Cobb J A, Manning D, Kolatkar P R, Cox D J, Riggs A F
Department of Zoology, University of Texas, Austin 78712.
J Biol Chem. 1992 Jan 15;267(2):1183-9.
Deoxygenation-dependent association of hemoglobin tetramers appears to be widespread among amphibians, reptiles, and possibly all or most birds. The evidence for this conclusion depends largely on oxygen equilibria of whole blood which have Hill coefficients that reach values as high as 5-7 at 80-90% oxygenation. Computer simulation of the sedimentation velocity behavior of the major components A and D of chicken hemoglobin shows that component D but not A self-associates to form dimers of tetramers. The gradient profiles at pH 7.5 were satisfactorily fitted with an association constant of 1.26 x 10(4) M-1 and sedimentation coefficients of 4.63 and 7.35 S for tetramer and (tetramer)2, respectively. Since components A and D share common beta chains we conclude that tetramer-tetramer contacts must depend on surface residues of the alpha chains. Comparison of the amino acid sequences of the alpha D and alpha A chains of the hemoglobins from 12 avian species ranging from sparrow to ostrich shows that 20 residues are conserved in the alpha D chains but not in the alpha A chains. Nine of these (45%) are clustered between positions E20 and FG2. Four of the latter, Lys71 (E20), Asn75 (EF4), Gln78 (EF7), and Glu82 (F3) are conserved in all alpha D chains even though they do not appear to participate in intratetramer contacts. Molecular modeling indicates that residues Lys71, Gln78, and Glu82 of the alpha chain are strong candidates for the primary tetramer-tetramer contacts.
血红蛋白四聚体的脱氧依赖性缔合似乎在两栖动物、爬行动物中广泛存在,并且可能在所有或大多数鸟类中也存在。这一结论的证据主要依赖于全血的氧平衡,其希尔系数在80 - 90%氧合时可高达5 - 7。对鸡血红蛋白主要成分A和D的沉降速度行为进行计算机模拟表明,成分D而非A会自我缔合形成四聚体二聚体。在pH 7.5时的梯度图谱能够令人满意地用缔合常数1.26×10⁴ M⁻¹以及四聚体和(四聚体)₂的沉降系数分别为4.63和7.35 S来拟合。由于成分A和D共享共同的β链,我们得出结论,四聚体 - 四聚体接触必定依赖于α链的表面残基。对从麻雀到鸵鸟等12种鸟类血红蛋白的αD链和αA链的氨基酸序列进行比较表明,20个残基在αD链中保守而在αA链中不保守。其中9个(45%)聚集在E20和FG2位置之间。后四个残基,即Lys71(E20)、Asn75(EF4)、Gln78(EF7)和Glu82(F3),在所有αD链中都保守,尽管它们似乎不参与四聚体内接触。分子建模表明,α链的Lys71、Gln78和Glu82残基是主要的四聚体 - 四聚体接触的有力候选者。