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生物物理研究:活性染料硫堇与 DNA 相互作用的碱基特异性和能量学:光谱和量热法研究。

Biophysical studies on the base specificity and energetics of the DNA interaction of photoactive dye thionine: spectroscopic and calorimetric approach.

机构信息

Indian Institute of Chemical Biology, 4, Raja S. C. Mullick Road, Kolkata 700032, India.

出版信息

Biophys Chem. 2010 May;148(1-3):93-103. doi: 10.1016/j.bpc.2010.02.015. Epub 2010 Mar 1.

Abstract

In this study absorbance, fluorescence, circular dichroic spectroscopy, viscosity, thermal melting and calorimetric techniques were employed to understand the binding of the phenothiazinium dye, thionine, with deoxyribonucleic acids of varying base composition. Strong hypochromic and bathochromic effects and quenching of fluorescence were observed that showed strong binding of thionine to the DNAs. The binding parameters evaluated from Scatchard analysis through McGhee-von Hippel analysis showed that the binding was non-cooperative and affinities of the order of 10(5)M(-)(1). The results of ferrocyanide fluorescence quenching studies and viscosity experiments, taken together suggested the intercalation of thionine while thermal melting, differential scanning calorimetry and circular dichroic studies provided evidence for the thermal stabilization and conformational perturbations associated with the binding. The thermodynamic parameters elucidated through sensitive isothermal titration calorimetric studies suggested that the binding was exothermic, characterized by negative enthalpy and large positive entropy changes and that the non-electrostatic contributions play a significant role for thionine association to DNA. The heat capacity changes obtained from the temperature dependence of enthalpy changes gave negative values suggesting substantial hydrophobic contribution in the DNA binding process of thionine. Further, an observation of enthalpy-entropy compensation in the DNA binding also suggested the involvement of multiplicity of non covalent interactions in the binding process. The base specificity of the complexation and energetics of the interaction of thionine to DNA are obtained for the first time from this study.

摘要

在这项研究中,我们采用了吸收光谱、荧光光谱、圆二色光谱、粘度、热融和量热技术,以了解吩噻嗪染料硫堇与不同碱基组成的脱氧核糖核酸的结合情况。我们观察到强烈的减色和增色效应以及荧光猝灭,表明硫堇与 DNA 具有强烈的结合。通过 Scatchard 分析和 McGhee-von Hippel 分析评估的结合参数表明,结合是非协同的,亲和力约为 10(5)M(-)(1)。亚铁氰化物荧光猝灭研究和粘度实验的结果表明,硫堇发生了嵌入,而热融、差示扫描量热法和圆二色光谱研究则提供了与结合相关的热稳定性和构象扰动的证据。通过灵敏等温滴定量热法研究阐明的热力学参数表明,结合是放热的,其特征为负焓和大的正熵变化,并且非静电贡献对硫堇与 DNA 的结合起着重要作用。从焓变随温度的变化得到的热容变化值为负值,表明硫堇与 DNA 结合过程中存在大量疏水贡献。此外,DNA 结合过程中焓熵补偿的观察也表明,结合过程中涉及多种非共价相互作用的多重性。本研究首次获得了硫堇与 DNA 结合的碱基特异性和相互作用的能量学。

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