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喹吖因和亚甲蓝的DNA嵌入:一项比较性结合和热力学表征研究。

DNA intercalation by quinacrine and methylene blue: a comparative binding and thermodynamic characterization study.

作者信息

Hossain Maidul, Giri Prabal, Kumar Gopinatha Suresh

机构信息

Biophysical Chemistry Laboratory, Indian Institute of Chemical Biology, Kolkata, West Bengal, India.

出版信息

DNA Cell Biol. 2008 Feb;27(2):81-90. doi: 10.1089/dna.2007.0652.

Abstract

There is compelling evidence that cellular DNA is the target of many anticancer agents. Consequently, elucidation of the molecular nature governing the interaction of small molecules to DNA is paramount to the progression of rational drug design strategies. In this study, we have compared the binding and thermodynamic aspects of two known DNA-binding agents, quinacrine (QNA) and methylene blue (MB), with calf thymus (CT) DNA. The study revealed noncooperative binding phenomena for both the drugs to DNA with an affinity one order higher for QNA compared to MB as observed from diverse techniques, but both bindings obeyed neighbor exclusion principle. The data of the salt dependence of QNA and MB from the plot of log K versus log [Na+] revealed a slope of 1.06 and 0.93 consistent with the values predicted by theories for the binding of monovalent cations, and have been analyzed for contributions from polyelectrolytic and nonpolyelectrolytic forces. The binding of both drugs was further characterized by strong stabilization of DNA against thermal strand separation in both optical melting and differential scanning calorimetry studies. The binding data analyzed from the thermal denaturation and from isothermal titration calorimetry (ITC) were in close proximity to those obtained from spectral titration data. ITC results revealed the binding to be exothermic and favored by both negative enthalpy and positive entropy changes. The heat capacity changes obtained from temperature dependence of enthalpy indicated -146 and -78 cal/(mol.K), respectively, for the binding of QNA and MB to CT DNA. Circular dichroism study further characterized the structural changes on DNA upon intercalation of these molecules. Molecular aspects of interaction of these molecules to DNA are discussed.

摘要

有令人信服的证据表明,细胞DNA是许多抗癌药物的作用靶点。因此,阐明小分子与DNA相互作用的分子本质对于合理药物设计策略的进展至关重要。在本研究中,我们比较了两种已知的DNA结合剂喹吖因(QNA)和亚甲蓝(MB)与小牛胸腺(CT)DNA的结合及热力学方面。研究揭示了这两种药物与DNA的非协同结合现象,从多种技术观察到QNA对DNA的亲和力比MB高一个数量级,但两者的结合都遵循邻位排斥原则。从log K对log [Na+]的图中得到的QNA和MB的盐依赖性数据显示斜率分别为1.06和0.93,与单价阳离子结合理论预测的值一致,并对聚电解质和非聚电解质力的贡献进行了分析。在光学熔解和差示扫描量热法研究中,两种药物的结合都通过DNA对热链分离的强烈稳定作用进一步表征。从热变性和等温滴定量热法(ITC)分析得到的结合数据与从光谱滴定数据获得的数据非常接近。ITC结果表明结合是放热的,且受到负焓变和正熵变的支持。从焓对温度的依赖性得到的热容量变化表明,QNA和MB与CT DNA结合时分别为-146和-78 cal/(mol·K)。圆二色性研究进一步表征了这些分子插入后DNA的结构变化。讨论了这些分子与DNA相互作用的分子方面。

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