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对四级增强效应以及血红蛋白四聚体和二聚体结合最后一个氧时的α/β差异的动力学研究。

Kinetic investigations of the quaternary enhancement effect and alpha/beta differences in binding the last oxygen to hemoglobin tetramers and dimers.

作者信息

Philo J S, Lary J W

机构信息

Molecular and Cell Biology Department, University of Connecticut, Storrs 06269.

出版信息

J Biol Chem. 1990 Jan 5;265(1):139-43.

PMID:2294099
Abstract

Analysis of O2 binding equilibria by two independent groups has suggested that the affinity for binding the fourth O2 to Hb tetramers is very high, about 800-1200 cal/mol higher than that of dimers (Chu, A. H., Turner, B. W., and Ackers, G. K. (1984) Biochemistry 23, 604-167; Di Cera, E., Robert, C. H., and Gill, S. J. (1987) Biochemistry 26, 4003-4008). Recently, Gibson and Edelstein challenged the reality of the quaternary enhancement effect, based on kinetic data (Gibson, Q. H., and Edelstein, S. J. (1987) J. Biol. Chem. 262, 516-519). However, these studies failed to directly address the key issue of the relative affinities of dimers and alpha 2 beta 2(O2)3. Furthermore, the extent to which alpha/beta differences influence these results remains an open question. Using partial laser photolysis and O2/CO replacement techniques we have, for the first time, resolved the rates of O2 association and dissociation to both alpha and beta chains within "R state" tetramers and dimers. We find that the beta chains are faster than alpha for both O2 binding (approximately 2-fold) and release (approximately 3-fold). The kinetically determined O2 affinities derived from these data are essentially identical for dimers and alpha 2 beta 2(O2)3. That is, the data do not show significant quaternary enhancement and suggest that the equilibrium data have both overestimated the affinity of alpha 2 beta 2(O2)3 and underestimated the affinity of dimers. The significance of and possible origins for the discrepancy between equilibrium and kinetic data are discussed.

摘要

两个独立研究小组对氧气结合平衡的分析表明,血红蛋白四聚体结合第四个氧气的亲和力非常高,比二聚体高约800 - 1200卡/摩尔(朱,A. H.,特纳,B. W.,和阿克斯,G. K.(1984年)《生物化学》23卷,604 - 167页;迪·塞拉,E.,罗伯特,C. H.,和吉尔,S. J.(1987年)《生物化学》26卷,4003 - 4008页)。最近,吉布森和埃德尔斯坦基于动力学数据对四级增强效应的真实性提出了质疑(吉布森,Q. H.,和埃德尔斯坦,S. J.(1987年)《生物化学杂志》262卷,516 - 519页)。然而,这些研究未能直接解决二聚体和α2β2(O2)3相对亲和力的关键问题。此外,α/β差异对这些结果的影响程度仍是一个悬而未决的问题。我们首次使用部分激光光解和O2/CO置换技术,解析了“R态”四聚体和二聚体内氧气与α链和β链结合和解离的速率。我们发现,对于氧气结合(约2倍)和释放(约3倍),β链都比α链快。从这些数据得出的动力学测定的氧气亲和力,对于二聚体和α2β2(O2)3基本相同。也就是说,数据并未显示出显著的四级增强,这表明平衡数据既高估了α2β2(O2)3的亲和力,又低估了二聚体的亲和力。文中讨论了平衡数据和动力学数据之间差异的意义及可能的来源。

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