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首页> 外文期刊>Journal of chemical theory and computation: JCTC >A base-sugar-phosphate three-layer ONIOM model for cation binding: Relative binding affinities of alkali metal ions for phosphate anion in DNA
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A base-sugar-phosphate three-layer ONIOM model for cation binding: Relative binding affinities of alkali metal ions for phosphate anion in DNA

机译:阳离子糖基磷酸三层糖基ONIOM模型:DNA中碱金属离子对磷酸根阴离子的相对结合亲和力

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摘要

A three layer ONIOM approach was used to study the interactions of hydrated alkali metal ions such as Li+, Na+, and K+ with a DNA fragment containing two phosphate groups, three sugar units, and a G center dot center dot C base pair modeled in the anion and dianion states. Among the three metal- binding combinations studied herein (outer- sphere, inner- sphere monodentate, and inner- sphere bidentate), the outer- sphere binding mode showed the highest binding energy (BE) for hydrated Li+ ions (103.1 kcal/ mol) while the hydrated Na+ and K+ ions preferred the inner-sphere monodentate binding modes to the phosphate group of the anionic DNA fragment (BE) 87.9 and 98.2 kcal/ mol for Na+ and K+, respectively). These data on the binding mechanisms of Li+, Na+, and K+ ions and the higher binding affinity of Li+ ions compared to Na+ and K+ ions in the anion model system of DNA are in good agreement with the previous experimental findings. On the other hand, in the dianion state, Li+ preferred inner- sphere monodentate, whereas Na+ and K+ ions preferred the outer- sphere structures. The neutral anion model ion revealed a more realistic picture of DNA- alkali metal ion interactions compared to the non- neutral dianion model systems.
机译:使用三层ONIOM方法研究水合碱金属离子(例如Li +,Na +和K +)与包含两个磷酸基,三个糖单元和一个G中心点中心点C碱基对的DNA片段的相互作用。阴离子和双阴离子状态。在本文研究的三种金属结合组合(外层,内层单齿和内层双齿)中,外层结合模式显示出水合Li +离子的最高结合能(BE)(103.1 kcal / mol)而水合的Na +和K +离子更倾向于内球单齿与阴离子DNA片段(BE)磷酸根的单齿结合模式,Na +和K +分别为87.9和98.2 kcal / mol。这些有关Li +,Na +和K +离子结合机理的数据以及与DNA阴离子模型系统中的Na +和K +离子相比,Li +离子具有更高的结合亲和力的数据与先前的实验结果非常吻合。另一方面,在二价阴离子状态下,Li +优选内球单齿,而Na +和K +离子优选外球结构。与非中性双阴离子模型系统相比,中性阴离子模型离子显示了更真实的DNA-碱金属离子相互作用的图像。

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