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Mechanisms of DNA cleavage by copper complexes of 3-Clip-Phen and of its conjugate with a distamycin analogue

机译:3-Clip-Phen及其配合物与双霉素的铜配合物切割DNA的机理

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摘要

Mechanisms of DNA oxidation by copper complexes of 3-Clip-Phen and its conjugate with a distamycin analogue, in the presence of a reductant and air, were studied. Characterisation of the production of 5-methylenefuranone (5-MF) and furfural, associated with the release of nucleobases, indicated that these copper complexes oxidised the C1′ and C5′ positions of 2-deoxyribose, respectively, which are accessible from the DNA minor groove. Oxidation at C1′ was the major degradation route. Digestion of DNA oxidation products by P1 nuclease and bacterial alkaline phosphatase allowed characterisation of glycolic acid residues, indicating that these copper complexes also induced C4′ oxidation. However, this pathway was not associated with base propenal release. The ability of the copper complex of the 3-Clip-Phen conjugate with the distamycin analogue to produce sequence-selective DNA cleavage allowed confirmation of these mechanisms of DNA oxidation by PAGE. Comparison of DNA cleavage activity showed that conjugation of 3-Clip-Phen with a DNA minor groove binder, like the distamycin analogue, decreased both its ability to perform C1′ oxidation as well as the initial rate of the reaction, but this conjugate is still active after 5 h at 37°C, making it an efficient DNA cleaver.
机译:在还原剂和空气存在下,研究了3-Clip-Phen及其配合物与二棉霉素类似物的铜配合物引起的DNA氧化机理。表征5-亚甲基呋喃酮(5-MF)和糠醛的产生,与核碱基的释放有关,表明这些铜配合物分别氧化了2-脱氧核糖的C1'和C5'位置,这可从DNA小分子中获得。槽。在C1'处的氧化是主要的降解途径。 P1核酸酶和细菌碱性磷酸酶对DNA氧化产物的消化可以表征乙醇酸残基,表明这些铜络合物也诱导了C4'氧化。但是,该途径与基本的直肠释放无关。 3-Clip-Phen缀合物与铜霉素的铜配合物产生序列选择性DNA裂解的能力可通过PAGE证实这些DNA氧化机制。 DNA裂解活性的比较表明,3-Clip-Phen与DNA小沟结合剂(如双歧霉素类似物)的结合降低了其执行C1'氧化的能力以及反应的初始速率,但这种结合物仍然存在在37°C下5小时后具有活性,使其成为有效的DNA切割器。

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