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Sulfide is an efficient iron releasing agent for mammalian ferritins

机译:硫化物是哺乳动物铁蛋白的有效铁释放剂

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The most prominent role of mammalian ferritins is to provide an extensive iron-buffering capacity to cells. The large ferritin iron stores can be mobilized in vitro, but the functional relevance of the most efficient iron releasing agents remains elusive. Sulfide is a strongly reducing chemical generated by a series of enzymes. In the presence of limited amounts of sulfide a continuous rate of iron release from ferritin was observed and a majority of the protein iron core was recovered in solution. The rate constants for iron efflux triggered by several reducing or chelating compounds have measured and compared, Although not as efficient as reduced flavins, sulfide displayed kinetic parameters which suggest a potential physiological role for the chalcogenide in converting the iron storage protein into apoferritin. To further probe the relevance of sulfide in the mobilization of iron, several enzymes, such as NifS, rhodanese, or sulfite reductase generating reduced forms of sulfur by different mechanisms, have been assayed for their ability to catalyze the release of iron from ferritin. The results show that full reduction of sulfur into sulfide is needed to deplete iron from ferritin. These reactions suggest links between sulfur metabolism and intracellular iron homeostasis.
机译:哺乳动物铁蛋白的最突出作用是为细胞提供广泛的铁缓冲能力。大量铁蛋白铁可以在体外动员,但是最有效的铁释放剂的功能相关性仍然难以捉摸。硫化物是由一系列酶产生的强烈还原的化学物质。在有限量的硫化物存在下,观察到铁从铁蛋白中的释放速度连续,并且大部分蛋白质铁核在溶液中被回收。已测量并比较了由几种还原或螯合化合物触发的铁外排速率常数,尽管硫化黄的效果不如还原的黄素有效,但硫化物显示的动力学参数暗示了硫族元素化物在将铁存储蛋白转化为载铁蛋白方面的潜在生理作用。为了进一步探讨硫化物在铁的动员中的相关性,已经对几种酶(例如通过不同机制生成还原形式的硫的NifS,罗丹明或亚硫酸盐还原酶)催化从铁蛋白释放铁的能力进行了分析。结果表明,要从铁蛋白中消耗铁,需要将硫完全还原为硫化物。这些反应表明硫代谢与细胞内铁稳态之间的联系。

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