Faculty of Science, University of Kragujevac, R. Domanovića 12, P. O. Box 60, 34000 Kragujevac, Serbia.
Dalton Trans. 2012 Oct 14;41(38):11608-18. doi: 10.1039/c2dt31225e. Epub 2012 Aug 17.
Half sandwich Ru(II)-[9]aneS3 complexes ([9]aneS3 = 1,4,7-trithiacyclononane) are being studied for their antiproliferative activity. We investigated here the activation kinetics of three such complexes, namely Ru([9]aneS3)(en)Cl (1), Ru([9]aneS3)(bpy)Cl (2) and [Ru([9]aneS3)(pic)Cl] (3) (en = 1,2-diaminoethane, pic = picolinate), and their interaction with DNA model bases. The aim of the study was to assess how they are affected by the nature and charge of the chelating ligand. The model reactions of 1-3 with the guanine derivatives 9-methylguanine (9MeG), guanosine (Guo), and guanosine 5'-monophosphate (5'-GMP) were studied by NMR spectroscopy. All reactions lead, although with different rates and to different extents, to the formation of monofunctional adducts with the guanine derivatives N7-bonded to the Ru center. Two products, the complexes Ru([9]aneS3)(en)(9MeG-N7)(2) (4) and Ru([9]aneS3)(pic)(9MeG-N7) (10), were structurally characterized also by X-ray crystallography. The structure of 4 is stabilized by strong intramolecular H-bonding between an NH of en and the carbonyl O6 of 9MeG. The kinetics of aquation and anation of complexes 2 and 3, as well as the kinetics and the mechanism of the reaction of complexes 1-3 with the biologically more relevant 5'-GMP ligand were studied by UV-Vis spectroscopy. The rate of the reaction of 1-3 with 5'-GMP depends on the nature of the chelating ligand rather than on the charge of the complex, decreasing in the order 3≈2 > 1. The measured enthalpies and entropies of activation (ΔH(≠) > 0, ΔS(≠) < 0) support an associative mechanism for the substitution process.
正在研究半三明治 Ru(II)-[9]穴醚 S3 配合物 ([9]穴醚 S3 = 1,4,7-三硫杂环壬烷) 的抗增殖活性。我们在这里研究了三种此类配合物的激活动力学,即 Ru([9]穴醚 S3)(en)Cl (1)、Ru([9]穴醚 S3)(bpy)Cl (2) 和 Ru([9]穴醚 S3)(pic)Cl (en = 1,2-二氨基乙烷,pic = 吡啶甲酸根),以及它们与 DNA 模型碱基的相互作用。研究的目的是评估螯合配体的性质和电荷如何影响它们。通过 NMR 光谱研究了 1-3 与鸟嘌呤衍生物 9-甲基鸟嘌呤 (9MeG)、鸟苷 (Guo) 和鸟苷 5'-单磷酸 (5'-GMP) 的模型反应。所有反应尽管速率和程度不同,但都导致与鸟嘌呤衍生物 N7 键合到 Ru 中心的单功能加合物的形成。两种产物,配合物 Ru([9]穴醚 S3)(en)(9MeG-N7) (2) (4) 和 Ru([9]穴醚 S3)(pic)(9MeG-N7) (10),也通过 X 射线晶体学进行了结构表征。结构 4 由 en 的 NH 与 9MeG 的羰基 O6 之间的强分子内氢键稳定。通过 UV-Vis 光谱研究了配合物 2 和 3 的水合和取代反应的动力学以及配合物 1-3 与更具生物学相关性的 5'-GMP 配体的反应动力学和机制。配合物 1-3 与 5'-GMP 的反应速率取决于螯合配体的性质而不是配合物的电荷,按 3≈2 > 1 的顺序降低。测量的活化焓和熵 (ΔH(≠) > 0, ΔS(≠) < 0) 支持取代过程的缔合机制。