首页> 外文期刊>Nucleosides, nucleotides and nucleic acids >Studies on the Interaction of [SnMe2CI2(bu2bpy)] Complex with ct-DNA Using Multispectroscopic, Atomic Force Microscopy (AFM) and Molecular Docking
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Studies on the Interaction of [SnMe2CI2(bu2bpy)] Complex with ct-DNA Using Multispectroscopic, Atomic Force Microscopy (AFM) and Molecular Docking

机译:使用多光谱,原子力显微镜(AFM)和分子对接的CT-DNA与CT-DNA相互作用的研究

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The interaction of SnMe2CI2(bu2bpy)complex with calf thymus DNA (ct-DNA) has been explored following, using spectro-scopic methods, viscosity measurements, Atomic force microscopy, Thermal denaturation and Molecular docking. It was found that Sn(IV) complex could bind with DNA via intercalation mode as evidenced by hyperchromism and bathochro-mic in UV-Vis spectrum; these spectral characteristics suggest that the Sn(IV) complex interacts with DNA most likely through a mode that involves a stacking interaction between the aromatic chromophore and the base pairs of DNA. In addition, the fluorescence emission spectra of intercalated methylene blue (MB) with increasing concentrations of SnMe2CI2(bu2bpy) represented a significant increase of MB intensity as to release MB from MB-DNA system. Positive values of AH and AS imply that the complex is bound to ct-DNA mainly via the hydrophobic attraction. Large complexes contain the DNA chains with an average size of 859 nm were observed by using AFM for Sn(IV) Complex-DNA. The Fourier transform infrared study showed a major interaction of Sn(IV) complex with G-C and A-T base pairs and a minor perturbation of the backbone PO2 group. Addition of the Sn(IV)complex results in a noticeable rise in the Tm of DNA. In addition, the results of viscosity measurements suggest that SnMe2CI2(bu2bpy) complex may bind with the classical interca-lative mode. From spectroscopic and hydrodynamic studies, it has been found that Sn(IV)complex interacts with DNA by intercalation mode. Optimized docked model of DNA-complex mixture confirmed the experimental results.
机译:使用光谱 - 范围方法,粘度测量,原子力显微镜,热变性和分子对接,探讨了与小牛胸腺DNA(CT-DNA)的SNME2CI2(BU2BPY)复合物的相互作用。发现Sn(IV)复合物可以通过嵌入模式与DNA与DNA结合,如UV-VIS光谱中的超变性和浴杯中所证明的;这些光谱特性表明SN(IV)复合物与涉及芳族发色团与DNA碱基对之间的堆叠相互作用的模式相互作用。另外,随着SNME2CI2(BU2BPY)的增加,插层亚甲基蓝(MB)的荧光发射光谱表示为从MB-DNA系统释放MB的MB强度的显着增加。阳性值αh,并且暗示该复合物主要通过疏水吸引力纳入CT-DNA。通过使用AFM对于Sn(iv)复合DNA,通过使用AFM含有平均尺寸的DNA链,含有平均尺寸的DNA链。傅里叶变换红外研究表明,Sn(iv)复合物与G-C和A-T碱基对的主要相互作用和骨干PO2组的次要扰动。添加SN(IV)复合物导致DNA的TM中显着升高。另外,粘度测量结果表明,SNME2CI2(BU2BPY)复合物可以与经典的Interca-Live模式结合。从光谱和流体动力学研究,已经发现SN(IV)复合物通过插入模式与DNA相互作用。 DNA复合物混合物的优化对接模型证实了实验结果。

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