Brunori M, Falcioni G, Rotilio G
Proc Natl Acad Sci U S A. 1974 Jun;71(6):2470-2. doi: 10.1073/pnas.71.6.2470.
The binding of nitric oxide to hemoglobin components of trout (Salmo irideus), i.e., Hb trout I and Hb trout IV, has been studied by optical and electron paramagnetic resonance spectroscopy. Kinetic studies show that the Root effect in Hb trout IV is operative also for NO, since a large increase in the dissociation velocity constant (j(4)) is observed as the pH is decreased below 7. Moreover, the time course of the displacement of NO by CO is heterogeneous, suggesting that alpha and beta chains may have different j(4) values. Low-temperature X-band electron paramagnetic resonance spectra have been recorded with Hb trout I and IV saturated with NO at different pH values. The spectra of Hb trout IV are strongly pH-dependent. The high-pH form (pH 8.1) shows axial symmetry and no resolved hyperfine splitting, while the low-pH form is rhombic with a hyperfine splitting of 6.5 G in the g(z) region. The latter form reflects a more distorted site with a more significant delocalization of the unpaired electron on the proximal histidine; both features indicate a destabilization of the ligand binding at low pH. On the other hand, spectra of Hb trout I are axial at both pH values, with hyperfine splitting of 16.5 G, indicating that the site is not distorted and interacts with the ligand very strongly at either pH.
通过光学和电子顺磁共振光谱研究了一氧化氮与虹鳟鱼(Salmo irideus)血红蛋白成分(即虹鳟鱼血红蛋白I和虹鳟鱼血红蛋白IV)的结合。动力学研究表明,虹鳟鱼血红蛋白IV中的鲁特效应(Root effect)对一氧化氮也起作用,因为当pH值降至7以下时,解离速度常数(j(4))大幅增加。此外,一氧化碳取代一氧化氮的时间进程是不均匀的,这表明α链和β链可能具有不同的j(4)值。在不同pH值下,用一氧化氮饱和的虹鳟鱼血红蛋白I和IV记录了低温X波段电子顺磁共振光谱。虹鳟鱼血红蛋白IV的光谱强烈依赖于pH值。高pH形式(pH 8.1)显示出轴向对称性且没有分辨出的超精细分裂,而低pH形式呈菱形,在g(z)区域有6.5 G的超精细分裂。后一种形式反映了一个更扭曲的位点,未成对电子在近端组氨酸上的离域更显著;这两个特征都表明在低pH值下配体结合不稳定。另一方面,虹鳟鱼血红蛋白I在两个pH值下的光谱都是轴向的,超精细分裂为16.5 G,这表明该位点没有扭曲,并且在任何一个pH值下都与配体强烈相互作用。