首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Comparison of the kinetics of iron release from a marine (Trichodesmium erythraeum) Dps protein and mammalian ferritin in the presence and absence of ligands
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Comparison of the kinetics of iron release from a marine (Trichodesmium erythraeum) Dps protein and mammalian ferritin in the presence and absence of ligands

机译:在存在和不存在配体的情况下,从海洋(红球藻)Dps蛋白和哺乳动物铁蛋白释放铁的动力学比较

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摘要

The ferritin superfamily of iron storage proteins includes ferritin proper and Dps (DNA binding protein from starved cells) along with bacterioferritin. We examined the release of Fe from the Dps of Trichodesmium erythraeum (Dps(tery)) and compared it to the release of Fe from horse spleen ferritin (HoSF) under various conditions. Both desferrioxamine B (DFB), a Fe(III) chelator, and ascorbic acid were able to mobilize Fe from Dps(tery) at rates comparable to those observed for HoSF. The initial Fe release rate from both proteins increased linearly with the concentration of DFB, suggesting that the chelator binds to Fe in the protein. A small but significant rate obtained by extrapolation to zero concentration of DFB implies that Dps(tery) and HoSF might release Fe(III) spontaneously. A similar result was observed for HoSF in the presence of sulfoxine. In a different experiment, Fe(III) was transferred from holoferritin to apotransferrin across a dialysis membrane in the absence of chelator or reducing agent. The apparent spontaneous release of Fe from HoSF and Dps(tery) brings forth the hypothesis that the Fe core in Fe storage proteins might be continuously dissolving and re-precipitating in vivo, thus maintaining it in a highly reactive and bioavailable form.
机译:铁存储蛋白的铁蛋白超家族包括固有铁蛋白和Dps(饥饿细胞的DNA结合蛋白)以及细菌铁蛋白。我们检查了红细菌毛滴虫Dps中铁的释放(Dps(tery)),并将其与马脾铁蛋白(HoSF)在各种条件下的Fe释放进行了比较。铁(III)螯合剂去铁胺B(DFB)和抗坏血酸均能够以与HoSF观察到的速率相当的速度从Dps(tery)中动员铁。两种蛋白质的初始Fe释放速率随DFB浓度线性增加,这表明螯合剂与蛋白质中的Fe结合。通过外推至DFB的零浓度而获得的很小但显着的速率意味着Dps(tery)和HoSF可能自发释放Fe(III)。在存在亚硫酸盐的情况下,HoSF观察到相似的结果。在另一个实验中,在没有螯合剂或还原剂的情况下,Fe(III)从全铁蛋白通过透析膜转移到脱铁运铁蛋白。 Fe从HoSF和Dps(tery)中明显的自发释放,提出了这样的假设,即Fe存储蛋白中的Fe核可能在体内不断溶解和再沉淀,从而使其保持高反应性和生物利用度。

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