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Selective Binding of Distamycin A Derivative to G-Quadruplex Structure d(TGGGGT)4

机译:Distamycin A衍生物与G-四链体结构d(TGGGGT) 4的选择性结合

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摘要

Guanine-rich nucleic acid sequences can adopt G-quadruplex structures stabilized by layers of four Hoogsteen-paired guanine residues. Quadruplex-prone sequences are found in many regions of human genome and in the telomeres of all eukaryotic organisms. Since small molecules that target G-quadruplexes have been found to be effective telomerase inhibitors, the identification of new specific ligands for G-quadruplexes is emerging as a promising approach to develop new anticancer drugs. Distamycin A is known to bind to AT-rich sequences of duplex DNA, but it has recently been shown to interact also with G-quadruplexes. Here, isothermal titration calorimetry (ITC) and NMR techniques have been employed to characterize the interaction between a dicationic derivative of distamycin A (compound >1) and the [d(TGGGGT)]4 quadruplex. Additionally, to compare the binding behaviour of netropsin and compound >1 to the same target, a calometric study of the interaction between netropsin and [d(TGGGGT)]4 has been performed. Experiments show that netropsin and compound >1 are able to bind to [d(TGGGGT)]4 with good affinity and comparable thermodynamic profiles. In both cases the interactions are entropically driven processes with a small favourable enthalpic contribution. Interestingly, the structural modifications of compound >1 decrease the affinity of the ligand toward the duplex, enhancing the selectivity.
机译:富含鸟嘌呤的核酸序列可以采用由四个Hoogsteen-成对鸟嘌呤残基的层稳定的G-四链体结构。在人类基因组的许多区域和所有真核生物的端粒中都发现了易产生四链体的序列。由于已经发现靶向G-四链体的小分子是有效的端粒酶抑制剂,因此针对G-四链体的新特异性配体的鉴定正在作为开发新的抗癌药物的有前途的方法而出现。已知双霉素A可以与富含AT的双链体DNA序列结合,但是最近显示它也可以与G-四链体相互作用。在这里,已采用等温滴定热法(ITC)和NMR技术表征了双霉素A的双效衍生物(化合物> 1 )与[d(TGGGGT)] 4四联体之间的相互作用。此外,为了比较Netropsin和化合物> 1 与同一靶标的结合行为,对Netropsin与[d(TGGGGT)] 4之间的相互作用进行了计量研究。实验表明,netropsin和化合物> 1 能够以良好的亲和力和相当的热力学特性与[d(TGGGGT)] 4结合。在这两种情况下,相互作用都是熵驱动的过程,焓的贡献很小。有趣的是,化合物> 1 的结构修饰降低了配体对双链体的亲和力,从而提高了选择性。

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