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@TOME 3.0:蛋白质结构建模与配体对接的接口。

@TOME 3.0: Interfacing Protein Structure Modeling and Ligand Docking.

机构信息

A.B.C.I.S, CNRS UMR5048 - INSERM U1054 - Université de Montpellier 29, Rue de Navacelles, 34090 Montpellier Cedex, France.

Seven Past Nine d.o.o., Hribljane 10, 1380 Cerknica, Slovenia.

出版信息

J Mol Biol. 2024 Sep 1;436(17):168704. doi: 10.1016/j.jmb.2024.168704. Epub 2024 Jul 22.

Abstract

Knowledge of protein-ligand complexes is essential for efficient drug design. Virtual docking can bring important information on putative complexes but it is still far from being simultaneously fast and accurate. Receptors are flexible and adapt to the incoming small molecules while docking is highly sensitive to small conformational deviations. Conformation ensemble is providing a mean to simulate protein flexibility. However, modeling multiple protein structures for many targets is seldom connected to ligand screening in an efficient and straightforward manner. @TOME-3 is an updated version of our former pipeline @TOME-2, in which protein structure modeling is now directly interfaced with flexible ligand docking. Sequence-sequence profile comparisons identify suitable PDB templates for structure modeling and ligands from these templates are used to deduce binding sites to be screened. In addition, bound ligand can be used as pharmacophoric restraint during the virtual docking. The latter is performed by PLANTS while the docking poses are analysed through multiple chemoinformatics functions. This unique combination of tools allows rapid and efficient ligand docking on multiple receptor conformations in parallel. @TOME-3 is freely available on the web at https://atome.cbs.cnrs.fr.

摘要

蛋白质-配体复合物的知识对于高效的药物设计至关重要。虚拟对接可以提供关于假定复合物的重要信息,但它仍然远远不能同时快速准确。受体是灵活的,可以适应传入的小分子,而对接对小的构象偏差非常敏感。构象集合为模拟蛋白质的柔性提供了一种手段。然而,对于许多靶点,对多个蛋白质结构进行建模很少能够以有效和直接的方式与配体筛选联系起来。@TOME-3 是我们之前的管道 @TOME-2 的更新版本,其中蛋白质结构建模现在直接与柔性配体对接接口。序列-序列轮廓比较为结构建模识别合适的 PDB 模板,并且从这些模板中推断出要筛选的结合位点的配体。此外,在虚拟对接过程中,可以将结合配体用作药效团约束。后者由 PLANTS 执行,而对接构象通过多种化学信息学功能进行分析。这种独特的工具组合允许在多个受体构象上快速高效地进行配体对接。@TOME-3 可在 https://atome.cbs.cnrs.fr 上免费获得。

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