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NCOA4 maintains murine erythropoiesis via cell autonomous and non-autonomous mechanisms

机译:NCOA4通过细胞自主和非自主机制维持小鼠红细胞生成

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摘要

Ncoa4 mediates autophagic degradation of ferritin, the cytosolic iron storage complex, to maintain intracellular iron homeostasis. Recent evidence also supports a role for Ncoa4 in systemic iron homeostasis and erythropoiesis. However, the specific contribution and temporal importance of Ncoa4-mediated ferritinophagy in regulating systemic iron homeostasis and erythropoiesis is unclear. Here, we show that Ncoa4 has a critical role in basal systemic iron homeostasis and both cell autonomous and non-autonomous roles in murine erythropoiesis. Using an inducible murine model of Ncoa4 knockout, acute systemic disruption of Ncoa4 impaired systemic iron homeostasis leading to tissue ferritin and iron accumulation, a decrease in serum iron, and anemia. Mice acutely depleted of Ncoa4 engaged the Hif2a-erythropoietin system to compensate for anemia. Mice with targeted deletion of Ncoa4 specifically in the erythroid compartment developed a pronounced anemia in the immediate postnatal stage, a mild hypochromic microcytic anemia at adult stages, and were more sensitive to hemolysis with higher requirements for the Hif2a-erythropoietin axis and extramedullary erythropoiesis during recovery. These studies demonstrate the importance of Ncoa4-mediated ferritinophagy as a regulator of systemic iron homeostasis and define the relative cell autonomous and non-autonomous contributions of Ncoa4 in supporting erythropoiesis in vivo.
机译:Ncoa4介导铁蛋白(胞质铁存储复合物)的自噬降解,以维持细胞内铁稳态。最近的证据也支持Ncoa4在全身铁稳态和促红细胞生成中的作用。但是,尚不清楚Ncoa4介导的铁蛋白吞噬作用在调节全身铁稳态和促红细胞生成中的具体作用和暂时的重要性。在这里,我们显示Ncoa4在基础系统铁稳态中起着关键作用,在小鼠红细胞生成中具有细胞自主和非自主作用。使用可诱导的Ncoa4基因敲除小鼠模型,Ncoa4的急性全身性破坏会导致系统性铁体内稳态受损,从而导致组织铁蛋白和铁蓄积,血清铁减少和贫血。严重消耗Ncoa4的小鼠参与了Hif2a-促红细胞生成素系统以补偿贫血。有针对性地在红系区隔中删除Ncoa4的小鼠在出生后即刻出现明显的贫血,在成年期出现轻度低色性微细胞性贫血,并且对溶血更敏感,恢复过程中对Hif2a-促红细胞生成素轴和髓外红细胞生成的要求更高。这些研究表明Ncoa4介导的铁蛋白吞噬作为系统性铁稳态的调节剂的重要性,并定义了Ncoa4在体内支持红细胞生成的相对细胞自主和非自主贡献。

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