Brittain T
Biochem J. 1984 Aug 1;221(3):561-8. doi: 10.1042/bj2210561.
The blood of the extreme poikilotherm Trematomus borchgrevinki contains one major haemoglobin component, which may be separated from the minor species by ion-exchange chromatography. This haemoglobin shows co-operative CO-binding isotherms at pH 8.2. An analysis of the temperature-dependence of the binding curves has allowed the thermodynamic constants associated with the two-state allosteric parameters L, KR and KT to be measured. The binding of CO at lower pH (6.2) is characterized by the maintenance of the T-state to relatively high degrees of saturation. Kinetic investigations with the use of flash photolysis of the haemoglobin-CO complex under various conditions has allowed the determination of the thermodynamic parameters association with the T-state and R-state rate constants. An amalgamation of these data has allowed the mathematical simulation of predicted time courses for CO binding to this haemoglobin, by using the two-state model, which very closely represents those obtained experimentally. The overall findings show that this haemoglobin closely follows the two-state model of co-operative interaction.
极端变温动物博氏南极鱼(Trematomus borchgrevinki)的血液含有一种主要的血红蛋白成分,可通过离子交换色谱法与次要成分分离。这种血红蛋白在pH 8.2时显示出协同CO结合等温线。对结合曲线的温度依赖性分析使得与双态别构参数L、KR和KT相关的热力学常数得以测定。在较低pH(6.2)下CO的结合特征是T态维持到相对较高的饱和度。在各种条件下利用血红蛋白-CO复合物的闪光光解进行动力学研究,使得与T态和R态速率常数相关的热力学参数得以确定。这些数据的合并使得通过使用双态模型对CO与这种血红蛋白结合的预测时间进程进行数学模拟成为可能,该模型非常接近实验获得的结果。总体研究结果表明,这种血红蛋白紧密遵循协同相互作用的双态模型。