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The role of both intercalation and groove binding at AT-rich DNA regions in the interaction process of a dinuclear Cu(I) complex probed by spectroscopic and simulation analysis

机译:通过光谱和模拟分析探测的二核Cu(I)复合物的相互作用过程中的嵌入和沟槽结合在富含富含DNA区域的作用

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In this research paper, the synthesis process and characterization of a dinuclear Cu(I) phosphine complex, as well as spectroscopic and simulation analysis of its interaction with DNA helix, are presented. The monoclinic phase [Cu(PPh3)(L-0.5)(I)](2) with a tetrahedral molecular geometry was elucidated based on X-ray single-crystal diffraction data. The significant association constant (6.88 x 10(5)) and remarkable hyperchromism as obtained from UV-Visible spectra indicated a high binding affinity of the Cu(I) complex for DNA, which is in accordance with both intercalation and groove binding modes. The results of competitive fluorescence experiments along with molecular docking simulation proved that the planar part of the complex can insert into the core of adenine nucleobases and compete with methylene blue for the intercalative binding sites, while the bulky substituent binds in the minor groove of DNA via replacement of Hoechst molecules at A-T rich regions. According to thermodynamic parameters (the negative values of Delta H degrees and Delta S degrees), it is quite clear that the interaction process is enthalpy-favored while disfavored by entropy and van der Walls and hydrophobic forces play a major role in stabilization of right-handed B-DNA form during the interaction, as shown in the circular dichroism spectra. Based on the above findings partial intercalation mode at A-T rich region of DNA was proposed. The cytotoxicity and apoptosis results on MCF-7 cell line indicated positive effect of the Cu(I) complex in controlling growth and viability of breast cancer more than cisplatin. (C) 2021 Elsevier B.V. All rights reserved.
机译:本文介绍了一种双核Cu(I)膦配合物的合成工艺和表征,并对其与DNA螺旋的相互作用进行了光谱和模拟分析。根据X射线单晶衍射数据,阐明了具有四面体分子几何结构的单斜相[Cu(PPh3)(L-0.5)(I)](2)。从紫外-可见光谱中获得的显著缔合常数(6.88 x 10(5))和显著的增色性表明Cu(I)络合物对DNA具有很高的结合亲和力,这与插层和沟槽结合模式一致。竞争荧光实验和分子对接模拟的结果证明,复合物的平面部分可以插入腺嘌呤碱基的核心,并与亚甲基蓝竞争插层结合位点,而大量取代基通过替换富含A-T区域的Hoechst分子结合在DNA的小凹槽中。根据热力学参数(δH度和δS度的负值),很明显,相互作用过程是焓有利的,而熵和范德壁不利,疏水力在相互作用过程中对右手B-DNA形式的稳定起主要作用,如圆二色谱图所示。基于上述发现,提出了DNA A-T富集区的部分插层模式。对MCF-7细胞株的细胞毒性和凋亡结果表明,与顺铂相比,铜(I)复合物在控制乳腺癌生长和生存能力方面的积极作用更大。(c)2021爱思唯尔B.V.保留所有权利。

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