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Synthesis, characterization, and photoactivated DNA cleavage by copper (II)/cobalt (II) mediated macrocyclic complexes

机译:铜(II)/钴(II)介导的大环复合物的合成,表征和光活化DNA裂解

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We report the synthesis of new photonuclease consisting of two Co(II)/Cu(II) complexes of macrocyclic fused quinoline. Metal complexes are [MLX2], type where M = Co(II) (5), Cu(II) (6), and X = Cl, and are well characterized by elemental analysis, Fourier transform infrared spectroscopy, 1H-NMR and electronic spectra. We have shown that photocleavage of plasmid DNA is markedly enhanced when this ligand is irradiated in the presence of Cu(II), and more so than that of cobalt. The chemistry of ternary and binary Co(II) complexes showing efficient light induced (360 nm) DNA cleavage activity is summarized. The role of the metal in photoinduced DNA cleavage reactions is explored by designing complex molecules having macrocyclic structure. The mechanistic pathways are found to be concentration dependent on Co(II)/Cu(II) complexes and the photoexcitation energy photoredox chemistry. Highly effective DNA cleavage ability of 6 is attributed to the effective cooperation of the metal moiety.
机译:我们报告了由两个大环稠喹啉的Co(II)/ Cu(II)复合物组成的新光核酸酶的合成。金属络合物为[MLX2],其类型为M = Co(II)(5),Cu(II)(6)和X = Cl,并通过元素分析,傅里叶变换红外光谱,1H-NMR和电子进行了很好的表征光谱。我们已经表明,当在铜(II)的存在下照射该配体时,质粒DNA的光裂解显着增强,并且比钴更明显。总结了三元和二元Co(II)配合物的化学性质,显示出有效的光诱导(360 nm)DNA裂解活性。通过设计具有大环结构的复杂分子,探索了金属在光诱导的DNA裂解反应中的作用。发现该机理途径取决于Co(II)/ Cu(II)配合物和光激发能光氧化还原化学的浓度。 DNA的6高效切割能力归因于金属部分的有效协同作用。

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