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Fully Automated Flexible Docking of Ligands into Flexible Synthetic Receptors Using Forward and Inverse Docking Strategies

机译:使用正向和反向对接策略将配体全自动灵活对接到柔性合成受体中

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The prediction of the structure of host-guest complexes is one of the most challenging problems in supramolecular chemistry.Usual procedures for docking of ligands into receptors do not take full conformational freedom of the host molecule into account.We describe and apply a new docking approach which performs a conformational sampling of the host and then sequentially docks the ligand into all receptor conformers using the incremental construction technique of the FlexX software platform.The applicability of this approach is validated on a set of host-guest complexes with known crystal structure.Moreover,we demonstrate that due to the interchangeability of the roles of host and guest,the docking process can be inverted.In this inverse docking mode,the receptor molecule is docked around its ligand.For all investigated test cases,the predicted structures are in good agreement with the experiment for both normal (forward) and inverse docking.Since the ligand is often smaller than the receptor and,thus,its conformational space is more restricted,the inverse docking approach leads in most cases to considerable speed-up.By having the choice between two alternative docking directions,the application range of the method is significantly extended.Finally,an important result of this study is the suitability of the simple energy function used here for structure prediction of complexes in organic media.
机译:客体-客体复合物结构的预测是超分子化学中最具挑战性的问题之一。通常将配体对接入受体的程序并未考虑到宿主分子的完全构象自由度,我们描述并应用了一种新的对接方法该方法先对宿主进行构象取样,然后使用FlexX软件平台的增量构建技术将配体顺序对接到所有受体构象体中,此方法的适用性在一组具有已知晶体结构的宿主-客体复合物中得到验证。我们证明,由于宿主和客体角色的互换性,对接过程可以反转。在这种反向对接方式下,受体分子围绕其配体对接。对于所有研究的测试案例,预测结构均良好正对接和反向对接均与实验一致,因为配体通常小于反向感受器,因此其构象空间受到更多限制,逆向对接方法在大多数情况下会导致相当大的提速。通过在两个替代的对接方向之间进行选择,该方法的应用范围得到了大大扩展。这项研究的结果是,此处使用的简单能量函数适用于有机介质中复合物的结构预测。

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