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首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >Differential scanning microcalorimetry study of the thermal denaturation of haemoglobin
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Differential scanning microcalorimetry study of the thermal denaturation of haemoglobin

机译:差示扫描量热法研究血红蛋白的热变性

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A study of thermal denaturation of human haemoglobin A(0) (HbA(0)) and methaemoglobin (mHb) was carried out by differential scanning calorimetry. DSC haemoglobin profiles were scan rate dependent and only partly reversible. Thermal unfolding of protein was analysed with the use of both equilibrium thermodynamic and kinetic approaches. The fittings based on the simple equilibrium/dissociation model were good and much more satisfactory than those based on "fully-kinetic" models. However the presence of some kinetic distortion during the unfolding process should be noted due to the scan-rate effect on DSC transitions. The calculated first-order kinetic constant for mHb was higher by two orders than the one for HbA(0) (stabilised form). The average activation energy for HbA0 was found to be 289+/-28 kJ M-1 while for mHb it was about 100 kj M-1 lower. (C) 2005 Elsevier B.V. All rights reserved.
机译:通过差示扫描量热法对人血红蛋白A(0)(HbA(0))和血红蛋白(mHb)的热变性进行了研究。 DSC血红蛋白曲线与扫描速率有关,且仅部分可逆。使用平衡热力学和动力学方法分析蛋白质的热解折叠。与基于“完全运动”模型的拟合相比,基于简单平衡/解离模型的拟合良好且令人满意。但是,由于扫描速率对DSC跃迁的影响,在展开过程中应注意一些动力学畸变的存在。计算的mHb一级动力学常数比HbA(0)(稳定形式)高一阶。发现HbA0的平均活化能为289 +/- 28 kJ M-1,而mHb的平均活化能低约100 kj M-1。 (C)2005 Elsevier B.V.保留所有权利。

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