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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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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 A 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:随着对RNA疗法的关注以及针对RNA治疗疾病的日益增长的需求,需要对基于蛋白质的药物设计中使用的工具,特别是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-配体复合物的测试集,以验证DOCK程序套件成功重建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2 A重原子RMSD范围内成功重建70%的测试组合(少于7个可旋转配体键)和26%的测试组合(少于13个可旋转键)。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)结合,将Poisson-Boltzmann与溶剂可及表面积(PB / SA)结合显式水分子和钠抗衡离子,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%;对于PB / SA,少于13个可旋转债券的成功率提高到47%。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,但是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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