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Recent Developments in the Interactions of Classic Intercalated Ruthenium Compounds: Ru(bpy)2dppz2+ and Ru(phen)2dppz2+ with a DNA Molecule

机译:最近经典嵌入钌化合物的相互作用的发展:Ru(BPY)2dPPZ 2+和Ru(phen)2dppz 2+用DNA分子

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摘要

[Ru(bpy)2dppz]2+ and [Ru(phen)2dppz]2+ as the light switches of the deoxyribose nucleic acid (DNA) molecule have attracted much attention and have become a powerful tool for exploring the structure of the DNA helix. Their interactions have been intensively studied because of the excellent photophysical and photochemical properties of ruthenium compounds. In this perspective, this review describes the recent developments in the interactions of these two classic intercalated compounds with a DNA helix. The mechanism of the molecular light switch effect and the selectivity of these two compounds to different forms of a DNA helix has been discussed. In addition, the specific binding modes between them have been discussed in detail, for a better understanding the mechanism of the light switch and the luminescence difference. Finally, recent studies of single molecule force spectroscopy have also been included so as to precisely interpret the kinetics, equilibrium constants, and the energy landscape during the process of the dynamic assembly of ligands into a single DNA helix.
机译:的[Ru(联吡啶)2dppz] 2+和[茹(phen)的2dppz] 2+作为脱氧核糖核酸(DNA)分子的光开关而备受关注,并已成为探索DNA螺旋的结构的功能强大的工具。它们的相互作用进行了深入研究,因为钌化合物的优异的光物理和光化学性质的。从这个角度来看,这种审查描述与DNA螺旋这两种经典插层化合物的相互作用的最近发展。的分子光开关效应和这两种化合物以不同的形式的DNA螺旋的选择性的机制进行了讨论。此外,特异性结合在它们之间的模式进行了详细的讨论,以便更好地理解该光开关的机构和该发光差别。最后,近期的单分子力谱的研究也被列入,以动态的配体组装的过程变成一个单一的DNA螺旋中精确地解释动力学,平衡常数和能源格局。

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