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首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Molecular docking and dynamics simulations on the interaction of cationic porphyrin-anthraquinone hybrids with DNA G-quadruplexes
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Molecular docking and dynamics simulations on the interaction of cationic porphyrin-anthraquinone hybrids with DNA G-quadruplexes

机译:分子对接与动力学模拟阳离子卟啉 - 蒽醌杂种与DNA G-四边形的相互作用

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摘要

A series of cationic porphyrin-anthraquinone hybrids bearing either pyridine, imidazole, or pyrazole rings at the meso-positions have been investigated for their interaction with DNA G-quadruplexes by employing molecular docking and molecular dynamics simulations. Three types of DNA G-quadruplexes were utilized, which comprise parallel, antiparallel, and mixed hybrid topologies. The porphyrin hybrids have a preference to bind with parallel and mixed hybrid structures compared to the antiparallel structure. This preference arises from the end stacking of porphyrin moiety following G-stem and loop binding of anthraquinone tail, which is not found in the antiparallel due to the presence of diagonal and lateral loops that crowd the G-quartet. The binding to the antiparallel, instead, occurred with poorer affinity through both the loop and wide groove. All sites of porphyrin binding were confirmed by 6ns molecular dynamics simulation, as well as by the negative value of the total binding free energies that were calculated using the MMPBSA method. Free energy analysis shows that the favorable contribution came from the electrostatic term, which supposedly originated from the interaction of either cationic pyridinium, pyrazole, or imidazole groups and the anionic phosphate backbone, and also from the van der Waals energy, which primarily contributed through end stacking interaction.
机译:已经研究了一系列阳离子卟啉-AnthraquinonOnOnOnone杂交物,其通过采用分子对接和分子动力学模拟,研究了含有吡啶,咪唑或吡唑环的吡啶,咪唑或吡唑环与DNA G-四配合物相互作用。利用了三种类型的DNA G-四链复合物,其包含平行,反平行和混合的混合拓扑。与反平行结构相比,卟啉杂交物优选与平行和混合的混合结构结合。这种偏好是从卟啉部分的端部堆叠之后的蒽醌尾部的卟啉部分的末端堆叠,这在反平行中未发现,因为存在对角部和侧环的存在,这使得G-四重奏的横向环。相反,与反平行的结合,通过环形和宽凹槽较差。通过6ns的分子动力学模拟证实了所有卟啉结合的靶向卟啉结合,以及使用MMPBSA方法计算的总结合能量的负值。自由能量分析表明,良好的贡献来自静电术语,该潜在术语来自阳离子吡啶鎓,吡唑或咪唑基团和阴离子磷酸盐骨架的相互作用,以及van der Waals能量,主要贡献到末端堆叠互动。

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