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Receptor-based 3D-QSAR in Drug Design: Methods and Applications in Kinase Studies

机译:药物设计中基于受体的3D-QSAR:激酶研究中的方法和应用

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摘要

Receptor-based 3D-QSAR strategy represents a superior integration of structure-based drug design (SBDD) and three-dimensional quantitative structure-activity relationship (3D-QSAR) analysis. It combines the accurate prediction of ligand poses by the SBDD approach with the good predictability and interpretability of statistical models derived from the 3D-QSAR approach. Extensive efforts have been devoted to the development of receptor-based 3D-QSAR methods and two alternative approaches have been exploited. One associates with computing the binding interactions between a receptor and a ligand to generate structure-based descriptors for QSAR analyses. The other concerns the application of various docking protocols to generate optimal ligand poses so as to provide reliable molecular alignments for the conventional 3D-QSAR operations. This review highlights new concepts and methodologies recently developed in the field of receptor-based 3D-QSAR, and in particular, covers its application in kinase studies.
机译:基于受体的3D-QSAR策略代表了基于结构的药物设计(SBDD)和三维定量构效关系(3D-QSAR)分析的出色整合。它结合了SBDD方法对配位体姿势的准确预测与3D-QSAR方法衍生的统计模型的良好可预测性和可解释性。致力于基于受体的3D-QSAR方法的广泛开发,并开发了两种替代方法。一个与计算受体和配体之间的结合相互作用相关联以产生用于QSAR分析的基于结构的描述符。另一个问题涉及各种对接规程的应用,以生成最佳的配体位姿,从而为常规3D-QSAR操作提供可靠的分子比对。这篇综述重点介绍了最近在基于受体的3D-QSAR领域中开发的新概念和方法,特别是涵盖了其在激酶研究中的应用。

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