School of Chemistry, Cardiff University, Park Place, Cardiff, UK.
J Phys Chem A. 2011 Oct 20;115(41):11293-302. doi: 10.1021/jp2049487. Epub 2011 Aug 3.
Density functional theory (DFT) calculations have been performed to determine the strength and geometry of intermolecular interactions of "piano-stool" ruthenium arene complexes, which show potential as anticancer treatments. Model complexes with methane and benzene indicate that the coordinated arene has C-H···π acceptor ability similar to that of free benzene, whereas this arene acts as a much stronger C-H donor or partner in π-stacking than free benzene. The source of these enhanced interactions is identified as a combination of electrostatic and dispersion effects. Complexes of Ru-arene complexes with base-pair step fragments of DNA, in which the arene has the potential to act as an intercalator, have also been investigated. Binding energies are found to be sensitive to the size and nature of the arene, with larger and more flexible arenes having stronger binding. π-stacking and C-H···π interactions between arene and DNA bases and hydrogen bonds from coordinated N-H to DNA oxygen atoms, as well as covalent Ru-N bonding, contribute to the overall binding. The effect of complexation on DNA structure is also examined, with larger rise and more negative slide values than canonical B-DNA observed in all cases.
密度泛函理论(DFT)计算已被用于确定“钢琴凳”钌芳烃配合物的分子间相互作用的强度和几何形状,这些配合物具有作为抗癌治疗的潜力。具有甲烷和苯的模型配合物表明,配位芳烃具有类似于游离苯的 C-H···π 受体能力,而这种芳烃作为 C-H 供体或 π-堆积中的伙伴比游离苯强得多。这些增强相互作用的来源被确定为静电和色散效应的组合。还研究了与 DNA 碱基步片段的 Ru-芳烃配合物的复合物,其中芳烃有可能作为嵌入剂。发现结合能对芳烃的大小和性质敏感,较大和较灵活的芳烃具有更强的结合能力。芳烃与 DNA 碱基之间的π-堆积和 C-H···π 相互作用以及来自配位 N-H 的氢键与 DNA 氧原子以及共价 Ru-N 键合,有助于整体结合。还检查了配合物对 DNA 结构的影响,在所有情况下观察到的上升和负滑值都比规范 B-DNA 大。