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An Explicit Formulation Approach for the Analysis of Calcium Binding to EF-Hand Proteins Using Isothermal Titration Calorimetry

机译:用等温滴定量热法分析钙与EF-手蛋白结合的显式配方方法

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摘要

We present an improved and extended version of a recently proposed mathematical approach for modeling isotherms of ligand-to-macromolecule binding from isothermal titration calorimetry. Our approach uses ordinary differential equations, solved implicitly and numerically as initial value problems, to provide a quantitative description of the fraction bound of each competing member of a complex mixture of macromolecules from the basis of general binding polynomials. This approach greatly simplifies the formulation of complex binding models. In addition to our generalized, model-free approach, we have introduced a mathematical treatment for the case where ligand is present before the onset of the titration, essential for data analysis when complete removal of the binding partner may disrupt the structural and functional characteristics of the macromolecule. Demonstration programs playable on a freely available software platform are provided. Our method is experimentally validated with classic calcium (Ca2+) ion-selective potentiometry and isotherms of Ca2+ binding to a mixture of chelators with and without residual ligand present in the reaction vessel. Finally, we simulate and compare experimental data fits for the binding isotherms of Ca2+ binding to its canonical binding site (EF-hand domain) of polycystin 2, a Ca2+-dependent channel with relevance to polycystic kidney disease.
机译:我们提出了一种改进和扩展的,最近提出的数学方法,用于从等温滴定量热法模拟配体对大分子结合的等温线。我们的方法使用作为初始值问题隐式地和数字地求解的常微分方程,从广义结合多项式的角度定量描述大分子复杂混合物的每个竞争成员的分数界。这种方法大大简化了复杂绑定模型的制定。除了通用的无模型方法外,我们还针对滴定开始之前存在配体的情况引入了数学处理方法,这对于数据分析必不可少,因为当完全去除结合配偶体可能会破坏其结构和功能特性时大分子。提供了可在免费软件平台上播放的演示程序。我们的方法已通过经典钙(Ca 2 + )离子选择性电位法和Ca 2 + 的等温线结合到螯合剂混合物上进行了实验验证,其中螯合剂中存在或不存在残留配体反应容器。最后,我们模拟并比较适合于Ca 2 + 与其多囊藻毒素2(Ca 2 + 依赖性通道与多囊肾有关。

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