首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Spectroscopic, photophysical and theoretical insight into the chelation properties of fisetin with copper (II) in aqueous buffered solutions for calf thymus DNA binding
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Spectroscopic, photophysical and theoretical insight into the chelation properties of fisetin with copper (II) in aqueous buffered solutions for calf thymus DNA binding

机译:用铜(II)在水性缓冲溶液中对铜(II)螯合性能的光谱,光药和理论洞察Calf胸腺DNA结合

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Fisetin (FTN) and its metal chelates are critically important since this bioflavonoid possesses wide range of pharmacological properties. Usually, metal binding property enhances the pharmaceutical activity of FTN. Thus in this report, we investigated the complexation of FTN with biologically essential metal ion Cu2+ and further examined the effect of such complexation on calf thymus DNA (CT DNA) binding in comparison with free FTN. We have characterized the complex formation of FTN with Cu2+ using UV-visible, fluorimetric and MR studies. Within our experimental concentration range we found that, FTN forms a 2:1 complex with Cu2+ in terms of FTN:Cu2+. Spectroscopic analysis revealed that both FTN and FTN2-Cu2+ complex bind with CT DNA and the binding constant is higher for free FTN. Perturbation of circular dichroism spectrum of a DNA was observed in presence of free FTN due to structural alteration in DNA double helix. Viscometric, thermal melting and fluorescence quenching study confirm that FTN intercalates in between the base pairs of CT DNA while its Cu (II) complex acts as a groove binder. Molecular docking study further confirms that FTN intercalates into AT rich region of CT DNA while its Cu (II) complex binds at the minor groove. (C) 2018 Elsevier B.V. All rights reserved.
机译:Fisetin(FTN)及其金属螯合物批判性重要,因为这种生物脂醛具有广泛的药理学性质。通常,金属结合性能增强FTN的药物活性。因此,在本报告中,我们研究了FTN与生物基础必需金属离子Cu2 +的络合,进一步检查了与游离FTN相比的Calf胸腺DNA(CT DNA)结合对这种络合的影响。我们用UV可见,荧光和MR研究表征了FTN的复杂形成。在我们的实验浓度范围内,我们发现,在FTN:Cu2 +方面,FTN与Cu2 +形成2:1络合物。光谱分析显示,FTN和FTN2-CU2 +复合物与CT DNA结合,无需FTN的结合常数较高。由于DNA双螺旋的结构改变,在游离FTN存在下观察到DNA的圆形二色性谱的扰动。粘度,热熔和荧光猝灭研究证实,FTN在CT DNA碱基对之间嵌入,而其Cu(II)复合物作为凹槽粘合剂。分子对接研究进一步证实,FTN嵌入CT DNA的富区,而其Cu(II)复合物在较小凹槽中结合。 (c)2018年elestvier b.v.保留所有权利。

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