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Use of dual-electron probes reveals the role of ferritin as an iron depot in ex vivo erythropoiesis

机译:使用双电子探针揭示了铁蛋白作为exvivo erythropoiesis的铁库的作用

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摘要

In the finely regulated process of mammalian erythropoiesis, the path of the labile iron pool into mitochondria for heme production is not well understood. Existing models for erythropoiesis do not include a central role for the ubiquitous iron storage protein ferritin; one model proposes that incoming endosomal Fe3+ bound to transferrin enters the cytoplasm through an ion transporter after reduction to Fe2+ and is taken up into mitochondria through mitoferrin-1 transporter. Here, we apply a dual three-dimensional imaging and spectroscopic technique, based on scanned electron probes, to measure Fe3+ in ex vivo human hematopoietic stem cells. After seven days in culture, we observe cells displaying a highly specialized architecture with anchored clustering of mitochondria and massive accumulation of nanoparticles containing high iron concentrations localized to lysosomal storage depots, identified as ferritin. We hypothesize that lysosomal ferritin iron depots enable continued heme production after expulsion of most of the cellular machinery.
机译:在哺乳动物红细胞生成的精细调节的过程中,不稳定的铁池到线粒体血红素生产路径还不是很清楚。现有的红细胞生成模型不包括对无处不在的铁储存铁蛋白核心作用;一个模型提出传入核内体的Fe3 +结合到转铁蛋白通过离子转运减少至Fe2 +的后进入细胞质,并通过mitoferrin-1转运吸收到线粒体。在这里,我们应用一个双三维成像和光谱技术,基于扫描电子探针,来测量Fe3 +的离体人类造血干细胞。在培养七天我们观察到的细胞显示与线粒体的锚定集群和包含本地化到溶酶体贮积库,认定为高铁铁浓度的纳米粒子的大量积累一个高度专业化的架构。我们假设,溶酶体铁蛋白库使大多数细胞机制的驱逐后持续血红素生产。

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