Bauminger E R, Harrison P M, Hechel D, Nowik I, Treffry A
Racah Institute of Physics, Hebrew University of Jerusalem, Israel.
Proc Biol Sci. 1991 Jun 22;244(1311):211-7. doi: 10.1098/rspb.1991.0073.
The iron-storage molecule ferritin can sequester up to 4500 Fe atoms as the mineral ferrihydrite. The iron-core is gradually built up when FeII is added to apoferritin and allowed to oxidize. Here we present evidence, from Mössbauer spectroscopic measurements, for the surprising result that iron atoms that are not incorporated into mature ferrihydrite particles, can be transferred between molecules. Experiments were done with both horse spleen ferritin and recombinant human ferritin. Mössbauer spectroscopy responds only to 57Fe and not to 56Fe and can distinguish chemically different species of iron. In our experiments a small number of 57FeII atoms were added to two equivalent apoferritin solutions and allowed to oxidize (1-5 min or 6 h). Either ferritin containing a small iron-core composed of 56Fe, or an equal volume of NaCl solution, was added and the mixture frozen in liquid nitrogen to stop the reaction at a chosen time. Spectra of the ferritin solution to which only NaCl was added showed a mixture of species including 57FeIII in solitary and dinuclear sites. In the samples to which 150 56FeIII-ferritin had been added the spectra showed that all, or almost all, of the 57FeIII was in large clusters. In these solutions 57FeIII initially present as intermediate species must have migrated to molecules containing large clusters. Such migration must now be taken into account in any model of ferritin iron-core formation.
铁储存分子铁蛋白可以螯合多达4500个铁原子形成水铁矿矿物。当亚铁离子(FeII)添加到脱铁铁蛋白中并使其氧化时,铁芯会逐渐形成。在此,我们通过穆斯堡尔光谱测量提供证据,证明了一个惊人的结果:未掺入成熟水铁矿颗粒的铁原子可以在分子之间转移。我们使用马脾铁蛋白和重组人铁蛋白进行了实验。穆斯堡尔光谱仅对57Fe有响应,而对56Fe无响应,并且可以区分化学性质不同的铁物种。在我们的实验中,将少量的57FeII原子添加到两种等量的脱铁铁蛋白溶液中并使其氧化(1 - 5分钟或6小时)。然后加入含有由56Fe组成的小铁芯的铁蛋白,或等体积的NaCl溶液,并将混合物在液氮中冷冻,以在选定的时间停止反应。仅添加了NaCl的铁蛋白溶液的光谱显示出包括单核和双核位点的57FeIII在内的多种物种的混合物。在添加了150个56FeIII - 铁蛋白的样品中,光谱显示所有或几乎所有的57FeIII都存在于大簇中。在这些溶液中,最初作为中间物种存在的57FeIII一定迁移到了含有大簇的分子中。现在在任何铁蛋白铁芯形成模型中都必须考虑这种迁移。