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首页> 外文期刊>Nucleic Acids Research >Mechanistic studies on DNA damage by minor groove binding copper-phenanthroline conjugates
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Mechanistic studies on DNA damage by minor groove binding copper-phenanthroline conjugates

机译:小沟结合铜-菲咯啉偶联物对DNA损伤的机理研究

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摘要

Copper-phenanthroline complexes oxidatively damage and cleave nucleic acids. Copper bis-phenanthroline and copper complexes of mono- and bis-phenanthroline conjugates are used as research tools for studying nucleic acid structure and binding interactions. The mechanism of DNA oxidation and cleavage by these complexes was examined using two copper-phenanthroline conjugates of the sequence-specific binding molecule, distamycin. The complexes contained either one or two phenanthroline units that were bonded to the DNA binding domain through a linker via the 3-position of the copper ligand. A duplex containing independently generated 2-deoxyribonolactone facilitated kinetic analysis of DNA cleavage. Oxidation rate constants were highly dependent upon the ligand environment but rate constants describing elimination of the alkali-labile 2-deoxyribonolactone intermediate were not. Rate constants describing DNA cleavage induced by each molecule were 11-54 times larger than the respective oxidation rate constants. The experiments indicate that DNA cleavage resulting from beta-elimination of 2-deoxyribonolactone by copper-phenanthroline complexes is a general mechanism utilized by this family of molecules. In addition, the experiments confirm that DNA damage mediated by mono- and bis-phenanthroline copper complexes proceeds through distinct species, albeit with similar outcomes.
机译:铜-菲咯啉配合物氧化损伤并切割核酸。单-和双-菲咯啉共轭物的铜双-菲咯啉和铜配合物被用作研究核酸结构和结合相互作用的研究工具。使用序列特异性结合分子distamycin的两种铜-菲咯啉共轭物检查了这些复合物对DNA氧化和裂解的机制。该复合物包含一个或两个菲咯啉单元,它们通过连接子经由铜配体的3位与DNA结合域结合。含有独立产生的2-脱氧核糖内酯的双链体促进了DNA切割的动力学分析。氧化速率常数高度依赖于配体环境,但是描述消除对碱不稳定的2-脱氧核糖内酯中间体的速率常数则不然。描述每个分子诱导的DNA裂解的速率常数比各自的氧化速率常数大11-54倍。实验表明,铜-菲咯啉配合物通过β-消除2-脱氧核糖内酯产生的DNA切割是该分子家族利用的一般机制。另外,实验证实,由单-和双-菲咯啉铜配合物介导的DNA损伤通过不同的物种进行,尽管结果相似。

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