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首页> 外文期刊>Methods: A Companion to Methods in Enzymology >A unified framework based on the binding polynomial for characterizing biological systems by isothermal titration calorimetry
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A unified framework based on the binding polynomial for characterizing biological systems by isothermal titration calorimetry

机译:基于结合多项式的统一框架,用于通过等温滴定量热法表征生物系统

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Isothermal titration calorimetry (ITC) has become the gold-standard technique for studying binding processes due to its high precision and sensitivity, as well as its capability for the simultaneous determination of the association equilibrium constant, the binding enthalpy and the binding stoichiometry. The current widespread use of ITC for biological systems has been facilitated by technical advances and the availability of commercial calorimeters. However, the complexity of data analysis for non-standard models is one of the most significant drawbacks in ITC. Many models for studying macromolecular interactions can be found in the literature, but it looks like each biological system requires specific modeling and data analysis approaches. The aim of this article is to solve this lack of unity and provide a unified methodological framework for studying binding interactions by ITC that can be applied to any experimental system. The apparent complexity of this methodology, based on the binding polynomial, is overcome by its easy generalization to complex systems. (C) 2014 Elsevier Inc. All rights reserved.
机译:等温滴定热法(ITC)由于其高精度和高灵敏度以及同时测定缔合平衡常数,结合焓和结合化学计量的能力,已成为研究结合过程的金标准技术。技术进步和商业量热仪的可用性促进了ITC在生物系统中的当前广泛使用。但是,非标准模型数据分析的复杂性是ITC的最大缺陷之一。在文献中可以找到许多用于研究大分子相互作用的模型,但是看起来每个生物系统都需要特定的建模和数据分析方法。本文的目的是解决这种缺乏统一性的问题,并提供一个统一的方法框架来研究ITC的结合相互作用,该框架可应用于任何实验系统。这种方法基于绑定多项式的表面复杂性可以通过将其轻松地推广到复杂系统而得以克服。 (C)2014 Elsevier Inc.保留所有权利。

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