Shahabadi Nahid, Shiri Farshad
a Inorganic Chemistry Department , Faculty of Chemistry, Razi University , Kermanshah , Iran.
b Medical Biology Research Center (MBRC) Kermanshah University of Medical Sciences , Kermanshah , Iran.
Nucleosides Nucleotides Nucleic Acids. 2017 Feb;36(2):83-106. doi: 10.1080/15257770.2016.1223305. Epub 2016 Nov 11.
The interaction of copper(II)-ibuprofenato complex with calf thymus DNA (ct-DNA) has been explored following, UV-visible spectrophotometry, fluorescence measurement, dynamic viscosity measurements, and circular dichroism spectroscopy. In spectrophotometric studies of ct-DNA it was found that [Cu(ibp)] can form a complex with double-helical DNA. The association constant of [Cu(ibp)] with DNA from UV-Vis study was found to be 6.19 × 10 L mol. The values of K from fluorescence measurement clearly underscore the high affinity of [Cu(ibp)] to DNA. The experimental results showed that the conformational changes in DNA helix induced by [Cu(ibp)] are the reason for the fluorescence quenching of the DNA-Hoechst system. In addition, the fluorescence emission spectra of intercalated methylene blue (MB) with increasing concentrations of [Cu(ibp)] represented a significant increase of MB intensity as to release MB from MB-DNA system. The results of circular dichroism (CD) suggested that copper(II)-ibuprofenato complex can change the conformation of DNA. In addition, the results of viscosity measurements suggest that copper(II)-ibuprofenato complex may bind with non-classical intercalative mode. From spectroscopic and hydrodynamic studies, it has been found that [Cu(ibp)] interacts with DNA by partial intercalation mode which contains intercalation and groove properties.
通过紫外-可见分光光度法、荧光测量、动态粘度测量和圆二色光谱法,研究了铜(II)-布洛芬配合物与小牛胸腺DNA(ct-DNA)的相互作用。在ct-DNA的分光光度研究中发现,[Cu(ibp)]能与双螺旋DNA形成配合物。通过紫外-可见研究得出[Cu(ibp)]与DNA的缔合常数为6.19×10 L/mol。荧光测量得到的K值清楚地表明[Cu(ibp)]对DNA具有高亲和力。实验结果表明,[Cu(ibp)]诱导的DNA螺旋构象变化是DNA-赫斯特系统荧光猝灭的原因。此外,随着[Cu(ibp)]浓度增加,插入的亚甲基蓝(MB)的荧光发射光谱表明MB强度显著增加,这是由于MB从MB-DNA系统中释放出来。圆二色性(CD)结果表明,铜(II)-布洛芬配合物可改变DNA的构象。此外,粘度测量结果表明,铜(II)-布洛芬配合物可能以非经典插入模式结合。从光谱和流体动力学研究中发现,[Cu(ibp)]通过包含插入和沟槽性质的部分插入模式与DNA相互作用。