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Delta chirality ruthenium ‘light-switch’ complexes can bind in the minor groove of DNA with five different binding modes

机译:Delta手性钌光开关复合物可以五种不同的结合方式结合在DNA的小沟中

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摘要

[Ru(phen)2(dppz)]2+ has been studied since the 1990s due to its ‘light-switch’ properties. It can be used as a luminescent DNA probe, with emission switched on through DNA binding. The luminescence observed is dependent on the solvent accessibility of the pyrazine nitrogen atoms, and therefore is sensitive to changes in both binding site of the cation and chromophore orientation. The compound is also chiral, and there are distinct differences between the enantiomers in terms of the emission behaviour when bound to a variety of DNA sequences. Whilst a number of binary DNA-complex X-ray crystal structures are available, most include the Λ enantiomer and there is very little structural information about binding of the Δ enantiomer. Here, we present the first X-ray crystal structure of a Δ enantiomer bound to well-matched DNA, in the absence of the other, Λ enantiomer. We show how the binding site observed here can be related to a more general pattern of motifs in the crystallographic literature and propose that the Δ enantiomer can bind with five different binding modes, offering a new hypothesis for the interpretation of solution data.
机译:[Ru(phen)2(dppz)] 2 + 自1990年代以来就因其“光开关”特性而得到研究。它可以用作发光的DNA探针,并通过DNA结合开启发射。观察到的发光取决于吡嗪氮原子的溶剂可及性,因此对阳离子结合位点和生色团方向的变化敏感。该化合物也是手性的,当与多种DNA序列结合时,对映体之间在发射行为方面存在明显差异。尽管有许多二进制的DNA复合X射线晶体结构,但大多数都包含Λ对映体,关于Δ对映体结合的结构信息很少。在此,我们介绍了在没有其他Λ对映异构体的情况下,与良好匹配的DNA结合的Δ对映异构体的第一个X射线晶体结构。我们展示了在晶体学文献中观察到的结合位点如何与更普遍的基序模式相关,并提出了Δ对映异构体可以与五种不同的结合模式结合,为溶液数据的解释提供了新的假设。

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