首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Targeted guanine oxidation by a dinuclear copper(II) complex at single stranded/double stranded DNA junctions
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Targeted guanine oxidation by a dinuclear copper(II) complex at single stranded/double stranded DNA junctions

机译:在单链/双链DNA连接处通过双核铜(II)络合物靶向鸟嘌呤氧化

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A dinuclear copper(II) complex [Cu-2(II)(PD'O-)(H2O)(2)](ClO4)(3) (5) with terminal Cu(II) - H2O moieties and a Cu center dot center dot center dot Cu distance of 4.13 A (X-ray structure) has been synthesized and characterized by EPR spectroscopy (ferromagnetic coupling observed) and cyclic voltammetry. Dizinc(II) and mononuclear copper(II) analogues [Zn-2(II)(PD'O-)(H2O)(2)](3+) (7) and [Cu-II(mPD'OH)(H2O)](2+) (6), respectively, have also been synthesized and structurally characterized. Reacting 5/MPA/O-2 (MPA)(3-) mercaptopropionic acid) with DNA leads to a highly specific oxidation of guanine (G) at a junction between single- and double-stranded DNA. Mass spectrometric analysis of the major products indicates a gain of +18 and +34 amu relative to initial DNA strands. The most efficient reaction requires G at the first and second unpaired positions of each strand extending from the junction. Less reaction is observed for analogous targets in which the G cluster is farther from the junction or contains less than four Gs. Consistent with our previous systems, the multinuclear copper center is required for selective reaction; mononuclear complex 6 is not effective. Hydrogen peroxide as a substitute for MPA/O-2 also does not lead to activity. Structural analysis of a [Cu-2(II)(PD'O-)(G)](3+) complex (8) and dizinc analogue [Zn-2(II)(PD'O-)(G)](ClO4)(3) (9) (G) guanosine) reveals coordination of the G O6 and N7 atoms with the two copper ( or zinc) centers and suggests that copper - G coordination likely plays a role in recognition of the DNA target. The Cu-2-O-2 intermediate responsible for guanine oxidation appears to be different from that responsible for direct-strand scission induced by other multinuclear copper complexes; the likely course of reaction is discussed.
机译:双核铜(II)络合物[Cu-2(II)(PD'O-)(H2O)(2)](ClO4)(3)(5),带有末端Cu(II)-H2O部分和一个Cu中心点中心点中心点Cu距离为4.13 A(X射线结构),并通过EPR光谱(观察到铁磁耦合)和循环伏安法进行了表征。二锌(II)和单核铜(II)类似物[Zn-2(II)(PD'O-)(H2O)(2)](3+)(7)和[Cu-II(mPD'OH)(H2O) )](2+)(6)分别也已经合成并进行了结构表征。 5 / MPA / O-2(MPA)(3-)巯基丙酸)与DNA反应导致单链和双链DNA之间的连接处鸟嘌呤(G)发生高度特异性的氧化。主要产物的质谱分析表明,相对于初始DNA链,获得了+18和+34 amu的增益。最有效的反应需要从连接处延伸的每条链的第一和第二个未配对位置处的G。对于类似的靶标,其中G簇离连接点更远或包含少于四个Gs,观察到的反应较少。与我们以前的系统一致,选择性反应需要多核铜中心。单核复合物6无效。过氧化氢作为MPA / O-2的替代品也不会导致活性。 [Cu-2(II)(PD'O-)(G)](3+)配合物(8)和二锌类似物[Zn-2(II)(PD'O-)(G)]的结构分析ClO4)(3)(9)(G)鸟苷)揭示了G O6和N7原子与两个铜(或锌)中心的配位,并暗示铜-G配位可能在识别DNA靶标中起作用。负责鸟嘌呤氧化的Cu-2-O-2中间体似乎不同于负责其他多核铜配合物诱导的直接链断裂的中间体。讨论了可能的反应过程。

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