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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Development of a fitting model suitable for the isothermal titration calorimetric curve of DNA with cationic ligands
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Development of a fitting model suitable for the isothermal titration calorimetric curve of DNA with cationic ligands

机译:建立适用于阳离子配体的DNA等温滴定量热曲线的拟合模型

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摘要

A novel curve fitting model was developed for the isothermal titration calorimetry (ITC) of a cationic ligand binding to DNA. The ligand binding often generates a DNA conformational change from an elongated random coil into a compact collapsed form that is referred to as "DNA condensation". The ligand binding can be classified into two regimes having different binding constants K-i, i.e., the binding to an elongated DNA chain with a binding constant K-1 and with K-2 that occurred during the conformational transition. The two-variable curve fitting models are usually bound by a strict regulation on the difference in the values of the binding constants K-1 > K-2. For the DNA condensation, however, the relationships for K-1 and K-2 are still unclear. The novel curve fitting model developed in this study takes into account this uncertainty on the relationship of the binding constants and is highly flexible for the two-variable binding constant system.
机译:开发了一种新型的曲线拟合模型,用于阳离子配体与DNA的等温滴定热分析(ITC)。配体结合经常从细长的无规卷曲产生紧密的折叠形式的DNA构象变化,这被称为“ DNA缩合”。可以将配体结合分为具有不同结合常数K-1的两种方案,即与在构象转变期间发生的具有结合常数K-1和K-2的伸长的DNA链结合。通常对绑定常数K-1> K-2的值的差异进行严格的调节,以约束两变量曲线拟合模型。然而,对于DNA缩合,对于K-1和K-2的关系仍然不清楚。在这项研究中开发的新型曲线拟合模型考虑了结合常数之间关系的不确定性,并且对于二变量结合常数系统具有高度的灵活性。

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