Di Iorio E E, Hiltpold U R, Filipovic D, Winterhalter K H, Gratton E, Vitrano E, Cupane A, Leone M, Cordone L
Laboratorium für Biochemie I, Eidgenössische Technische Hochschule, Zurich, Switzerland.
Biophys J. 1991 Mar;59(3):742-54. doi: 10.1016/S0006-3495(91)82287-1.
We report the low temperature carbon monoxide recombination kinetics after photolysis and the temperature dependence of the visible absorption spectra of the isolated alpha SH-CO and beta SH-CO subunits from human hemoglobin A in ethylene glycol/water and in glycerol/water mixtures. Kinetic measurements on sperm whale (Physeter catodon) myoglobin and previously published optical spectroscopy data on the latter protein and on human hemoglobin A, in both solvents, (Cordone, L., A. Cupane, M. Leone, E. Vitrano, and D. Bulone. 1988. J. Mol. Biol. 199:312-218) are taken as reference. Low temperature flash photolysis data are analyzed within the multiple substates model proposed by Frauenfelder and co-workers (Austin, R. H., K. W. Beeson, L. Eisenstein, H. Frauenfelder, and I. C. Gunsalus. 1975. Biochemistry. 14:5355-5373). Within this model a distribution of activation enthalpies for ligand binding accounts for the structural heterogeneity of the protein, while the preexponential factor, containing also the entropic contribution to the free energy of the process, is considered to be constant for all conformational substates. Optical spectra are deconvoluted in gaussian components and the temperature dependence of the moments of the resulting bands is analyzed, within the harmonic Frank-Condon approximation, to obtain information on the stereodynamic properties of the heme pocket. The kinetic and spectral parameters thus obtained are found to be protein dependent also with respect to their sensitivity to changes in the composition of the external medium. A close correlation between the kinetic and spectral features is observed for the proteins examined under all experimental conditions studied. The results reported are discussed in terms of differences in the heme pocket structure and in the conformational heterogeneity among the various proteins, as related to their different capability to accommodate constraints imposed by the external medium.
我们报告了光解后低温下一氧化碳的重组动力学,以及来自人血红蛋白A的分离的α SH-CO和β SH-CO亚基在乙二醇/水和甘油/水混合物中的可见吸收光谱的温度依赖性。以抹香鲸(Physeter catodon)肌红蛋白的动力学测量以及先前发表的关于该蛋白质和人血红蛋白A在两种溶剂中的光谱学数据(Cordone, L., A. Cupane, M. Leone, E. Vitrano, and D. Bulone. 1988. J. Mol. Biol. 199:312 - 218)作为参考。低温闪光光解数据在Frauenfelder及其同事提出的多亚态模型(Austin, R. H., K. W. Beeson, L. Eisenstein, H. Frauenfelder, and I. C. Gunsalus. 1975. Biochemistry. 14:5355 - 5373)内进行分析。在此模型中,配体结合的活化焓分布解释了蛋白质的结构异质性,而包含对过程自由能熵贡献的预指数因子对于所有构象亚态被认为是恒定的。光谱在高斯分量中进行反褶积,并在谐波弗兰克 - 康登近似内分析所得谱带矩的温度依赖性,以获得关于血红素口袋立体动力学性质的信息。发现由此获得的动力学和光谱参数在对外部介质组成变化的敏感性方面也依赖于蛋白质。在所研究的所有实验条件下,观察到所检测蛋白质的动力学和光谱特征之间存在密切相关性。根据血红素口袋结构的差异以及各种蛋白质之间的构象异质性,讨论了所报道的结果,这些差异与它们适应外部介质施加的限制的不同能力有关。