John M E, Waterman M R
J Biol Chem. 1979 Dec 10;254(23):11953-7.
Opossum hemoglobin assumes a T quaternary structure upon NO ligation in the absence of organic phophates at pH 6.7. In addition, stripped opossum hemoglobin exhibits a low oxygen affinity when compared to human hemoglobin and a pH-dependent heme-heme interaction with an n value of 2.14 at pH 7.0 and 2.46 at pH 7.35. These observations indicate that opossum hemoglobin may have a destabilized oxy structure when compared to hemoglobin A due to differences in primary structure. Thus, the strong trans ligand effect of nitric oxide is able to disrupt the proximal histidine-iron bond in the alpha-hemes triggering a conformational transition to the T state. Absence of a distal histidine in the alpha-subunits and, therefore an impaired donor acceptor interaction with the sixth ligand, could contribute to the lack of stability of the R quaternary structure in opossum nitrosylhemoglobin. The reduced oxygen affinity of opossum hemoglobin may be compensated for by other physiological factors such as a reduced phosphate effect.
在pH 6.7且不存在有机磷酸盐的情况下,负鼠血红蛋白在与一氧化氮结合时呈现T四级结构。此外,与人类血红蛋白相比,去除配体的负鼠血红蛋白表现出较低的氧亲和力,并且在pH 7.0时具有pH依赖性的血红素-血红素相互作用,n值为2.14,在pH 7.35时为2.46。这些观察结果表明,由于一级结构的差异,与血红蛋白A相比,负鼠血红蛋白的氧合结构可能不稳定。因此,一氧化氮的强反式配体效应能够破坏α-血红素中近端组氨酸-铁键,引发向T态的构象转变。α-亚基中缺乏远端组氨酸,因此与第六个配体的供体-受体相互作用受损,可能导致负鼠亚硝基血红蛋白中R四级结构缺乏稳定性。负鼠血红蛋白降低的氧亲和力可能由其他生理因素补偿,如降低的磷酸盐效应。