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Direct photo-induced DNA strand scission by a ruthenium bipyridyl complex

机译:联吡啶钌络合物直接光诱导DNA链断裂

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摘要

Irradiation of plasmid DNA in the presence of Ru(II)-2, a modified tris(2,2'-bipyridyl)Ru(II) complex, in which two hydroxamic acid groups are attached to one of the three bipyridyl ligands, results in total fragmentation of the DNA. The photo-chemical reaction products were analyzed by gel electrophoresis, which revealed complete fragmentation. Further evidence for the complete degradation of the DNA was obtained by imaging the pre- and post-treated plasmid DNA using atomic force microscopy (AFM). A mechanism for the reaction is proposed. It initially involves the photo-chemical generation of Ru(III) ions and superoxide radicals, as corroborated by absorbance difference spectroscopy and electron paramagnetic resonance (EPR). Consequently, Ru(III) preferentially oxidizes guanine, liberating superoxide radicals that yield OH radicals. The OH radicals were identified by observing the spectral change at 532 nm of a 5'-dAdG substrate forming a colored adduct with thiobarbituric acid. These radicals are associated with the major non-specific damage exerted to DNA.
机译:在修饰的tris(2,2'-联吡啶基)Ru(II)络合物Ru(II)-2存在下照射质粒DNA,其中两个异羟肟酸基团连接到三个联吡啶配体之一DNA的总片段化。通过凝胶电泳分析光化学反应产物,发现其完全断裂。通过使用原子力显微镜(AFM)对经过预处理的质粒DNA进行成像后,可以获得DNA完全降解的进一步证据。提出了反应机理。它最初涉及Ru(III)离子和超氧化物自由基的光化学生成,这一点已通过吸光度差光谱和电子顺磁共振(EPR)的证实。因此,Ru(III)优先氧化鸟嘌呤,释放出产生OH自由基的超氧化物自由基。通过观察5'-dAdG底物在532nm处的光谱变化来识别OH自由基,所述底物与硫代巴比妥酸形成有色加合物。这些自由基与对DNA的主要非特异性损伤有关。

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