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Characterization of the ternary complexes formed in the reaction of cis-diamminedichloro platinum (II), ethidium bromide and nucleic acids

机译:顺二氨二氯铂(II),溴化乙锭和核酸反应中形成的三元配合物的表征

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The purpose of this study was to characterize the ternary complexes formed in the reaction of cis-diainminedichloroplatinum (II) (cia-DDP) and nucleic acids, in the presence of the intercalating compound ethidium bromide (EtBr). In these ternary complexes, some EtBr is tightly bound to the nucleic acids. Tight binding is defined by resistance to extraction with butanol, assayed by filtration at acid pH or thin layer chromatography at basic pH. These ternary complexes are formed with double stranded but not with single stranded nucleic acids. They are not formed if cis-DDP is replaced by trans-diamminedichloroplatinuin(II). The amount of tightly bound EtBr depends upon the sequence of the nucleic acid, being larger with poly (dG-dC).poly(dG-dC) than with poly(dG).poly(dC). Spectroscopic results support the hypothesis that the tight binding of the dye is due to the formation of a bidentate adduct (guanine-EtBr)cis-platin. The visible spectrum of the ternary complexes is blue-shifted as compared to that of EtBr intercalated between the base pairs of unplatinated DNA and it depends upon the conformation of the ternary complex. The fluorescence quantum yield of the ternary complexes is lower than that of free EtBr in water. Tightly bound EtBr stabilizes strongly the B form versus the Z form of the ternary complex poly(dG-dC)-Pt-EtBr and slows down the transition from the B form towards the Z form. The sequence specificity of cis-DDP binding to a DNA restriction fragment in the absence or presence of EtBr is mapped by means of the 3′←5′ exonuclease activity of T4 DNA polymerase. In the absence of the dye, all the d(GpG) sites and all the d(ApG) sites but one in the sequence d(TpGpApGpC) are platinated. The d(GpA) sites are not platinated. In the presence of EtBr, some new sites are detected. These results might help to explain the synergism for drugs used in combination with cis-DDP and in the design of new chemotherapeutic agents.
机译:这项研究的目的是表征在插入化合物溴化乙锭(EtBr)存在下,顺二胺二氯铂(II)(cia-DDP)与核酸反应中形成的三元复合物。在这些三元复合物中,一些EtBr与核酸紧密结合。紧密结合是由对丁醇萃取的抗性定义的,在酸性pH下过滤或在碱性pH下进行薄层色谱分析。这些三元复合物是由双链而不是单链核酸形成的。如果顺式-DDP被反式二氨基二氯铂金(II)取代,则它们不会形成。紧密结合的EtBr的数量取决于核酸的序列,与poly(dG).poly(dC)相比,poly(dG-dC).poly(dG-dC)更大。光谱结果支持以下假设:染料的紧密结合是由于双齿加合物(鸟嘌呤-EtBr)顺铂的形成。与插入在未铂DNA碱基对之间的EtBr相比,三元复合物的可见光谱是蓝移的,它取决于三元复合物的构象。三元配合物的荧光量子产率低于水中的游离EtBr。紧密结合的EtBr稳定了三元复合聚(dG-dC)-Pt-EtBr的B形式与Z形式,并减慢了从B形式向Z形式的转变。在不存在或存在EtBr的情况下,顺式-DDP与DNA限制片段结合的序列特异性通过T4 DNA聚合酶的3'←5'核酸外切酶活性进行定位。在不存在染料的情况下,所有d(GpG)位点和所有d(ApG)位点,但序列d(TpGpApGpC)中只有一个位是铂化的。 d(GpA)站点未进行铂化。在EtBr存在下,会检测到一些新位点。这些结果可能有助于解释与顺式DDP结合使用的药物的协同作用,以及新化学治疗剂的设计。

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