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Application of isothermal titration calorimetry in bioinorganic chemistry

机译:等温滴定热法在生物无机化学中的应用

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摘要

The thermodynamics of metals ions binding to proteins and other biological molecules can be measured with isothermal titration calorimetry (ITC), which quantifies the binding enthalpy (ΔH°) and generates a binding isotherm. A fit of the isotherm provides the binding constant (K), thereby allowing the free energy (ΔG°) and ultimately the entropy (ΔS°) of binding to be determined. The temperature dependence of ΔH° can then provide the change in heat capacity (ΔC _p°) upon binding. However, ITC measurements of metal binding can be compromised by undesired reactions (e.g., precipitation, hydrolysis, and redox), and generally involve competing equilibria with the buffer and protons, which contribute to the experimental values (K _(ITC), ΔH _(ITC)). Guidelines and factors that need to be considered for ITC measurements involving metal ions are outlined. A general analysis of the experimental ITC values that accounts for the contributions of metal-buffer speciation and proton competition and provides condition-independent thermodynamic values (K, ΔH°) for metal binding is developed and validated.
机译:可以使用等温滴定热法(ITC)来测量与蛋白质和其他生物分子结合的金属离子的热力学,该技术可量化结合焓(ΔH°)并生成结合等温线。等温线的拟合提供了结合常数(K),从而允许确定结合的自由能(ΔG°),并最终确定结合的熵(ΔS°)。然后,ΔH°的温度依赖性可以在结合时提供热容的变化(ΔC_p°)。但是,ITC对金属结合的测量可能会受到不良反应(例如沉淀,水解和氧化还原)的影响,并且通常涉及与缓冲液和质子的竞争平衡,这有助于实验值(K _(ITC),ΔH_ (ITC))。概述了涉及金属离子的ITC测量需要考虑的准则和因素。开发并验证了对实验性ITC值的一般分析,该分析说明了金属缓冲物种和质子竞争的贡献,并提供了与条件无关的金属结合热力学值(K,ΔH°)。

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