Karidi Konstantina, Garoufis Achilleas, Hadjiliadis Nick, Reedijk Jan
Laboratory of Inorganic and General Chemistry, Department of Chemistry, University of Ioannnina, Ioannina 45110, Greece.
Dalton Trans. 2005 Feb 21(4):728-34. doi: 10.1039/b410402a. Epub 2005 Jan 19.
A general method for the synthesis of chloro(polypyridyl)ruthenium conjugated peptide complexes via a solid-phase strategy is described. The method is applied to synthesize two positional isomers of the complex Ru(terpy)(4-CO2H-4'-Mebpy-Gly-L-His-L-LysCONH2)Cl. Even though the separation of the isomers was only partially achieved chromatographically, the isomers were unambiguously assigned by NMR spectroscopy. The interactions of the complex Ru(terpy)(4-CO2H-4'-Mebpy-Gly-L-His-L-LysCONH2)Cl with CT-DNA and plasmid DNA, have been studied with various spectroscopic techniques, showing that (i) the complexes coordinatively bind to DNA preferring the bases guanine and cytosine over the bases thymine and adenine after hydrolysis of the coordinated chloride, (ii) electrostatic interactions between the complex cation and the polyanionic DNA chain assist this binding (iii) only in the case of one isomer the peptide does interact further with DNA as evidenced from 31P NMR spectroscopy, (iv) DNA unwinding occurs in all cases with high binding ratio (Ru/base) values (r > 0.3).
描述了一种通过固相策略合成氯(聚吡啶基)钌共轭肽配合物的通用方法。该方法用于合成配合物Ru(terpy)(4-CO2H-4'-Mebpy-Gly-L-His-L-LysCONH2)Cl的两种位置异构体。尽管通过色谱法仅部分实现了异构体的分离,但通过核磁共振光谱法明确确定了异构体。使用各种光谱技术研究了配合物Ru(terpy)(4-CO2H-4'-Mebpy-Gly-L-His-L-LysCONH2)Cl与CT-DNA和质粒DNA的相互作用,结果表明:(i) 配合物在配位氯离子水解后优先与鸟嘌呤和胞嘧啶碱基而非胸腺嘧啶和腺嘌呤碱基配位结合到DNA上;(ii) 配合物阳离子与多阴离子DNA链之间的静电相互作用有助于这种结合;(iii) 仅在一种异构体的情况下,肽确实会与DNA进一步相互作用,这从31P核磁共振光谱中得到证实;(iv) 在所有情况下,DNA解旋都以高结合比(Ru/碱基)值(r > 0.3)发生。