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PCBP1和NCOA4调节红系铁储存和血红素生物合成。

PCBP1 and NCOA4 regulate erythroid iron storage and heme biosynthesis.

作者信息

Ryu Moon-Suhn, Zhang Deliang, Protchenko Olga, Shakoury-Elizeh Minoo, Philpott Caroline C

出版信息

J Clin Invest. 2017 May 1;127(5):1786-1797. doi: 10.1172/JCI90519. Epub 2017 Apr 4.

Abstract

Developing erythrocytes take up exceptionally large amounts of iron, which must be transferred to mitochondria for incorporation into heme. This massive iron flux must be precisely controlled to permit the coordinated synthesis of heme and hemoglobin while avoiding the toxic effects of chemically reactive iron. In cultured animal cells, iron chaperones poly rC-binding protein 1 (PCBP1) and PCBP2 deliver iron to ferritin, the sole cytosolic iron storage protein, and nuclear receptor coactivator 4 (NCOA4) mediates the autophagic turnover of ferritin. The roles of PCBP, ferritin, and NCOA4 in erythroid development remain unclear. Here, we show that PCBP1, NCOA4, and ferritin are critical for murine red cell development. Using a cultured cell model of erythroid differentiation, depletion of PCBP1 or NCOA4 impaired iron trafficking through ferritin, which resulted in reduced heme synthesis, reduced hemoglobin formation, and perturbation of erythroid regulatory systems. Mice lacking Pcbp1 exhibited microcytic anemia and activation of compensatory erythropoiesis via the regulators erythropoietin and erythroferrone. Ex vivo differentiation of erythroid precursors from Pcbp1-deficient mice confirmed defects in ferritin iron flux and heme synthesis. These studies demonstrate the importance of ferritin for the vectorial transfer of imported iron to mitochondria in developing red cells and of PCBP1 and NCOA4 in mediating iron flux through ferritin.

摘要

发育中的红细胞会摄取大量的铁,这些铁必须转运至线粒体中以合成血红素。必须精确控制这种大量的铁通量,以实现血红素和血红蛋白的协同合成,同时避免活性铁的毒性作用。在培养的动物细胞中,铁伴侣蛋白多聚胞嘧啶结合蛋白1(PCBP1)和PCBP2将铁传递给铁蛋白(唯一的胞质铁储存蛋白),而核受体辅激活因子4(NCOA4)介导铁蛋白的自噬周转。PCBP、铁蛋白和NCOA4在红细胞生成中的作用仍不清楚。在此,我们表明PCBP1、NCOA4和铁蛋白对小鼠红细胞发育至关重要。使用红细胞分化的培养细胞模型,PCBP1或NCOA4的缺失会损害通过铁蛋白的铁转运,这导致血红素合成减少、血红蛋白形成减少以及红细胞调节系统紊乱。缺乏Pcbp1的小鼠表现出小细胞性贫血,并通过促红细胞生成素和促红细胞生成素铁调节因子激活代偿性红细胞生成。来自Pcbp1缺陷小鼠的红细胞前体的体外分化证实了铁蛋白铁通量和血红素合成存在缺陷。这些研究证明了铁蛋白对于将输入的铁向发育中的红细胞线粒体进行向量转移的重要性,以及PCBP1和NCOA4在介导通过铁蛋白的铁通量中的重要性。

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