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Synthesis, structure and DNA interaction of cobalt(III) bis-complexes of 1,3-bis(2-pyridylimino)isoindoline and 1,4,7-triazacyclononane

机译:1,3-双(2-吡啶并氨基)异吲哚啉和1,4,7-三氮杂环壬烷的钴(III)双配合物的合成,结构和DNA相互作用

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摘要

The complex [CoL](ClO) • MeOH (), where HL is the tridentate 3N ligand 1,3-bis(2-pyridylimino)isoindoline, has been isolated and its X-ray crystal structure successfully determined. It possesses a distorted octahedral structure in which both the ligands are coordinated meridionally to cobalt(III) via one deprotonated isoindoline (L) and two pyridine nitrogen atoms. Interestingly, the average dihedral angle between pyridine and isoindoline rings is 25.9°, indicating that the ligand is twisted upon coordination to cobalt(III). The interaction of the complex with calf-thymus DNA has been studied using various spectral methods and viscosity and electrochemical measurements. For comparison, the DNA interaction of [Co(tacn)]Cl (), where tacn is facially coordinating 1,4,7-triazacyclononane, has been also studied. The ligand-based electronic spectral band of and the N(σ) → Co(III) charge transfer band of exhibit moderate hypochromism with small or no blue shift on interaction with DNA. The intrinsic binding constants calculated reveal that the monopositive complex ion [CoL] exhibits a DNA-binding affinity lower than the tripositive complex ion [Co(tacn)]. The steric clashes with DNA exterior caused by the second L ligand bound to cobalt(III), apart from the lower overall positive charge on the [CoL] complex, dictates its DNA-binding mode to be surface binding rather than partial intercalative interaction expected of the extended aromatic chromophore of deprotonated isoindoline anion. An enhancement in relative viscosity of CT DNA on binding to is consistent with its DNA surface binding. On the other hand, a slight decrease in viscosity of CT DNA was observed on binding to revealing that the smaller cation leads to bending (kinking) and hence shortening of DNA chain length. The electrochemical studies indicate that the DNA-bound complexes are stabilised in the higher Co(III) rather than the lower Co(II) oxidation state, suggesting the importance of electrostatic forces of DNA interaction.
机译:已分离出复杂的[CoL](ClO)•MeOH(),其中HL是三齿3N配体1,3-双(2-吡啶基氨基)异吲哚啉,并成功确定了其X射线晶体结构。它具有扭曲的八面体结构,其中两个配体通过一个去质子化的异吲哚啉(L)和两个吡啶氮原子经子午地与钴(III)配位。有趣的是,吡啶和异吲哚啉环之间的平均二面角为25.9°,表明配体在与钴(III)配位时发生扭曲。已经使用各种光谱方法以及粘度和电化学测量研究了复合物与小牛胸腺DNA的相互作用。为了进行比较,还研究了[Co(tacn)] Cl()的DNA相互作用,其中tacn在表面上与1,4,7-三氮杂环壬烷配位。的基于配体的电子光谱带和N(σ)→Co(III)电荷转移带表现出中等的变色现象,与DNA相互作用时蓝移很小或没有蓝移。计算出的固有结合常数表明,单正复合离子[CoL]的DNA结合亲和力低于三正复合离子[Co(tacn)]。除[CoL]配合物上较低的总正电荷外,第二个与钴(III)结合的L配体引起的与DNA外部的空间冲突表明,其DNA结合模式是表面结合,而不是预期的部分插入相互作用去质子化的异吲哚啉阴离子的扩展芳香族发色团。与之结合的CT DNA相对粘度的增加与其DNA表面结合相一致。另一方面,在结合时观察到CT DNA的粘度略有降低,表明较小的阳离子导致弯曲(扭结),从而缩短了DNA链的长度。电化学研究表明,DNA结合的复合物稳定在较高的Co(III)而不是较低的Co(II)氧化态,表明DNA相互作用的静电力很重要。

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