用光谱和分子对接技术研究抗癌药物阿糖胞苷的dna结合

N. Shahabadi, M. Falsafi, M. Maghsudi
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引用次数: 33

摘要

在体外模拟生理条件下,采用多光谱技术和分子模型研究了抗癌药物阿糖胞苷与小牛胸腺DNA (CT-DNA)的相互作用。荧光光谱和紫外吸收光谱显示药物与CT-DNA以凹槽结合方式相互作用,紫外-可见结合常数为4.0±0.2 × 104 L mol−1,结合位点数为1.39。荧光学研究表明,药物与CT-DNA的反应是放热的。采用圆二色光谱法测定了DNA在阿糖胞苷存在下的构象变化。此外,药物诱导可检测到的DNA相互作用粘度的变化。分子模拟结果表明,阿糖胞苷与DNA的凹槽结合较强,其对接结构的相对结合能为- 20.61 KJ mol - 1。这种多光谱技术与分子模拟方法的结合,可广泛应用于小分子污染物与药物与生物大分子相互作用的研究,阐明其体内毒副作用的分子机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DNA-binding study of anticancer drug cytarabine by spectroscopic and molecular docking techniques
ABSTRACT The interaction of anticancer drug cytarabine with calf thymus DNA (CT-DNA) was investigated in vitro under simulated physiological conditions by multispectroscopic techniques and molecular modeling study. The fluorescence spectroscopy and UV absorption spectroscopy indicated drug interacted with CT-DNA in a groove-binding mode, while the binding constant of UV-vis and the number of binding sites were 4.0 ± 0.2 × 104 L mol−1 and 1.39, respectively. The fluorimetric studies showed that the reaction between the drugs with CT-DNA is exothermic. Circular dichroism spectroscopy was employed to measure the conformational change of DNA in the presence of cytarabine. Furthermore, the drug induces detectable changes in its viscosity for DNA interaction. The molecular modeling results illustrated that cytarabine strongly binds to groove of DNA by relative binding energy of docked structure −20.61 KJ mol−1. This combination of multiple spectroscopic techniques and molecular modeling methods can be widely used in the investigation on the interaction of small molecular pollutants and drugs with biomacromolecules for clarifying the molecular mechanism of toxicity or side effect in vivo.
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