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一氧化碳与分离的血红蛋白链的结合。

Binding of carbon monoxide to isolated hemoglobin chains.

作者信息

Alberding N, Chan S S, Eisenstein L, Frauenfelder H, Good D, Gunsalus I C, Nordlund T M, Perutz M F, Reynolds A H, Sorensen L B

出版信息

Biochemistry. 1978 Jan 10;17(1):43-51. doi: 10.1021/bi00594a007.

Abstract

Binding of carbon monoxide to the separated alpha and beta chains of hemoglobin, with and without bound p-mercuribenzoate, has been measured at temperatures from 5 to 340 K for times 2 mus to 1 ks using flash photolysis. All four proteins exhibit three different rebinding processes. The data are interpreted by a model in which the carbon monoxide, moving from the solvent to the binding site at the ferrous heme iron, encounters three barriers. The temperature dependences of the three processes yield activation enthalpies and entropies for the three barriers for all four proteins. Binding at temperatures below about 200 K is nonexponential, implying that the innermost barrier has a distribution of activation enthalpies. The distributions for the four proteins have been determined. At temperatures below 30 K, the CO binding rates approach finite low-temperature limits; binding thus proceeds by quantum-mechanical tunneling. Invoking a simple model, the widths of the innermost barriers are extracted from the measured tunneling rates. The experimental parameters are correlated with structural features of the hemoglobin chains and compared with previously published data on myoglobin and protoheme. A correlation is established between the height of the innermost barrier and the equilibrium CO pressure.

摘要

利用闪光光解技术,在5至340K的温度范围内,对2微秒至1千秒的时间,测量了一氧化碳与血红蛋白分离的α链和β链(有无对-汞苯甲酸结合)的结合情况。所有四种蛋白质均表现出三种不同的再结合过程。数据由一个模型进行解释,在该模型中,一氧化碳从溶剂移动到亚铁血红素铁的结合位点时,会遇到三个屏障。这三个过程的温度依赖性给出了所有四种蛋白质三个屏障的活化焓和熵。在约200K以下的温度下结合是非指数性的,这意味着最内层屏障具有活化焓的分布。已确定了四种蛋白质的分布。在30K以下的温度下,CO结合速率接近有限的低温极限;因此结合是通过量子力学隧穿进行的。通过一个简单模型,从测量的隧穿速率中提取了最内层屏障的宽度。将实验参数与血红蛋白链的结构特征相关联,并与之前发表的关于肌红蛋白和原血红素的数据进行比较。在最内层屏障的高度与平衡CO压力之间建立了相关性。

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