Pardanani A, Gibson Q H, Colotti G, Royer W E
Program in Molecular Medicine and Department of Biochemistry and Molecular Biology, University of Massachusetts Medical Center, Worcester, Massachusetts 01605, USA.
J Biol Chem. 1997 May 16;272(20):13171-9. doi: 10.1074/jbc.272.20.13171.
Residue Phe97, which is thought to play a central role in the cooperative functioning of Scapharca dimeric hemoglobin, has been mutated to leucine to test its proposed role in mediating cooperative oxygen binding. This results in an 8-fold increase in oxygen affinity and a marked decrease in cooperativity. Kinetic measurements of ligand binding to the Leu97 mutant suggest an altered unliganded (deoxy) state, which has been confirmed by high resolution crystal structures in the unliganded and carbon monoxide-liganded states. Analysis of the structures at allosteric end points reveals them to be remarkably similar to the corresponding wild-type structures, with differences confined to the disposition of residue 97 side chain, F-helix geometry, and the interface water structure. Increased oxygen affinity results from the absence of the Phe97 side chain, whose tight packing in the heme pocket of the deoxy state normally restricts the heme from assuming a high affinity conformation. The absence of the Phe97 side chain is also associated with diminished cooperativity, since Leu97 packs in the heme pocket in both states. Residual cooperativity appears to be coupled with observed structural transitions and suggests that parallel pathways for communication exist in Scapharca dimeric hemoglobin.
残基苯丙氨酸97被认为在紫贻贝二聚体血红蛋白的协同功能中起核心作用,已被突变为亮氨酸以测试其在介导协同氧结合中所提出的作用。这导致氧亲和力增加8倍,协同性显著降低。配体与亮氨酸97突变体结合的动力学测量表明未结合配体(脱氧)状态发生了改变,这已通过未结合配体和一氧化碳结合配体状态下的高分辨率晶体结构得到证实。对变构端点处结构的分析表明,它们与相应的野生型结构非常相似,差异仅限于残基97侧链的排布、F螺旋几何形状和界面水结构。氧亲和力增加是由于苯丙氨酸97侧链的缺失,其在脱氧状态的血红素口袋中的紧密堆积通常会限制血红素呈现高亲和力构象。苯丙氨酸97侧链的缺失也与协同性降低有关,因为亮氨酸97在两种状态下都堆积在血红素口袋中。残余的协同性似乎与观察到的结构转变相关,这表明紫贻贝二聚体血红蛋白中存在平行的通讯途径。