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从其氧合亚基组装成人血红蛋白和镰状血红蛋白。β链四聚体解离的不同速率。

Assembly of human adult and sickle hemoglobins from their oxygenated subunits. Differential rates of beta chain tetramer dissociation.

作者信息

McDonald M J

出版信息

J Biol Chem. 1981 Jun 25;256(12):6487-90.

PMID:7240220
Abstract

The rate of assembly of oxyhemoglobins A and S at pH 7 and 20 degrees C has been followed spectrophotometrically at 582.5 nm, a maximum of the difference spectrum of isolated oxygenated subunits and intact oxyhemoglobin. In 0.1 M potassium phosphate buffer, the resultant time courses following mixing of equivalent concentrations of alpha and beta chains were homogeneous and followed first order kinetics. These time courses were protein concentration independent over a range of 8.0 to 60 X 10(-6) M in heme after mixing and presumably reflect the rate of dissociation of the beta chain tetramer. This rate-limiting dissociation reaction was found to be nearly 2-fold slower for the beta S than the beta A chain tetramer exhibiting half-times of 27 and 15 min, respectively. The overall rate of formation of Hb S and Hb A appears to be significantly influenced by the rates of dissociation of their respective beta chains. These findings are in contrast to mixing experiments done in 0.01 M potassium phosphate buffer which revealed time courses which were heterogeneous and markedly dependent upon protein concentration. The stability of the oxygenated beta chain tetramer and, therefore, the overall kinetic profile of liganded hemoglobin reconstitution is acutely sensitive to buffer conditions.

摘要

在pH值为7、温度为20摄氏度的条件下,通过分光光度法在582.5nm处跟踪了氧合血红蛋白A和S的组装速率,582.5nm是分离的氧合亚基与完整氧合血红蛋白的差光谱的最大值。在0.1M磷酸钾缓冲液中,将等量浓度的α链和β链混合后得到的时间进程是均匀的,且符合一级动力学。这些时间进程在混合后血红素浓度范围为8.0至60×10⁻⁶M时与蛋白质浓度无关,大概反映了β链四聚体的解离速率。发现这种限速解离反应对于βS链四聚体来说比βA链四聚体慢近2倍,其半衰期分别为27分钟和15分钟。Hb S和Hb A的总体形成速率似乎受到它们各自β链解离速率的显著影响。这些发现与在0.01M磷酸钾缓冲液中进行的混合实验形成对比,后者显示出的时间进程是不均匀的,并且明显依赖于蛋白质浓度。氧合β链四聚体的稳定性,以及因此配体血红蛋白重构的总体动力学特征,对缓冲条件极为敏感。

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