Shibayama N, Saigo S
Department of Physics, Jichi Medical School, Yakushiji 3311-1, Minamikawachi, Kawachi, Tochigi 329-0498, Japan.
FEBS Lett. 2001 Mar 9;492(1-2):50-3. doi: 10.1016/s0014-5793(01)02225-6.
The main features of cooperative oxygenation of human hemoglobin have been described by assuming the equilibrium between two affinity conformations of the entire molecule, T and R. However, the molecular basis for explaining the wide variation in the O(2) affinities of the deoxy T state has remained obscure. We address this long-standing issue by trapping the conformational states of deoxyhemoglobin molecules within wet porous transparent silicate sol-gels. The equilibrium O(2) binding measurements of the encapsulated deoxyhemoglobin samples showed that deoxyhemoglobin free of anions coexists in two conformations that differ in O(2) affinity by 40 times or more, and addition of inositol hexaphosphate to this anion-free deoxyhemoglobin brings about a very slow redistribution of these affinity conformations. These results are the first, direct demonstration of the existence of equilibrium between two (at least two) functionally distinguishable conformational states in the T state deoxyhemoglobin.
通过假定整个分子的两种亲和力构象(T态和R态)之间的平衡,人们描述了人血红蛋白协同氧合作用的主要特征。然而,解释脱氧T态O₂亲和力广泛变化的分子基础仍不清楚。我们通过将脱氧血红蛋白分子的构象状态捕获在湿的多孔透明硅酸盐溶胶 - 凝胶中来解决这个长期存在的问题。对包封的脱氧血红蛋白样品进行的平衡O₂结合测量表明,不含阴离子的脱氧血红蛋白以两种O₂亲和力相差40倍或更多的构象共存,并且向这种无阴离子的脱氧血红蛋白中添加肌醇六磷酸会导致这些亲和力构象的非常缓慢的重新分布。这些结果首次直接证明了T态脱氧血红蛋白中两种(至少两种)功能上可区分的构象状态之间存在平衡。