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QM methods in structure based design: Utility in probing protein-ligand interactions

机译:基于结构的设计中的质量管理方法:探测蛋白质-配体相互作用的工具

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Small changes in ligand structure can lead to large unexpected changes in activity yet it is often not possible to rationalize these effects using empirical modeling techniques, suggesting more effective methods are required. In this study we investigate the use of high level QM methods to study the interactions found within protein-ligand complexes as improved understanding of these could help in the design of new, more active molecules. We study aspects of ligand binding in a set of protein ligand complexes containing ligand efficient, fragment-like inhibitors as these structures are often challenging to determine experimentally. To assess the reliability of our theoretical models we compare the MP2/6-31+G** QM results to the original X-ray coordinates and to QM/MM B3LYP/6-31G*//UFF results which we have previously reported. We also contrast these results with data obtained from an analysis of the distribution of comparable interactions found in (a) high resolution kinase complexes (≤1.8) from the PDB and (b) more generic, small molecule crystal structures from the CSD.
机译:配体结构的细微变化会导致活性大的意外变化,但通常无法使用经验建模技术来合理化这些效果,这表明需要更有效的方法。在这项研究中,我们调查了使用高级QM方法来研究蛋白质-配体复合物中发现的相互作用的过程,因为对它们的更好的了解可以帮助设计新的,更具活性的分子。我们研究了一组蛋白质配体配合物中的配体结合方面,这些蛋白质配体含有配体有效的片段样抑制剂,因为这些结构通常很难通过实验确定。为了评估我们理论模型的可靠性,我们将MP2 / 6-31 + G ** QM结果与原始X射线坐标以及先前报告的QM / MM B3LYP / 6-31G * // UFF结果进行了比较。我们还将这些结果与通过分析在(a)PDB的高分辨率激酶复合物(≤1.8)和(b)CSD的更通用的小分子晶体结构中发现的可比较相互作用的分布的数据进行对比。

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