Benesch R E, Ikeda S, Benesch R
J Biol Chem. 1976 Jan 25;251(2):465-70.
Hemoglobin tetramers which cannot split into alphabeta dimers, because they are covalently cross-linked between the beta chains across the polyphosphate binding site, form complexes with haptoglobin. The reaction is biphasic as measured by fluorescence quenching and peroxidase activity. A complex in which one of the alpha beta dimers of the cross-linked hemoglobin is bound to one of the sites in the divalent haptoglobin molecule, is formed reversibly during the initial fast phase. In the subsequent slower step, this product then either polymerizes, adds another cross-linked hemoglobin molecule or, in the presence of excess haptoglobin, combines with a second haptoglobin molecule. This latter complex, in which two haptoglobin molecules are bridged by a cross-linked hemoglobin tetramer, can still combine with normal alpha beta dimers at the vacant haptoglobin combining sites. In spite of the very low oxygen affinity of the cross-linked hemoglobin, combination with haptoglobin shifts if oxygen affinity to the very high value of the normal hemoglobin-haptoglobin complex.
血红蛋白四聚体由于在多磷酸盐结合位点处的β链之间形成了共价交联而无法分解为αβ二聚体,它们与触珠蛋白形成复合物。通过荧光猝灭和过氧化物酶活性测定,该反应是双相的。在初始快速阶段,交联血红蛋白的一个αβ二聚体与二价触珠蛋白分子的一个位点结合形成的复合物可逆形成。在随后较慢的步骤中,该产物然后要么聚合,添加另一个交联血红蛋白分子,要么在触珠蛋白过量的情况下,与第二个触珠蛋白分子结合。后一种复合物中,两个触珠蛋白分子由一个交联血红蛋白四聚体桥接,在触珠蛋白的空结合位点仍可与正常αβ二聚体结合。尽管交联血红蛋白的氧亲和力非常低,但与触珠蛋白结合会将其氧亲和力转变为正常血红蛋白 - 触珠蛋白复合物的非常高的值。