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Recipes for the Selection of Experimental Protein Conformations for Virtual Screening

机译:选择用于虚拟筛选的实验蛋白质构象的食谱

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The use of multiple X-ray protein structures has been reported to be an efficient alternative for the representation of the binding pocket flexibility needed for accurate small molecules docking. However, the docking performance of the indivDEual Single conformations varies wDEely, and adding certain conformations to an ensemble is even counterproductive. Here we used a very large and diverse benchmark of 1068 X-ray protein conformations of 99 therapeutically relevant proteins, first, to compare the performance of the ensemble and single-conformation docking and, second, to find the properties of the best-performing conformers that can be used to select a smaller set of conformers for ensemble docking. The conformer selection has been valDEated through retrospective virtual screening experiments aimed at separating known ligand binders from decoys. We found that the conformers cocrystallized with the largest ligands displayed high selectivity for binders, and when combined in ensembles they consistently provDEed better results than randomly chosen protein conformations. The use of ensembles encompassing between 3 and 5 experimental conformations consistently improved the docking accuracy and binders vs decoys separation.
机译:据报道,使用多种X射线蛋白质结构是表示精确的小分子对接所需的结合口袋柔性的有效替代方法。但是,单个“单一”构象的对接性能会发生很大变化,并且向集合中添加某些构象甚至会适得其反。在这里,我们使用了99种与治疗相关的蛋白质的1068种X射线蛋白质构象的非常大且多样的基准,首先,比较整体和单一构象对接的性能,其次,找到表现最佳的构象异构体的特性。可以用来选择较小的一组构象子进行整体对接。通过回顾性虚拟筛选实验对构象异构体的选择进行了评估,该实验旨在从诱饵中分离出已知的配体结合物。我们发现与最大配体共结晶的构象异构体对结合剂表现出很高的选择性,当与整体结合时,它们始终提供比随机选择的蛋白质构象更好的结果。包含3至5个实验构象的合奏的使用不断提高了对接精度,结合剂与诱饵的分离效果也得到了提高。

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