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首页> 外文期刊>Methods: A Companion to Methods in Enzymology >Fitting two- and three-site binding models to isothermal titration calorimetric data
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Fitting two- and three-site binding models to isothermal titration calorimetric data

机译:将两点和三点结合模型拟合到等温滴定量热数据

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摘要

As isothermal titration calorimetry (ITC) gains popularity for the characterization of enthalpies and equilibrium association constants of simple 1:1 biomolecular interactions, its use for more complex systems is growing. The method is increasingly used to study interactions in which a single binding partner (molecule "A") interacts with multiple copies of a second partner ("B"); thus examinations of ABB and ABBB interactions are not uncommon. The structure of ITC data (commonly formatted as isotherms) has a strong bearing on the ability of the researcher to extract the necessary parameters from them. Usually, only 10-30 injections are recorded in a single ITC experiment. Even if replicates are performed, the data must support the extraction of up to twelve parameters from an ABBB system. Further, the refinement of some of the parameters is largely driven by only a subset of the data. The ability of ITC data to guide the deterministic estimation of these parameters may therefore be questioned. This work assesses the ability of both empirical and simulated ITC data of ABB and ABBB systems to support the simultaneous estimation of the desired thermodynamic parameters. The results demonstrate that multiphasic isotherms tend to (but do not always) support the estimation of multiple parameters. On the other hand, uniphasic data obtained from multi-site binding systems are more problematic. In all cases, a thorough exploration of how precisely the estimated parameters are specified by the data is justified. (C) 2014 Elsevier Inc. All rights reserved.
机译:随着等温滴定热量法(ITC)在简单的1:1生物分子相互作用的焓和平衡缔合常数的表征方面越来越受欢迎,它在更复杂的系统中的使用正在增长。该方法被越来越多地用于研究其中单个结合伴侣(分子“ A”)与第二个伴侣(“ B”)的多个拷贝相互作用的相互作用。因此,对ABB和ABBB相互作用的检查并不罕见。 ITC数据的结构(通常格式化为等温线)与研究人员从中提取必要参数的能力密切相关。通常,单个ITC实验中仅记录10-30次注射。即使执行复制,数据也必须支持从ABBB系统中提取多达十二个参数。此外,某些参数的优化在很大程度上仅由数据的子集驱动。因此,可能会质疑ITC数据指导这些参数的确定性估计的能力。这项工作评估了ABB和ABBB系统的经验和模拟ITC数据支持同时估算所需热力学参数的能力。结果表明,多相等温线倾向于(但不总是)支持多个参数的估计。另一方面,从多站点绑定系统获得的单相数据则存在更多问题。在所有情况下,都需要对数据如何精确指定估计参数进行透彻的探讨。 (C)2014 Elsevier Inc.保留所有权利。

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