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氧气与血红蛋白A结合的动力学

Kinetics of oxygen binding to hemoglobin A.

作者信息

Gibson Q H

机构信息

Department of Biochemistry and Cell Biology, Rice University, Houston, Texas 77005, USA.

出版信息

Biochemistry. 1999 Apr 20;38(16):5191-9. doi: 10.1021/bi982970t.

Abstract

The two-state model [Monod, J., Wyman, J., and Changeux, J. P. (1965) J. Mol. Biol. 12, 88-118] postulates a single conformational change which, in the case of hemoglobin, has been related to the structural differences between deoxy and ligated hemoglobins [Perutz, M. F. (1979) Nature (London) 228, 726-739]. In its simplest form, the model does not represent satisfactorily either the equilibrium or the kinetics of the hemoglobin-oxygen reaction. The kinetic difficulty is with the rate of dissociation from the T-state, and may be met by assuming a wide difference in behavior between alpha- and beta-subunits. Experiments with Ni-Fe hybrids, however, show almost identical rates of combination with, and dissociation from, the two types of subunit, both of which develop R-like reactions as the pH is raised, the alpha-Fe-subunits at lower pH than the beta-Fe-subunits [Shibayama, N., Yonetani, T., Regan, R. M., and Gibson, Q. H. (1995) Biochemistry 34, 14658-14667]. The reactions of oxygen with hemoglobin A and the effect of pH upon them may be represented by assuming behavior of its subunits similar to that of the Ni-Fe hybrids. In such a scheme, alpha-alpha and beta-beta interactions become important elements in cooperativity, and more than two allosteric states are required, for reconsideration of the structural basis of cooperativity.

摘要

两态模型[莫诺德,J.,怀曼,J.,和尚热,J. P.(1965年)《分子生物学杂志》12卷,88 - 118页]假定存在单一的构象变化,就血红蛋白而言,这种变化与脱氧血红蛋白和结合配体的血红蛋白之间的结构差异有关[佩鲁茨,M. F.(1979年)《自然》(伦敦)228卷,726 - 739页]。该模型以其最简单的形式,无论是对血红蛋白 - 氧反应的平衡还是动力学,都不能令人满意地表示。动力学上的困难在于从T态解离的速率,可以通过假设α亚基和β亚基在行为上有很大差异来解决。然而,镍 - 铁杂合血红蛋白的实验表明,两种类型的亚基与氧结合和从氧解离的速率几乎相同,随着pH升高,两者都会发生类似R态的反应,α - 铁亚基比β - 铁亚基所需的pH更低[柴山,N.,米谷谷,T.,里根,R. M.,和吉布森,Q. H.(1995年)《生物化学》34卷,14658 - 14667页]。氧与血红蛋白A的反应及其受pH的影响,可以通过假设其亚基的行为与镍 - 铁杂合血红蛋白相似来表示。在这样的方案中,α - α和β - β相互作用成为协同性的重要因素,并且需要不止两个变构状态,以便重新考虑协同性的结构基础。

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