Fago Angela, Mathews Antony J, Dewilde Sylvia, Moens Luc, Brittain Thomas
Zoophysiology, Institute of Biological Sciences, C.F. Møllers Alle 131, Aarhus University, DK-8000 Aarhus C, Denmark.
J Inorg Biochem. 2006 Aug;100(8):1339-43. doi: 10.1016/j.jinorgbio.2006.03.009. Epub 2006 Apr 5.
The normally hexa coordinate ferrous form of neuroglobin binds CO by replacement of the heme-linked distal histidine residue. We have studied this reaction in detail using stopped flow techniques. The reaction time courses are complex at all the wavelengths studied. Specifically the reaction with CO occurs in two temporally separable phases, each of which shows a hyperbolic dependence of rate on CO concentration, indicating they each arise from histidine replacement by CO. Analysis of the observed rates as a function of the CO concentration, measured in the pH range 6.0-8.0, allows us to determine both the rate of histidine-heme ligand binding and dissociation for each of the two forms of the protein present in solution at each pH value. The pH dependence of the histidine association and dissociation rates is complex, as are the derived equilibrium constants for distal histidine binding. The spectral change associated with each reaction phase is very similar and independent of the CO concentration, showing that the two protein forms responsible for the two observed kinetic processes are not in equilibrium on the time scale of our investigations. Our data suggests that, unlike many other heme proteins, neuroglobin displays complex reactivity with ligands in the ferrous form due to heme rotational disorder, as has previously been reported for the ferric form of the protein.
神经球蛋白正常的六配位亚铁形式通过血红素连接的远端组氨酸残基被一氧化碳取代而结合一氧化碳。我们使用停流技术对该反应进行了详细研究。在所研究的所有波长下,反应时间进程都很复杂。具体而言,与一氧化碳的反应分两个时间上可分离的阶段进行,每个阶段的反应速率对一氧化碳浓度都呈现双曲线依赖关系,这表明它们均源于一氧化碳对组氨酸的取代。对在6.0 - 8.0的pH范围内测得的、作为一氧化碳浓度函数的观测速率进行分析,使我们能够确定在每个pH值下溶液中存在的两种蛋白质形式各自的组氨酸 - 血红素配体结合和解离速率。组氨酸缔合和解离速率的pH依赖性很复杂,远端组氨酸结合的推导平衡常数也是如此。与每个反应阶段相关的光谱变化非常相似且与一氧化碳浓度无关,这表明在我们的研究时间尺度上,负责两个观测到的动力学过程的两种蛋白质形式并非处于平衡状态。我们的数据表明,与许多其他血红素蛋白不同,由于血红素旋转无序,神经球蛋白以亚铁形式与配体表现出复杂的反应性,正如之前报道的该蛋白的铁形式一样。