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首页> 外文期刊>Analytical Biochemistry: An International Journal of Analytical and Preparative Methods >Modeling complex equilibria in isothermal titration calorimetry experiments: Thermodynamic parameters estimation for a three-binding-site model
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Modeling complex equilibria in isothermal titration calorimetry experiments: Thermodynamic parameters estimation for a three-binding-site model

机译:在等温滴定量热法实验中模拟复杂平衡:三结合位点模型的热力学参数估计

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摘要

Isothermal titration calorimetry (ITC) is a powerful technique that can be used to estimate a complete set of thermodynamic parameters (e.g., K _(eq) (or ΔG), ΔH, ΔS, and n) for a ligand-binding interaction described by a thermodynamic model. Thermodynamic models are constructed by combining equilibrium constant, mass balance, and charge balance equations for the system under study. Commercial ITC instruments are supplied with software that includes a number of simple interaction models, for example, one binding site, two binding sites, sequential sites, and n-independent binding sites. More complex models, for example, three or more binding sites, one site with multiple binding mechanisms, linked equilibria, or equilibria involving macromolecular conformational selection through ligand binding, need to be developed on a case-by-case basis by the ITC user. In this paper we provide an algorithm (and a link to our MATLAB program) for the nonlinear regression analysis of a multiple-binding-site model with up to four overlapping binding equilibria. Error analysis demonstrates that fitting ITC data for multiple parameters (e.g., up to nine parameters in the three-binding-site model) yields thermodynamic parameters with acceptable accuracy.
机译:等温滴定量热法(ITC)是一项功能强大的技术,可用于估算完整的一组热力学参数(例如,K_(eq)(或ΔG),ΔH,ΔS和n),用于描述热力学模型。通过组合所研究系统的平衡常数,质量平衡和电荷平衡方程来构建热力学模型。商业ITC仪器随附的软件包括许多简单的交互模型,例如,一个结合位点,两个结合位点,顺序位点和n个独立结合位点。 ITC用户需要根据情况开发更复杂的模型,例如,三个或更多的结合位点,一个具有多种结合机制的位点,连锁的平衡或涉及通过配体结合进行大分子构象选择的平衡。在本文中,我们提供了一种算法(以及到我们的MATLAB程序的链接),用于对最多具有四个重叠绑定平衡的多绑定位点模型进行非线性回归分析。误差分析表明,对多个参数(例如,三个结合位点模型中的多达9个参数)拟合ITC数据会产生具有可接受精度的热力学参数。

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