Sawicki C A, Gibson Q H
J Biol Chem. 1976 Mar 25;251(6):1533-42.
These experiments indicate that absorbance changes observed at the 425 nm isosbestic point of the Hb and HbCO following laser photolysis of HbCO provide a direct measure of the rates of quaternary conformational changes between rapidly reacting Hb (the immediate product of full photolysis) and slowly reacting normal deoxyhemoglobin. Hb, first observed by Gibson (Gibson, Q.H. (1959) Biochem. J. 71, 293-303), Has been interpreted as deoxyhemoglobin remaining in the liganded quaternary conformation following rapid removal of ligand by a light pulse. In borate buffers between pH 8.4 and 9.6 particularly simple pH-independent results were obtained which allowed the use of a Monod. Wyman, and Changeux model (Monod, J., Wyman, J., and Changeux, J (1965) J. Mol. Biol. 12, 88-118) to fit the data. In this case Hb is taken to be R state deoxyhemoglobin. Partial photolysis experiments at 425 nm show that the rate of the R - T conformational change at 20 degrees decreases by about a factor of 2 for each additional bound ligand. The rate of the ligand-free conformational change is found to be 920 +/- 60s(-1), 6400 +/- 600s(-1), and 15,700 +/- 700(-1) respectively at 3 degrees, 20 degrees, and 30 degrees. The previously uninterpreted effects of flash length and partial photolysis on the CO recombination kinetics can be explained in terms of the present model. Kinetic results obtained below pH 8 are found to be inconsistent with a two-state model. It appears that binding of inositol hexaphosphate produces a new rapidly reacting quaternary conformation of HbCO.
这些实验表明,在HbCO激光光解后,在Hb和HbCO的425nm等吸收点观察到的吸光度变化直接测量了快速反应的Hb(完全光解的直接产物)和缓慢反应的正常脱氧血红蛋白之间四级构象变化的速率。Hb最早由吉布森观察到(吉布森,Q.H.(1959年)《生物化学杂志》71卷,293 - 303页),被解释为光脉冲快速去除配体后仍处于配体结合四级构象的脱氧血红蛋白。在pH 8.4至9.6的硼酸盐缓冲液中,获得了特别简单的与pH无关的结果,这使得可以使用莫诺德、怀曼和尚热模型(莫诺德,J.,怀曼,J.,和尚热,J.(1965年)《分子生物学杂志》12卷,88 - 118页)来拟合数据。在这种情况下,Hb被视为R态脱氧血红蛋白。425nm处的部分光解实验表明,在20摄氏度时,每增加一个结合配体,R - T构象变化的速率降低约2倍。在3摄氏度、20摄氏度和30摄氏度时,无配体构象变化的速率分别为920±60s⁻¹、6400±600s⁻¹和15700±700s⁻¹。闪光长度和部分光解对CO重组动力学的先前无法解释的影响可以用当前模型来解释。发现在pH 8以下获得的动力学结果与双态模型不一致。似乎肌醇六磷酸的结合产生了一种新的快速反应的HbCO四级构象。