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首页> 外文期刊>Journal of molecular recognition: JMR >Open-ITC: An alternate computational approach to analyze the isothermal titration calorimetry data of complex binding mechanisms
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Open-ITC: An alternate computational approach to analyze the isothermal titration calorimetry data of complex binding mechanisms

机译:Open-ITC:分析复杂结合机制的等温滴定热量数据的另一种计算方法

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摘要

Isothermal titration calorimetry (ITC) is an important technique used in quantitatively analyzing the global mechanism of protein-protein or protein-ligand interactions through thermodynamic measurements. Among different binding mechanisms, the parallel and ligand induced protein oligomerization mechanisms are technically difficult to analyze compared with a sequential binding mechanism. Here, we present a methodology implemented as a program "Open-ITC" that eliminates the need for exact analytical expressions for free ligand concentrations [L] and mole fractions of bound ligand θ that are required for the thermogram analysis. Adopting a genetic algorithm-based optimization, the thermodynamic parameters are determined, and its standard error is evaluated at the global minimum by calculating the Jacobian matrix. This approach yielded a statistically consistent result for a single-site and a two-site binding protein-ligand system. Further, a comparative simulation of a two-step sequential, a parallel, and a ligand induced oligomerization model revealed that their mechanistic differences are discernable in ITC thermograms, only if the first binding step is weaker compared with the second binding step (K 1 K 2). We find this to be valid even for the cases where the enthalpies of each of the binding process did not vary significantly.
机译:等温滴定热法(ITC)是一项重要技术,可用于通过热力学测量定量分析蛋白质-蛋白质或蛋白质-配体相互作用的整体机理。在不同的结合机制中,与顺序结合机制相比,平行和配体诱导的蛋白质低聚机制在技术上难以分析。在这里,我们提出了一种以“ Open-ITC”程序实施的方法,该方法不需要热分析图所需的自由配体浓度[L]和结合配体θ的摩尔分数的精确分析表达式。采用基于遗传算法的优化方法,确定热力学参数,并通过计算雅可比矩阵将其标准误差评估为全局最小值。该方法对于单部位和两部位结合蛋白-配体系统产生了统计上一致的结果。此外,两步顺序,平行和配体诱导的低聚模型的比较模拟表明,只有在第一结合步骤比第二结合步骤弱的情况下(K 1 < K 2)。我们发现即使对于每个结合过程的焓没有显着变化的情况,这也是有效的。

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