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血红蛋白鳟鱼I对一氧化碳结合的热力学分析。

Thermodynamic analysis of carbon monoxide binding by hemoglobin trout I.

作者信息

Barisas B G, Gill S J

出版信息

Biophys Chem. 1979 Mar;9(3):235-44. doi: 10.1016/0301-4622(79)85006-1.

DOI:10.1016/0301-4622(79)85006-1
PMID:454801
Abstract

Calorimetric measurements at 25 degrees of the differential heat of CO binding by hemoglobin trout I have been examined together with the CO binding isotherms for the protein at 4 degrees and 20 degrees. Simultaneous treatment of these data sets by a statistically rigorous technique permits evaluation of all the thermodynamic parameters for both the Adair and the Monod, Wyman, Changeux (MWC) models. The results show the details of the unusual temperature dependent cooperativity which this hemoglobin exhibits. In the Adair formalism the increasingly favorable free energy change for successive steps of ligand binding are nearly linearly paralleled by increasingly negative enthalpy changes for these steps. This causes the enhanced cooperativity observed as the temperature is decreased. For the MWC case, lowering the temperature increases the stability of the unligated T state relative to the unligated R state since the enthalpy of the T leads to R transition is 29.4 kcal mol-1. Simultaneously, the favorability of ligating R forms relative to T is enhanced since R form ligation is 14.1 kcal (mol CO)-1 more exothermic than that of T. The balance between these opposing effects is to increase ligand binding cooperativity at low temperatures. The predicted temperature dependence of the Hill coefficient for the MWC and Adair models is identical at low and intermediate temperatures, but, interestingly, would show a strong divergence at high temperatures where negative cooperativity is suggested for the Adair case and positive cooperativity for the MWC case.

摘要

已对血红蛋白鳟鱼 I 在 25 摄氏度下结合一氧化碳的微分热进行了量热测量,并结合了该蛋白质在 4 摄氏度和 20 摄氏度下的一氧化碳结合等温线进行研究。通过一种统计严格的技术对这些数据集进行同时处理,可以评估阿代尔模型和莫诺德、怀曼、尚热(MWC)模型的所有热力学参数。结果显示了这种血红蛋白所表现出的不寻常的温度依赖性协同作用的细节。在阿代尔形式体系中,配体结合连续步骤中越来越有利的自由能变化几乎与这些步骤中越来越负的焓变呈线性平行关系。这导致随着温度降低观察到协同性增强。对于 MWC 情况,降低温度会增加未结合配体的 T 态相对于未结合配体的 R 态的稳定性,因为 T 态向 R 态转变的焓为 29.4 千卡/摩尔。同时,相对于 T 态,结合配体的 R 态的有利性增强,因为 R 态结合配体比 T 态放热多 14.1 千卡/(摩尔一氧化碳)。这些相反效应之间的平衡是在低温下增加配体结合的协同性。MWC 模型和阿代尔模型预测的希尔系数的温度依赖性在低温和中温时是相同的,但有趣的是,在高温时会出现强烈分歧,在高温下阿代尔情况显示负协同性,而 MWC 情况显示正协同性。

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