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首页> 外文期刊>RSC Advances >Interaction of a synthesized pyrene based fluorescent probe with CT-DNA: spectroscopic, thermodynamic and molecular modeling studies
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Interaction of a synthesized pyrene based fluorescent probe with CT-DNA: spectroscopic, thermodynamic and molecular modeling studies

机译:基于CT-DNA的合成芘荧光探针的相互作用:光谱,热力学和分子建模研究

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The present study demonstrates the synthesis of a new pyrene based water soluble fluorescent probe and its interaction with Calf-thymus DNA. The interaction has been studied using various biophysical methods like absorption and fluorescence spectroscopy, optical melting, isothermal titration colorimetry and circular dichroic studies. Experimental results indicate the binding mode between the probe and DNA to be principally intercalative having a binding energy in the range of -7 to -8 kcal mol(-1) and the binding process is favored by both negative enthalpy change and positive entropy change. A salt dependent study revealed that the binding is favored by both small ionic interaction and large nonionic interactions. All the data obtained from biophysical studies have been validated by a molecular modeling study.
机译:本研究证明了新型芘的水溶性荧光探针的合成及其与小牛胸腺DNA的相互作用。 已经使用具有吸收和荧光光谱,光学熔化,等温滴定比色测定法和圆形二向色谱研究的各种生物物理方法研究了相互作用。 实验结果表明探针和DNA之间的结合模式主要是在-7至-8kcal摩尔(-1)范围内的结合能量的嵌入能量,并且通过阴性焓变化和阳性熵变化有利于结合过程。 盐依赖性研究表明,结合是通过小离子相互作用和大的非离子相互作用的青睐。 通过分子建模研究验证了从生物物理学研究获得的所有数据。

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