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氧气与北极血红蛋白结合的热力学。以驯鹿为例。

Thermodynamics of oxygen binding to arctic hemoglobins. The case of reindeer.

作者信息

Giardina B, Condò S G, Petruzzelli R, Bardgard A, Brix O

机构信息

Department of Experimental Medicine and Biochemical Sciences, II University of Rome, Italy.

出版信息

Biophys Chem. 1990 Aug 31;37(1-3):281-6. doi: 10.1016/0301-4622(90)88027-p.

Abstract

The most surprising characteristic of reindeer hemoglobin (Hb) concerns its response to changes in temperature. Thus, the shape of the oxygen-binding curve is strongly temperature dependent due to the difference in the enthalpy of oxygenation between the T and R state of the molecule. In fact, delta H of oxygen binding to the T state is strongly exothermic whereas that of the R state is very close to zero or possibly positive after correction for the heat of oxygen solubilization. Moreover, the allosteric transition T0----R0 has been found to display a negative delta H and a contemporaneous decrease in entropy, a behavior which is precisely the opposite of what has been reported for other hemoglobins. As a whole, reindeer Hb represents a beautiful example of the significance that comparative studies may have in assessing the general validity of the main properties of the hemoglobin molecule.

摘要

驯鹿血红蛋白(Hb)最令人惊讶的特性涉及其对温度变化的反应。因此,由于分子的T态和R态之间氧合焓的差异,氧结合曲线的形状强烈依赖于温度。事实上,氧与T态结合的ΔH是强烈放热的,而R态的ΔH在校正氧溶解热后非常接近零或可能为正。此外,已发现变构转变T0→R0表现出负的ΔH和同时的熵减少,这种行为与其他血红蛋白的报道正好相反。总体而言,驯鹿Hb是一个很好的例子,说明了比较研究在评估血红蛋白分子主要特性的普遍有效性方面可能具有的重要意义。

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