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评估小分子与 G-四链体 DNA 结合的分子对接软件。

Evaluating Molecular Docking Software for Small Molecule Binding to G-Quadruplex DNA.

机构信息

Department of Medicinal Chemistry and Molecular Pharmacology, College of Pharmacy, Purdue University, 575 W Stadium Ave, West Lafayette, IN 47907, USA.

Department of Chemistry and Physical Sciences, Pace University, 1 Pace Plaza, New York, NY 10038, USA.

出版信息

Int J Mol Sci. 2021 Oct 6;22(19):10801. doi: 10.3390/ijms221910801.

Abstract

G-quadruplexes are four-stranded nucleic acid secondary structures of biological significance and have emerged as an attractive drug target. The G4 formed in the promoter (MycG4) is one of the most studied small-molecule targets, and a model system for parallel structures that are prevalent in promoter DNA G4s and RNA G4s. Molecular docking has become an essential tool in structure-based drug discovery for protein targets, and is also increasingly applied to G4 DNA. However, DNA, and in particular G4, binding sites differ significantly from protein targets. Here we perform the first systematic evaluation of four commonly used docking programs (AutoDock Vina, DOCK 6, Glide, and RxDock) for G4 DNA-ligand binding pose prediction using four small molecules whose complex structures with the MycG4 have been experimentally determined in solution. The results indicate that there are considerable differences in the performance of the docking programs and that DOCK 6 with GB/SA rescoring performs better than the other programs. We found that docking accuracy is mainly limited by the scoring functions. The study shows that current docking programs should be used with caution to predict G4 DNA-small molecule binding modes.

摘要

四链体是具有生物学意义的四级核酸二级结构,已成为有吸引力的药物靶点。在启动子(MycG4)中形成的 G4 是研究最多的小分子靶标之一,也是在启动子 DNA G4 和 RNA G4 中普遍存在的平行结构的模型系统。分子对接已成为基于结构的药物发现中针对蛋白质靶标的重要工具,并且也越来越多地应用于 G4 DNA。然而,DNA,特别是 G4,结合位点与蛋白质靶标有很大的不同。在这里,我们使用四个已经在溶液中通过实验确定与 MycG4 形成复合物结构的小分子,对四种常用的对接程序(AutoDock Vina、DOCK 6、Glide 和 RxDock)进行了首次系统评估,以预测 G4 DNA-配体结合构象。结果表明,对接程序的性能存在很大差异,并且使用 GB/SA 重新评分的 DOCK 6 比其他程序表现更好。我们发现对接准确性主要受到评分函数的限制。该研究表明,目前应谨慎使用对接程序来预测 G4 DNA-小分子结合模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e394/8509811/0af8a01c28f3/ijms-22-10801-g001.jpg

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