和静电图成为可能,并为了解对c-Src抑制活性的结构要求提供了有用的见识。清楚地确定了两个区域,其被配体的疏水部分占据将有利地影响活性。此外,涉及残基Met343,Asp406和Ser347的氢键相互作用在确定活性抑制剂对c-Src的亲和力中起着关键作用。此外,带有碱性氮的抑制剂通过Asp350的质子化和盐桥形成,提供了增强的效能。还根据Volsurf预测得出了所分析分子的初步药代动力学概况。

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