Dumoulin A, Manning L R, Jenkins W T, Winslow R M, Manning J M
Department of Biology, Northeastern University, Boston, Massachusetts 02115, USA.
J Biol Chem. 1997 Dec 12;272(50):31326-32. doi: 10.1074/jbc.272.50.31326.
The inter-relationship between the interior subunit interfaces and the exterior diphosphoglycerate (DPG) binding region of the hemoglobin tetramer and the effects of a specific N-terminal acetylation on tetramer assembly have been evaluated. Tetrameric fetal hemoglobin F in the liganded state was found to dissociate to dimers much less than previously appreciated, i.e. about 70 times less than adult hemoglobin A (Kd = 0.01 microM and 0.68 microM, for HbF and HbA, at pH 7.5, respectively) over the pH range 6.2-7.5, whereas HbF1, in which the N termini of the gamma-chains are acetylated, dissociates like HbA. To determine whether this feature of HbF could be transferred to hemoglobin A, the single amino acid difference in their alpha1beta2/alpha1gamma2 interfaces and the 4 amino acid differences in their alpha1beta1/alpha1gamma1 interfaces have been substituted in HbA to those in HbF. This pentasubstituted recombinant HbA/F had the correct molecular weight as determined by mass spectrometry, the expected mobility on isoelectric focusing, the calculated amino acid composition, and normal circular dichroism properties, oxygen binding, and cooperativity. Although HbA/F has the same amino acid side chains that bind DPG as HbA, its diminished response to 2,3-DPG resembled that of HbF. However, its tetramer-dimer dissociation constant (Kd = 0.14 microM) was between that of HbA and HbF despite the fact that it was composed entirely of HbF subunit interfaces. The results indicate that regions of the tetramer distant from the tetramer-dimer interface influence its dissociation and, reciprocally, that the interfaces affect regions involved in the binding of allosteric regulators, suggesting flexible long range inter-relationships in hemoglobin.
已评估了血红蛋白四聚体内部亚基界面与外部二磷酸甘油酸(DPG)结合区域之间的相互关系,以及特定N端乙酰化对四聚体组装的影响。发现处于配体状态的四聚体胎儿血红蛋白F解离为二聚体的程度比之前认为的要小得多,即在pH值6.2 - 7.5范围内,其解离程度比成人血红蛋白A小约70倍(pH 7.5时,HbF和HbA的解离常数Kd分别为0.01微摩尔和0.68微摩尔),而γ链N端被乙酰化的HbF1则像HbA一样解离。为了确定HbF的这一特性是否可以转移到血红蛋白A上,已将它们在α1β2/α1γ2界面的单个氨基酸差异以及在α1β1/α1γ1界面的4个氨基酸差异在HbA中替换为HbF中的相应氨基酸。通过质谱测定,这种五重取代的重组HbA/F具有正确的分子量,在等电聚焦上具有预期的迁移率,具有计算出的氨基酸组成,以及正常的圆二色性特性、氧结合能力和协同性。尽管HbA/F与HbA具有相同的结合DPG的氨基酸侧链,但其对2,3 - DPG的反应减弱,类似于HbF。然而,尽管它完全由HbF亚基界面组成,但其四聚体 - 二聚体解离常数(Kd = 0.14微摩尔)介于HbA和HbF之间。结果表明,四聚体中远离四聚体 - 二聚体界面的区域会影响其解离,反之,界面也会影响参与变构调节剂结合的区域,这表明血红蛋白中存在灵活的长程相互关系。