用滴定量热法测定碳酸酐酶酸展开的热力学

Lina Baranauskienė, Jurgita Matulienė, Daumantas Matulis
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引用次数: 6

摘要

在5 ~ 59℃的温度范围内,用酸滴定蛋白质,用等温滴定量热法(ITC)测定了碳酸酐酶II的展开焓(ΔuH)。通过将ITC结果与我们之前在39至72°C温度范围内的差示扫描量热法(DSC)结果相结合,获得了ΔuH在宽温度范围内的依赖关系。焓的温度依赖性显示出显著的曲率,表明展开的热容(ΔuCp)依赖于温度。ΔuCp的t导数为100±30 J/(mol × K2),得到ΔuCp在5℃时为15.8 kJ/(mol × K),在37℃时为19.0 kJ/(mol × K),在64℃时为21.8 kJ/(mol × K)。展开焓在17℃时为零。在较低的温度下,ΔuH变成放热。这种利用酸- itc测定蛋白质展开热力学的方法,大大拓宽了可获得的t范围,提供了生理温度下热力学参数的直接估计,并进一步深入了解了展开的吉布斯自由能的第三阶t导数。
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Determination of the thermodynamics of carbonic anhydrase acid-unfolding by titration calorimetry

The enthalpy of unfolding (ΔuH) of carbonic anhydrase II was determined by titrating the protein with acid and measuring the heat using isothermal titration calorimetry (ITC) in the temperature range of 5 to 59 °C. By combining the ITC results with our previous findings by differential scanning calorimetry (DSC) in the temperature range of 39 to 72 °C, the ΔuH dependence over a wide temperature range was obtained. The temperature dependence of the enthalpy displays significant curvature indicating that the heat capacity of unfolding (ΔuCp) is dependent on temperature. The T-derivative of ΔuCp was equal to 100 ± 30 J/(mol × K2), with the result that the ΔuCp is equal to 15.8 kJ/(mol × K) at 5 °C, 19.0 kJ/(mol × K) at 37 °C and 21.8 kJ/(mol × K) at 64 °C. The enthalpy of unfolding is zero at 17 °C. At lower temperatures, the ΔuH becomes exothermic.

This method of determining protein unfolding thermodynamics using acid-ITC, significantly widens the accessible T-range, provides direct estimate of the thermodynamic parameters at physiological temperature, and gives further insight into the third T-derivative of the Gibbs free energy of unfolding.

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