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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >IRP1 regulates erythropoiesis and systemic iron homeostasis by controlling HIF2α mRNA translation.
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IRP1 regulates erythropoiesis and systemic iron homeostasis by controlling HIF2α mRNA translation.

机译:通过控制HIF2αmRNA翻译,IRP1通过控制HIF2αmRNA翻译来调节促红细胞生成和全身铁稳态。

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摘要

Hypoxia inducible factor 2α (HIF2α) transcriptionally activates several genes in response to hypoxia. Under normoxic conditions, it undergoes oxygen-dependent degradation by the prolyl hydroxylase (PHD)/von Hippel-Lindau (VHL) system. The presence of an iron-responsive element (IRE) within the 5' untranslated region of HIF2α mRNA suggests a further iron- and oxygen-dependent mechanism for translational regulation of its expression via iron regulatory proteins 1 and 2 (IRP1 and IRP2, respectively). We show here that the disruption of mouse IRP1, but not IRP2, leads to profound HIF2α-dependent abnormalities in erythropoiesis and systemic iron metabolism. Thus, 4- to 6-week-old IRP1(-/-) mice exhibit splenomegaly and extramedullary hematopoiesis, which is corrected in older animals. These erythropoietic abnormalities are caused by translational de-repression of HIF2α mRNA and subsequent accumulation of HIF2α, which induces expression of erythropoietin (Epo). Increased levels of circulating Epo lead to reticulocytosis, polycythemia, and suppression of hepatic hepcidin mRNA. This in turn promotes hyperferremia and iron depletion in splenic macrophages due to unrestricted expression of ferroportin. Our data demonstrate that IRP1 is the principal regulator of HIF2α mRNA translation in vivo and provide evidence that translational control of HIF2α expression dominates over PHD/VHL-mediated regulation of HIF2α stability in juvenile IRP1(-/-) mice.
机译:缺氧诱导因子2α(HIF2α)转录响应缺氧的若干基因激活若干基因。在常氧条件下,它经历了羟基羟化酶(PHD)/ von Hippel-Lindau(VHL)系统的氧依赖性降解。 HIF2αmRNA的5'未翻转区域内的耐铁响应元件(IRE)的存在表明,通过铁调节蛋白1和2(IRP1和IRP2)的表达转化调节的进一步的铁和氧依赖性机制。我们在这里展示了小鼠IRP1,但不是IRP2的破坏,导致红细胞生成和全身铁代谢的深刻HIF2α依赖性异常。因此,4至6周龄的IRP1( - / - )小鼠表现出脾肿大和髓外血液血液,其在较老的动物中校正。这些促红细胞异常是由HIF2αmRNA的平移脱髓抑制和随后的HIF2α积累引起的,这会诱导促红细胞生成素(EPO)的表达。循环EPO的水平增加导致肝肝素mRNA的网状致细胞症,多胆血症和抑制。这反过来又促进了由于硅片蛋白的不受限制的表达而在脾癌中促进过度血症和铁耗尽。我们的数据表明IRP1是体内HIF2αmRNA平移的主要调节剂,并提供了HIF2α表达的翻译控制在幼年IRP1( - / - )小鼠中的HIF2α稳定性调节占PHD / VHL介导的调节。

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