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DOCK 6: Combining techniques to model RNA–small molecule complexes

机译:DOCK 6:结合技术来模拟RNA小分子复合物

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摘要

With an increasing interest in RNA therapeutics and for targeting RNA to treat disease, there is a need for the tools used in protein-based drug design, particularly DOCKing algorithms, to be extended or adapted for nucleic acids. Here, we have compiled a test set of RNA–ligand complexes to validate the ability of the DOCK suite of programs to successfully recreate experimentally determined binding poses. With the optimized parameters and a minimal scoring function, 70% of the test set with less than seven rotatable ligand bonds and 26% of the test set with less than 13 rotatable bonds can be successfully recreated within 2 Å heavy-atom RMSD. When DOCKed conformations are rescored with the implicit solvent models AMBER generalized Born with solvent-accessible surface area (GB/SA) and Poisson–Boltzmann with solvent-accessible surface area (PB/SA) in combination with explicit water molecules and sodium counterions, the success rate increases to 80% with PB/SA for less than seven rotatable bonds and 58% with AMBER GB/SA and 47% with PB/SA for less than 13 rotatable bonds. These results indicate that DOCK can indeed be useful for structure-based drug design aimed at RNA. Our studies also suggest that RNA-directed ligands often differ from typical protein–ligand complexes in their electrostatic properties, but these differences can be accommodated through the choice of potential function. In addition, in the course of the study, we explore a variety of newly added DOCK functions, demonstrating the ease with which new functions can be added to address new scientific questions.
机译:随着人们对RNA治疗方法的兴趣日益浓厚,并越来越多地将RNA靶向治疗疾病,人们需要对基于蛋白质的药物设计中使用的工具(尤其是DOCKing算法)进行扩展或使其适用于核酸。在这里,我们已经编译了一套RNA-配体复合物测试集,以验证DOCK程序套件成功重现实验确定的结合姿势的能力。通过优化的参数和最小的评分功能,可以在2Å重原子RMSD内成功重建70%少于7个可旋转配体键的测试集和26%少于13个可旋转键的测试集。当用隐式溶剂模型对DOCKed构象进行重述时,将AMBER广义Born与溶剂可及表面积(GB / SA)进行比较,将Poisson-Boltzmann与溶剂可及表面积(PB / SA)结合使用显式水分子和钠反离子,对于少于七个可旋转债券,PB / SA的成功率提高到80%,对于AMBER GB / SA,少于13个可旋转债券的成功率提高到58%。这些结果表明DOCK确实可以用于针对RNA的基于结构的药物设计。我们的研究还表明,RNA定向的配体在静电特性上通常不同于典型的蛋白质-配体复合物,但可以通过选择潜在功能来适应这些差异。此外,在研究过程中,我们探索了各种新添加的DOCK函数,证明了可以轻松添加新函数来解决新的科学问题。

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