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Inhibition of Cisplatin‐mediated DNA Damage in vitro by Ribonucleotides

机译:核糖核苷酸在体外抑制顺铂介导的DNA损伤

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摘要

Effects of ribonucleotides on cis‐diamminedichloroplatinum(II) (cisplatin)‐mediated DNA damage were studied by incubating pUC18 DNA with cisplatin in the presence of nucleotide, and by monitoring conformational change and sensitivity change to restriction enzyme HpaII of the DNA due to the platinum‐DNA adduct formation. The cisplatin‐mediated DNA damage was inhibited in a dose‐dependent fashion by ATP or GTP, substantially at their physiological intracellular concentrations, and almost completely by 5 mM ATP or 2 mM GTP. The inhibitory effect of nucleotide on the platination of DNA was in the order of GTP > ATP≫CTP > UTP, and of nucleoside triphosphate >nucleoside diphosphate > nucleoside monophosphate. Nucleoside did not show any significant effect on platination of DNA. To elucidate the mechanism of the nucleotide effects on platination of DNA, interaction between ATP or GTP and cisplatin was analyzed by high‐performance liquid chromatography. The results suggested that ATP inhibits cisplatin‐mediated DNA damage both by forming a platinum‐ATP adduct and by non‐covalent ionic interaction with cisplatin, while GTP acts largely by forming platinum‐GTP adducts.
机译:通过在核苷酸存在下将pUC18 DNA与顺铂一起孵育,并通过监测构象变化和对铂引起的DNA对限制酶HpaII的敏感性变化,研究了核糖核苷酸对顺二氨二氯铂(II)(顺铂)介导的DNA损伤的影响。 -DNA加合物的形成。顺铂介导的DNA损伤被ATP或GTP抑制,呈剂量依赖性,基本上在其生理细胞内浓度,几乎完全被5 mM ATP或2 mM GTP抑制。核苷酸对DNA平台化的抑制作用依次为:GTP> ATP≫CTP> UTP,三磷酸核苷>二磷酸核苷>单磷酸核苷。核苷对DNA的电镀没有显示任何显着影响。为了阐明核苷酸对DNA电镀的影响机理,通过高效液相色谱分析了ATP或GTP与顺铂之间的相互作用。结果表明,ATP通过形成铂-ATP加合物和与顺铂的非共价离子相互作用而抑制顺铂介导的DNA损伤,而GTP在很大程度上通过形成铂-GTP加合物而起作用。

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