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PNAS Plus: Ligand binding to telomeric G-quadruplex DNA investigated by funnel-metadynamics simulations

机译:PNAS Plus:配体与端粒G-四链体DNA的结合通过漏斗-元动力学模拟研究

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摘要

G-quadruplexes (G4s) are higher-order DNA structures typically present at promoter regions of genes and telomeres. Here, the G4 formation decreases the replicative DNA at each cell cycle, finally leading to apoptosis. The ability to control this mitotic clock, particularly in cancer cells, is fascinating and passes through a rational understanding of the ligand/G4 interaction. We demonstrate that an accurate description of the ligand/G4 binding mechanism is possible using an innovative free-energy method called funnel-metadynamics (FM), which we have recently developed to investigate ligand/protein interaction. Using FM simulations, we have elucidated the binding mechanism of the anticancer alkaloid berberine to the human telomeric G4 (d[AG3(T2AG3)3]), computing also the binding free-energy landscape. Two ligand binding modes have been identified as the lowest energy states. Furthermore, we have found prebinding sites, which are preparatory to reach the final binding mode. In our simulations, the ions and the water molecules have been explicitly represented and the energetic contribution of the solvent during ligand binding evaluated. Our theoretical results provide an accurate estimate of the absolute ligand/DNA binding free energy (ΔGb0 = −10.3 ± 0.5 kcal/mol) that we validated through steady-state fluorescence binding assays. The good agreement between the theoretical and experimental value demonstrates that FM is a most powerful method to investigate ligand/DNA interaction and can be a useful tool for the rational design also of G4 ligands.
机译:G-四链体(G4)是通常存在于基因和端粒启动子区域的高阶DNA结构。在这里,G4的形成减少了每个细胞周期的复制性DNA,最终导致细胞凋亡。控制这个有丝分裂时钟的能力尤其是在癌细胞中,是令人着迷的,并通过对配体/ G4相互作用的合理理解来实现。我们证明了使用一种称为漏斗-动力学(FM)的创新自由能方法对配体/ G4结合机制进行精确描述是可能的,我们最近开发了这种方法来研究配体/蛋白质相互作用。使用FM模拟,我们已经阐明了抗癌生物碱小ber碱与人类端粒G4(d [AG3(T2AG3)3])的结合机制,还计算了结合自由能态势。两种配体结合模式已被确定为最低能态。此外,我们发现了预结合位点,它们为达到最终结合模式作了准备。在我们的模拟中,离子和水分子已被明确表示,并评估了配体结合过程中溶剂的能量贡献。我们的理论结果提供了对绝对配体/ DNA结合自由能的精确估计( Δ G b 0 < / msubsup> = -10.3±0.5 kcal / mol),我们通过稳态荧光结合测定法对其进行了验证。理论值和实验值之间的良好一致性表明,FM是研究配体/ DNA相互作用的最有效方法,并且对于G4配体的合理设计也可能是有用的工具。

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