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首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >Isothermal acid-titration calorimetry for evaluating the pH dependence of protein stability.
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Isothermal acid-titration calorimetry for evaluating the pH dependence of protein stability.

机译:等温酸滴定热法用于评估蛋白质稳定性的pH依赖性。

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摘要

A new method, which can be called as isothermal acid-titration calorimetry (IATC), was proposed for evaluating the enthalpy of protein molecules as a function of pH using isothermal titration calorimetry (ITC). This measurement was used to analyze the acid-denaturation of bovine ribonuclease A. The enthalpy change by acid-denaturation of this protein was estimated as 310 kJ/mol at pH 2.8 and 40 degrees C. This value agreed well with the enthalpy change obtained by differential scanning calorimetry. The midpoint pH and proton binding-number difference observed by IATC agreed well with those of the acid transition of the three-dimensional structure monitored by circular dichroism spectrometry. The van't Hoff enthalpy of the transition was derived from the temperature dependence of the midpoint pH and the proton binding-number difference. It agreed well with the calorimetric enthalpy change directly observed by IATC, strongly indicating that there was no stable intermediate state during the acid transition of this protein.
机译:提出了一种新方法,称为等温酸滴定热法(IATC),用于使用等温滴定热法(ITC)评估蛋白质分子的焓随pH的变化。该测量用于分析牛核糖核酸酶A的酸变性。在pH 2.8和40℃下,该蛋白质的酸变性引起的焓变化估计为310kJ / mol。该值与通过该方法获得的焓变化很好地吻合。差示扫描量热法。 IATC观察到的中点pH和质子结合数差异与通过圆二色光谱法监测的三维结构的酸转变相一致。转变的范霍夫焓是由中点pH的温度依赖性和质子结合数差引起的。它与IATC直接观察到的比热焓变化非常吻合,强烈表明该蛋白的酸转变过程中没有稳定的中间状态。

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