Holt Jo M, Klinger Alexandra L, Yarian Connie S, Keelara Varsha, Ackers Gary K
Department of Biochemistry & Molecular Biophysics, Washington University School of Medicine, 660 South Euclid Avenue Box 8231, St. Louis, Missouri 63110, USA.
Biochemistry. 2005 Sep 13;44(36):11925-38. doi: 10.1021/bi050709o.
The complete binding cascade of human hemoglobin consists of eight partially ligated intermediates and 16 binding constants. Each intermediate binding constant can be evaluated via dimer-tetramer assembly when ligand configurations within the tetramer are fixed through the use of hemesite analogs. The Zn/Fe analog, in which the nonbinding Zn2+ heme substitutes for deoxy Fe2+ heme, also permits direct measurement of O2 binding to the remaining Fe2+ hemesites within the symmetrically ligated Hb tetramers. Measurement of O2 binding over a range of Zn/Fe Hb concentrations to both alpha-subunits (species 23) or to both beta-subunits (species 24) shows noncooperative binding and incomplete saturation of the available Fe2+ hemesites. In contrast, the asymmetrically ligated Zn/FeO2 species 21, in which both oxygens are bound to one of the dimers within the tetramer, exhibits positive cooperativity and >90% ligation under atmospheric conditions. These properties are confirmed in the present study by measurement of the rate constant for tetramer dissociation to free dimer. The binding constants thus derived for these partially ligated intermediates are consistent with the stoichiometric constants measured for native hemoglobin by standard O2 binding techniques, providing additional evidence that Zn2+-heme substitution provides an excellent deoxy hemoglobin analog. There is no evidence that Zn-substitution stabilizes a low-affinity form of the tetramer, as previously suggested. These characterizations demonstrate distinct, nonadditive physical properties of the doubly ligated tetrameric species, yielding an asymmetric distribution of cooperativity within the cascade of O2 binding by human hemoglobin.
人类血红蛋白的完整结合级联由八个部分连接的中间体和16个结合常数组成。当通过使用血红素类似物固定四聚体内的配体构型时,每个中间结合常数都可以通过二聚体 - 四聚体组装来评估。Zn/Fe类似物,其中非结合性Zn2+血红素替代脱氧Fe2+血红素,也允许直接测量O2与对称连接的Hb四聚体内其余Fe2+血红素位点的结合。在一系列Zn/Fe Hb浓度下测量O2与两个α亚基(物种23)或两个β亚基(物种24)的结合,显示出非协同结合且可用Fe2+血红素位点未完全饱和。相比之下,不对称连接的Zn/FeO2物种21,其中两个氧都与四聚体内的一个二聚体结合,在大气条件下表现出正协同性和>90%的连接。本研究通过测量四聚体解离为游离二聚体的速率常数证实了这些性质。由此得出的这些部分连接中间体的结合常数与通过标准O2结合技术测量的天然血红蛋白的化学计量常数一致,提供了额外的证据表明Zn2+ - 血红素替代提供了一种优异的脱氧血红蛋白类似物。没有证据表明Zn替代如先前所建议的那样稳定了四聚体的低亲和力形式。这些表征证明了双连接四聚体物种独特的、非加和的物理性质,在人类血红蛋白的O2结合级联中产生了协同性的不对称分布。