Sauton Nicolas, Lagorce David, Villoutreix Bruno O, Miteva Maria A
INSERM, U648, 45 rue des Sts Peres, University Paris Descartes, 75006 Paris, France.
BMC Bioinformatics. 2008 Apr 10;9:184. doi: 10.1186/1471-2105-9-184.
The number of protein targets with a known or predicted tri-dimensional structure and of drug-like chemical compounds is growing rapidly and so is the need for new therapeutic compounds or chemical probes. Performing flexible structure-based virtual screening computations on thousands of targets with millions of molecules is intractable to most laboratories nor indeed desirable. Since shape complementarity is of primary importance for most protein-ligand interactions, we have developed a tool/protocol based on rigid-body docking to select compounds that fit well into binding sites.
Here we present an efficient multiple conformation rigid-body docking approach, MS-DOCK, which is based on the program DOCK. This approach can be used as the first step of a multi-stage docking/scoring protocol. First, we developed and validated the Multiconf-DOCK tool that generates several conformers per input ligand. Then, each generated conformer (bioactives and 37970 decoys) was docked rigidly using DOCK6 with our optimized protocol into seven different receptor-binding sites. MS-DOCK was able to significantly reduce the size of the initial input library for all seven targets, thereby facilitating subsequent more CPU demanding flexible docking procedures.
MS-DOCK can be easily used for the generation of multi-conformer libraries and for shape-based filtering within a multi-step structure-based screening protocol in order to shorten computation times.
具有已知或预测三维结构的蛋白质靶点数量以及类药物化合物的数量正在迅速增长,因此对新的治疗化合物或化学探针的需求也在增加。对数千个靶点和数百万个分子进行基于柔性结构的虚拟筛选计算,对于大多数实验室来说既难以处理,实际上也不可取。由于形状互补性对于大多数蛋白质 - 配体相互作用至关重要,我们开发了一种基于刚体对接的工具/协议,以选择适合结合位点的化合物。
在此,我们展示了一种高效的多构象刚体对接方法MS - DOCK,它基于DOCK程序。这种方法可作为多阶段对接/评分协议的第一步。首先,我们开发并验证了Multiconf - DOCK工具,该工具为每个输入配体生成多个构象。然后,使用DOCK6和我们优化的协议将每个生成的构象(生物活性物质和37970个诱饵)刚性对接至七个不同的受体结合位点。对于所有七个靶点,MS - DOCK能够显著减小初始输入库的规模,从而便于后续对计算资源要求更高的柔性对接程序。
MS - DOCK可轻松用于生成多构象库,并在基于结构的多步骤筛选协议中进行基于形状的筛选,以缩短计算时间。