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Red Cells: Hematopoietic-specific Stat5-null mice display microcytic hypochromic anemia associated with reduced transferrin receptor gene expression

机译:红细胞:造血特异性Stat5无效的小鼠显示与转铁蛋白受体基因表达降低相关的小细胞性低色素性贫血

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摘要

Iron is essential for all cells but is toxic in excess, so iron absorption and distribution are tightly regulated. Serum iron is bound to transferrin and enters erythroid cells primarily via receptor-mediated endocytosis of the transferrin receptor (Tfr1). Tfr1 is essential for developing erythrocytes and reduced Tfr1 expression is associated with anemia. The transcription factors STAT5A/B are activated by many cytokines, including erythropoietin. Stat5a/b−/− mice are severely anemic and die perinatally, but no link has been made to iron homeostasis. To study the function of STAT5A/B in vivo, we deleted the floxed Stat5a/b locus in hematopoietic cells with a Tie2-Cre transgene. These mice exhibited microcytic, hypochromic anemia, as did lethally irradiated mice that received a transplant of Stat5a/b−/− fetal liver cells. Flow cytometry and RNA analyses of erythroid cells from mutant mice revealed a 50% reduction in Tfr1 mRNA and protein. We detected STAT5A/B binding sites in the first intron of the Tfr1 gene and found that expression of constitutively active STAT5A in an erythroid cell line increased Tfr1 levels. Chromatin immunoprecipitation experiments confirmed the binding of STAT5A/B to these sites. We conclude that STAT5A/B is an important regulator of iron update in erythroid progenitor cells via its control of Tfr1 transcription.
机译:铁对所有细胞都是必不可少的,但有毒,因此铁的吸收和分布受到严格调节。血清铁与转铁蛋白结合,主要通过转铁蛋白受体(Tfr1)的受体介导的内吞作用进入红系细胞。 Tfr1对发育红细胞必不可少,Tfr1表达降低与贫血有关。转录因子STAT5A / B被许多细胞因子激活,包括促红细胞生成素。 Stat5a / b -/-小鼠严重贫血,围产期死亡,但与铁稳态没有关联。为了研究STAT5A / B在体内的功能,我们删除了带有Tie2-Cre转基因的造血细胞中的Stat5a / b基因座。这些小鼠表现出小细胞性低色素性贫血,接受致死性辐射的小鼠接受Stat5a / b -/-胎儿肝细胞移植。流式细胞仪和突变小鼠的类红细胞的RNA分析显示Tfr1 mRNA和蛋白质减少了50%。我们在Tfr1基因的第一个内含子中检测到STAT5A / B结合位点,发现在类红细胞系中组成型活性STAT5A的表达增加了Tfr1水平。染色质免疫沉淀实验证实了STAT5A / B与这些位点的结合。我们得出的结论是,STAT5A / B通过控制Tfr1转录,是红系祖细胞中铁更新的重要调节剂。

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