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等温滴定量热法:实验设计、数据分析以及探究大分子/配体结合和动力学相互作用

Isothermal titration calorimetry: experimental design, data analysis, and probing macromolecule/ligand binding and kinetic interactions.

作者信息

Freyer Matthew W, Lewis Edwin A

机构信息

Department of Chemistry and Biochemistry, Northern Arizona University, Flagstaff, Arizona 86011, USA.

出版信息

Methods Cell Biol. 2008;84:79-113. doi: 10.1016/S0091-679X(07)84004-0.

Abstract

Isothermal titration calorimetry (ITC) is now routinely used to directly characterize the thermodynamics of biopolymer binding interactions and the kinetics of enzyme-catalyzed reactions. This is the result of improvements in ITC instrumentation and data analysis software. Modern ITC instruments make it possible to measure heat effects as small as 0.1 microcal (0.4 microJ), allowing the determination of binding constants, K's, as large as 10(8) - 10(9)M(-1). Modern ITC instruments make it possible to measure heat rates as small as 0.1 microcal/sec, allowing for the precise determination of reaction rates in the range of 10(-12) mol/sec. Values for K(m) and k(cat), in the ranges of 10(-2) - 10(3) microM and 0.05 - 500 sec(-1), respectively, can be determined by ITC. This chapter reviews the planning of an optimal ITC experiment for either a binding or kinetic study, guides the reader through simulated sample experiments, and reviews analysis of the data and the interpretation of the results.

摘要

等温滴定量热法(ITC)如今经常被用于直接表征生物聚合物结合相互作用的热力学以及酶催化反应的动力学。这得益于ITC仪器设备和数据分析软件的改进。现代ITC仪器能够测量低至0.1微卡(0.4微焦)的热效应,从而可以测定高达10⁸ - 10⁹M⁻¹的结合常数K。现代ITC仪器能够测量低至0.1微卡/秒的热速率,进而能够精确测定10⁻¹²摩尔/秒范围内的反应速率。ITC可以分别测定Kₘ和kₑₜ值,其范围分别为10⁻² - 10³微摩尔和0.05 - 500秒⁻¹。本章回顾了针对结合或动力学研究进行最佳ITC实验的规划,引导读者完成模拟样品实验,并回顾数据的分析和结果的解读。

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