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rac-[Ru(5,6 - dmp)₃]²⁺与DNA的相互作用:对映体特异性DNA结合和配体促进的激子耦合

Interaction of rac-[Ru(5,6-dmp)3]2+ with DNA: enantiospecific DNA binding and ligand-promoted exciton coupling.

作者信息

Maheswari Palanisamy Uma, Rajendiran Venugopal, Stoeckli-Evans Helen, Palaniandavar Mallayan

机构信息

School of Chemistry, Bharathidasan University, Tiruchirappalli, India.

出版信息

Inorg Chem. 2006 Jan 9;45(1):37-50. doi: 10.1021/ic050940q.

Abstract

The X-ray crystal structure of the complex rac-[Ru(5,6-dmp)(3)]Cl(2) (5,6-dmp = 5,6-dimethyl-1,10-phenanthroline) reveals a distorted octahedral coordination geometry with the Ru-N bond distances shorter than in its phen analogue. Absorption spectral titrations with CT DNA reveal that rac-Ru(5,6-dmp)(3) interacts (K(b), (8.0 +/- 0.2) x 10(4) M(-1)) much more strongly than its phen analogue. The emission intensity of the 5,6-dmp complex is dramatically enhanced on binding to DNA, which is higher than that of the phen analogue. Also, interestingly, time-resolved emission measurements on the DNA-bound complex shows biexponential decay of the excited states with the lifetimes of short- and long-lived components being higher than those for the phen analogue. The CD spectral studies of rac-Ru(5,6-dmp)(3) bound to CT DNA provide a definite and elegant evidence for the enantiospecific interaction of the complex with B-form DNA. Competitive DNA binding studies using rac-Ru(phen)(3) provide support for the strong binding of the complex with DNA. The Delta-enantiomer of rac-Ru(5,6-dmp)(3) binds specifically to the right-handed B-form of poly d(GC)(12) at lower ionic strength (0.05 M NaCl), and the Lambda-enantiomer binds specifically to the left-handed Z-form of poly d(GC)(12) generated by treating the B-form with 5 M NaCl. The strong electronic coupling of the DNA-bound complex with the unbound complex facilitates the change in its enantiospecificity upon changing the conformation of DNA. The (1)H NMR spectra of rac-Ru(5,6-dmp)(3) bound to poly d(GC)(12) reveal that the complex closely interacts most possibly in the major grooves of DNA. Electrochemical studies using ITO electrode show that the 5,6-dmp complex stabilizes CT DNA from electrocatalytic oxidation of its guanine base more than the phen analogue does.

摘要

配合物rac-[Ru(5,6-dmp)(3)]Cl(2)(5,6-dmp = 5,6-二甲基-1,10-菲咯啉)的X射线晶体结构显示出一种扭曲的八面体配位几何结构,其中Ru-N键距离比其菲咯啉类似物中的短。用CT DNA进行的吸收光谱滴定表明,rac-Ru(5,6-dmp)(3)的相互作用(结合常数K(b)为(8.0±0.2)×10(4) M(-1))比其菲咯啉类似物强得多。5,6-dmp配合物与DNA结合时发射强度显著增强,高于菲咯啉类似物。同样有趣的是,对与DNA结合的配合物进行的时间分辨发射测量表明,激发态呈现双指数衰减,短寿命和长寿命组分的寿命均高于菲咯啉类似物。对与CT DNA结合的rac-Ru(5,6-dmp)(3)进行的圆二色光谱研究为该配合物与B型DNA的对映体特异性相互作用提供了明确而优雅的证据。使用rac-Ru(phen)(3)进行的竞争性DNA结合研究支持了该配合物与DNA的强结合。rac-Ru(5,6-dmp)(3)的Δ-对映体在较低离子强度(0.05 M NaCl)下特异性结合多聚d(GC)(12)的右手B型,而Λ-对映体特异性结合通过用5 M NaCl处理B型而产生的多聚d(GC)(12)的左手Z型。与DNA结合的配合物与未结合的配合物之间的强电子耦合有助于在改变DNA构象时其对映体特异性的变化。与多聚d(GC)(12)结合的rac-Ru(5,6-dmp)(3)的(1)H NMR光谱表明,该配合物最有可能在DNA的大沟中紧密相互作用。使用ITO电极进行的电化学研究表明,5,6-dmp配合物比菲咯啉类似物更能稳定CT DNA免受其鸟嘌呤碱基的电催化氧化。

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