Liu Ying, Pop Ramona, Sadegh Cameron, Brugnara Carlo, Haase Volker H, Socolovsky Merav
Department of Pediatrics, University of Massachusetts Medical School, Worcester, MA 01605, USA.
Blood. 2006 Jul 1;108(1):123-33. doi: 10.1182/blood-2005-11-4458. Epub 2006 Mar 9.
Erythropoietin (Epo) is the principal regulator of the erythropoietic response to hypoxic stress, through its receptor, EpoR. The EpoR signals mediating the stress response are largely unknown, and the spectrum of progenitors that are stress responsive is not fully defined. Here, we used flow cytometry to identify stress-responsive Ter119+CD71highFSChigh early erythroblast subsets in vivo. In the mouse spleen, an erythropoietic reserve organ, early erythroblasts were present at lower frequencies and were undergoing higher rates of apoptosis than equivalent cells in bone marrow. A high proportion of splenic early erythroblasts coexpressed the death receptor Fas, and its ligand, FasL. Fas-positive early erythroblasts were significantly more likely to coexpress annexin V than equivalent, Fas-negative cells, suggesting that Fas mediates early erythroblast apoptosis in vivo. We examined several mouse models of erythropoietic stress, including erythrocytosis and beta-thalassemia. We found a dramatic increase in the frequency of splenic early erythroblasts that correlated with down-regulation of Fas and FasL from their cell surface. Further, a single injection of Epo specifically suppressed early erythroblast Fas and FasL mRNA and cell-surface expression. Therefore, Fas and FasL are negative regulators of erythropoiesis. Epo-mediated suppression of erythroblast Fas and FasL is a novel stress response pathway that facilitates erythroblast expansion in vivo.
促红细胞生成素(Epo)是通过其受体EpoR对低氧应激产生的红细胞生成反应的主要调节因子。介导应激反应的EpoR信号在很大程度上尚不清楚,并且对应激有反应的祖细胞谱系也未完全明确。在此,我们使用流式细胞术在体内鉴定对应激有反应的Ter119 + CD71highFSChigh早期成红细胞亚群。在小鼠脾脏这个红细胞生成储备器官中,早期成红细胞的频率较低,且与骨髓中的同等细胞相比,其凋亡率更高。高比例的脾脏早期成红细胞共表达死亡受体Fas及其配体FasL。Fas阳性的早期成红细胞比同等的Fas阴性细胞更显著地共表达膜联蛋白V,这表明Fas在体内介导早期成红细胞凋亡。我们研究了几种红细胞生成应激的小鼠模型,包括红细胞增多症和β地中海贫血。我们发现脾脏早期成红细胞的频率显著增加,这与它们细胞表面Fas和FasL的下调相关。此外,单次注射Epo可特异性抑制早期成红细胞Fas和FasL的mRNA及细胞表面表达。因此,Fas和FasL是红细胞生成的负调节因子。Epo介导的对成红细胞Fas和FasL的抑制是一种新的应激反应途径,可促进体内成红细胞的扩增。