Cooke R M, Dalvit C, Narula S S, Wright P E
Eur J Biochem. 1987 Jul 15;166(2):399-408. doi: 10.1111/j.1432-1033.1987.tb13529.x.
Two-dimensional 1H-NMR methods have been used to assign side-chain resonances for the tryptophan residues and for several amino acids located in the heme pockets of the carbon monoxide complexes of the major monomeric hemoglobins from Glycera dibranchiata. The NMR spectra reveal a high degree of conservation of the heme pocket structure in the different hemoglobins. However some conformational differences are evident and residues at positions B10 and G8 on the distal side of the heme pocket are not conserved. From the present NMR studies it appears that the monomeric G. dibranchiata hemoglobin examined by X-ray crystallography [Padlan, E. A. & Love, W. (1974) J. Biol. Chem. 249, 4067-4078] corresponds to HbC. Except that the orientation of the heme in solution is the reverse of that reported in the crystal structure, there is a close correspondence between the heme pocket structure in the crystal and in solution. The proximal histidine coordination geometry is almost identical in the CO complexes of the three monomeric hemoglobins studied. Distal residues are strongly implicated in determining the observed kinetic differences in ligand binding reactions. In particular, steric crowding of the ligand binding site in hemoglobin A is probably a major factor in the slower kinetics of this component.
二维¹H-NMR方法已被用于确定甘油双齿围沙蚕主要单体血红蛋白一氧化碳复合物血红素口袋中色氨酸残基和几种氨基酸的侧链共振。NMR光谱揭示了不同血红蛋白中血红素口袋结构的高度保守性。然而,一些构象差异是明显的,血红素口袋远端B10和G8位置的残基并不保守。从目前的NMR研究来看,通过X射线晶体学研究的单体甘油双齿围沙蚕血红蛋白[帕德兰,E. A. & 洛夫,W.(1974年)《生物化学杂志》249, 4067 - 4078]对应于HbC。除了溶液中血红素的取向与晶体结构中报道的相反外,晶体和溶液中的血红素口袋结构有密切的对应关系。在所研究的三种单体血红蛋白的CO复合物中,近端组氨酸的配位几何结构几乎相同。远端残基与确定观察到的配体结合反应动力学差异密切相关。特别是,血红蛋白A中配体结合位点的空间拥挤可能是该组分动力学较慢的主要因素。