Ilan Y A, Samuni A, Chevion M, Czapski G
J Biol Chem. 1978 Jan 10;253(1):82-6.
Using the pulse radiolysis technique on solutions of stripped adult human methemoglobin, we found that the heme-iron within a single subunit in the tetramer was reduced to iron(II). The valence-hybrid thus formed was reacted with oxygen and with carbon monoxide. Kinetics of the reactions were studied. The effects of pH, inositol hexaphosphate, and temperature on these reactions were examined. The kinetics of the ligation of O2 and CO were used to characterize the affinity states of the valence-hybrid and its parent methemoglobin. Our results support the description of stripped methemoglobin A as residing in an R state. In the presence of inositol hexaphosphate methemoglobin is stabilized in a T state, but it switches into a high affinity state when the pH is raised a0ove 8.0. This structural transition was not found to coincide with the switch of spin state of the heme-iron that accompanies the ionization of water in aquomethemoglobin A.
通过对去除辅基的成人高铁血红蛋白溶液使用脉冲辐解技术,我们发现四聚体中单个亚基内的血红素铁被还原为亚铁(II)。由此形成的价态杂化物与氧气和一氧化碳发生反应。研究了这些反应的动力学。考察了pH、肌醇六磷酸和温度对这些反应的影响。利用氧气和一氧化碳结合的动力学来表征价态杂化物及其母体高铁血红蛋白的亲和状态。我们的结果支持将去除辅基的高铁血红蛋白A描述为处于R态。在肌醇六磷酸存在下,高铁血红蛋白稳定在T态,但当pH升高到8.0以上时,它会转变为高亲和状态。未发现这种结构转变与高铁血红蛋白A中伴随水离子化的血红素铁自旋状态的转变相一致。