Speros P C, LiCata V J, Yonetani T, Ackers G K
Department of Biology, Johns Hopkins University, Baltimore, Maryland 21218.
Biochemistry. 1991 Jul 23;30(29):7254-62. doi: 10.1021/bi00243a030.
Cooperative free energies have been determined for the 10 ligation species of human hemoglobin in the Co(II)/Fe(II)-CO system. In this system, subunits containing unligated cobaltous hemes coexist in the same tetramer with naturally occurring ferrous hemes that are ligated with carbon monoxide. Tetramers comprising the 10 structurally unique combinations of ligated and unligated subunits were characterized in terms of their dimer-tetramer assembly free energies. By use of the thermodynamic linkage between assembly and ligation, the experimentally resolved values were used to obtain the corresponding cooperative free energies (i.e., the differences between actual free energies of ligation and the summed contributions of intrinsic values). The results obtained are in general accord with previous findings on this same system (Imai et al., 1980). The present study extends this earlier work by resolving the cooperative properties of each configurational isomer of the doubly ligated tetramers. The 10 ligation species were found to distribute into 5 discrete cooperative free energy levels according to a combinatorial code which includes, as a special case, the code found previously with cyanomethemoglobin and manganese-substituted hemoglobin (Smith et al., 1987; Daugherty et al., 1991). This distribution exhibits additional characteristics found in the oxygenation of normal ferrous hemoglobin including the quaternary enhancement effect (Mills & Ackers, 1979a,b). These results, and those of the following paper (Doyle et al., 1991), strongly support the premise that a common set of qualitative rules governs the cooperative interactions in hemoglobin irrespective of
已确定了Co(II)/Fe(II)-CO系统中人类血红蛋白10种连接状态的协同自由能。在该系统中,含有未连接钴卟啉的亚基与天然存在的、与一氧化碳连接的亚铁卟啉共存于同一个四聚体中。对由连接和未连接亚基的10种结构独特组合构成的四聚体,根据其二聚体-四聚体组装自由能进行了表征。利用组装和连接之间的热力学联系,将实验解析值用于获得相应的协同自由能(即实际连接自由能与内在值总和贡献之间的差值)。所得结果总体上与之前对同一系统的研究结果一致(今井等人,1980年)。本研究通过解析双连接四聚体各构型异构体的协同性质,扩展了这一早期工作。发现这10种连接状态根据一种组合编码分布在5个离散的协同自由能水平上,该编码作为一种特殊情况包括先前在氰化高铁血红蛋白和锰取代血红蛋白中发现的编码(史密斯等人,1987年;多尔蒂等人,1991年)。这种分布展现出在正常亚铁血红蛋白氧合过程中发现的其他特征,包括四级增强效应(米尔斯和阿克斯,1979年a、b)。这些结果以及下一篇论文(多伊尔等人,1991年)的结果有力地支持了这样一个前提,即一组共同的定性规则支配着血红蛋白中的协同相互作用,而不论……