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氧和一氧化碳与血红蛋白及肌红蛋白结合的薄层微量热研究。

Thin-layer microcalorimetric studies of oxygen and carbon monoxide binding to hemoglobin and myoglobin.

作者信息

Johnson C R, Gill S J, Peters K S

机构信息

Department of Chemistry and Biochemistry, University of Colorado, Boulder 80309.

出版信息

Biophys Chem. 1992 Nov;45(1):7-15. doi: 10.1016/0301-4622(92)87018-e.

Abstract

A thin-layer gas-solution microcalorimeter has been developed to study the binding reactions of gaseous ligands with ligand binding macromolecules. We have measured the enthalpy of binding oxygen and carbon monoxide to horse myoglobin, human hemoglobin A0 and sperm whale myoglobin in phosphate buffer at pH 7.6, with the enzyme reducing system of Hayashi. Reactions of human hemoglobin were also done under various buffer conditions in order to elucidate the Bohr effect. These binding reactions were found not to exhibit a detectable enthalpy change over the temperature range of 10 degrees C to 25 degrees C. The enzyme reducing system was shown to react with oxygen in a manner that releases a substantial amount of heat. This problem was corrected by using a minimum amount and by placing the buffer and enzyme system in the reference cell effectively cancelling the oxygen enzyme reaction heat as well as the heat of gas dissolution. It was also demonstrated that glucose-6-phosphate, one of the reducing system components, in 50 mM concentrations can influence the heat of binding oxygen and carbon monoxide to hemoglobin. This effect was shown to be absent in the myoglobins and also with hemoglobin at glucose-6-phosphate concentrations less than 5 mM.

摘要

已开发出一种薄层气-溶液微量热计,用于研究气态配体与配体结合大分子的结合反应。我们用林氏酶还原系统在pH 7.6的磷酸盐缓冲液中测量了氧气和一氧化碳与马肌红蛋白、人血红蛋白A0和抹香鲸肌红蛋白结合的焓变。为了阐明波尔效应,还在各种缓冲条件下进行了人血红蛋白的反应。发现在10℃至25℃的温度范围内,这些结合反应未表现出可检测到的焓变。结果表明,酶还原系统与氧气反应会释放大量热量。通过使用最少量的该系统,并将缓冲液和酶系统置于参比池中,有效消除了氧气酶反应热以及气体溶解热,从而纠正了这个问题。还证明了50 mM浓度的还原系统成分之一6-磷酸葡萄糖会影响氧气和一氧化碳与血红蛋白结合的热量。结果表明,肌红蛋白以及6-磷酸葡萄糖浓度低于5 mM的血红蛋白不存在这种影响。

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