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药物奥沙米特与 DNA 结合的浓度依赖性模式:多光谱、伏安法和元动力学模拟分析。

Concentration-dependent mode of binding of drug oxatomide with DNA: multi-spectroscopic, voltammetric and metadynamics simulation analysis.

机构信息

Department of Chemistry, Gandhigram Rural Institute (Deemed to be University), Gandhigram, India.

出版信息

J Biomol Struct Dyn. 2022 Nov;40(18):8394-8404. doi: 10.1080/07391102.2021.1911860. Epub 2021 Apr 24.

Abstract

The interaction between antihistaminic drug oxatomide () and calf-thymus DNA (CT-DNA) has been investigated in a physiological buffer (pH 7.4) using UV-Vis, fluorescence, H NMR and circular dichroism spectral techniques coupled with viscosity measurements, KI quenching, voltammetry and molecular modeling studies. binds with CT-DNA in a concentration-dependent manner. At a lower [Drug]/[CT-DNA] molar ratio (0.6-0.1), intercalates into the base pairs of CT-DNA, while at a higher [Drug]/[CT-DNA] molar ratio (13-6), the drug binds in the minor grooves of CT-DNA. The binding constants for the interaction are found to be in the order of 10-10 M, and the groove binding mode of interaction exhibits a slightly higher binding constant than that of intercalative mode. Thermodynamic analysis of binding constants at three different temperatures suggests that both these modes of binding are mainly driven by hydrophobic interactions (Δ > 0 and Δ > 0). Voltammetric investigations indicate that the electro-reduction of is an adsorption controlled process and shifts in reduction peak potentials reiterate the concentration-dependent mode of binding of the drug with CT-DNA. The free energy landscape obtained at the all-atom level, using metadynamics simulation studies, revealed two major binding forces: partial intercalation and minor groove binding, which corroborate well with the experimental results.Communicated by Ramaswamy H. Sarma.

摘要

奥沙米特()与小牛胸腺 DNA(CT-DNA)在生理缓冲液(pH7.4)中的相互作用已通过紫外可见光谱、荧光光谱、H NMR 和圆二色光谱技术以及粘度测量、KI 猝灭、伏安法和分子模拟研究进行了研究。该药物以浓度依赖的方式与 CT-DNA 结合。在较低的[药物]/[CT-DNA]摩尔比(0.6-0.1)下,药物插入 CT-DNA 的碱基对之间,而在较高的[药物]/[CT-DNA]摩尔比(13-6)下,药物结合在 CT-DNA 的小沟中。相互作用的结合常数被发现为 10-10 M 的数量级,并且相互作用的沟结合模式显示出比插入模式稍高的结合常数。在三个不同温度下对结合常数的热力学分析表明,这两种结合模式主要由疏水相互作用驱动(Δ>0 和 Δ>0)。伏安研究表明,奥沙米特的电还原是一个吸附控制过程,还原峰电位的偏移重申了药物与 CT-DNA 浓度依赖的结合模式。使用元动力学模拟研究在全原子水平上获得的自由能景观揭示了两种主要的结合力:部分插入和小沟结合,这与实验结果非常吻合。由 Ramaswamy H. Sarma 交流。

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