Xie Ying, Koch Mia Lee, Zhang Xin, Hamblen Melanie J, Godinho Frank J, Fujiwara Yuko, Xie Huafeng, Klusmann Jan-Henning, Orkin Stuart H, Li Zhe
Division of Genetics, Department of Medicine, Brigham and Women's Hospital, Boston, Massachusetts, USA.
Department of Medicine, Boston, Massachusetts, USA.
Stem Cells. 2017 Jul;35(7):1773-1785. doi: 10.1002/stem.2627. Epub 2017 Apr 24.
ERG, an ETS family transcription factor frequently overexpressed in human leukemia, has been implicated as a key regulator of hematopoietic stem cells. However, how ERG controls normal hematopoiesis, particularly at the stem and progenitor cell level, and how it contributes to leukemogenesis remain incompletely understood. Using homologous recombination, we generated an Erg knockdown allele (Erg ) in which Erg expression can be conditionally restored by Cre recombinase. Erg animals die at E10.5-E11.5 due to defects in endothelial and hematopoietic cells, but can be completely rescued by Tie2-Cre-mediated restoration of Erg in these cells. In Erg mice, ∼40% reduction in Erg dosage perturbs both fetal liver and bone marrow hematopoiesis by reducing the numbers of Lin Sca-1 c-Kit (LSK) hematopoietic stem and progenitor cells (HSPCs) and megakaryocytic progenitors. By genetic mosaic analysis, we find that Erg-restored HSPCs outcompete Erg HSPCs for contribution to adult hematopoiesis in vivo. This defect is in part due to increased apoptosis of HSPCs with reduced Erg dosage, a phenotype that becomes more drastic during 5-FU-induced stress hematopoiesis. Expression analysis reveals that reduced Erg expression leads to changes in expression of a subset of ERG target genes involved in regulating survival of HSPCs, including increased expression of a pro-apoptotic regulator Bcl2l11 (Bim) and reduced expression of Jun. Collectively, our data demonstrate that ERG controls survival of HSPCs, a property that may be used by leukemic cells. Stem Cells 2017;35:1773-1785.
ERG是一种在人类白血病中经常过度表达的ETS家族转录因子,被认为是造血干细胞的关键调节因子。然而,ERG如何控制正常造血,特别是在干细胞和祖细胞水平,以及它如何促进白血病发生,仍未完全了解。利用同源重组,我们生成了一个Erg敲低等位基因(Erg ),其中Erg的表达可由Cre重组酶条件性恢复。Erg动物由于内皮细胞和造血细胞缺陷在E10.5 - E11.5死亡,但可通过Tie2 - Cre介导的这些细胞中Erg的恢复而完全获救。在Erg小鼠中,Erg剂量约降低40%会通过减少Lin Sca-1 c-Kit(LSK)造血干细胞和祖细胞(HSPCs)以及巨核细胞祖细胞的数量来扰乱胎儿肝脏和骨髓造血。通过基因镶嵌分析,我们发现恢复Erg的HSPCs在体内对成体造血的贡献上胜过Erg缺陷的HSPCs。这种缺陷部分归因于Erg剂量降低时HSPCs凋亡增加,这种表型在5-氟尿嘧啶诱导的应激造血过程中变得更加严重。表达分析显示,Erg表达降低导致参与调节HSPCs存活的一部分ERG靶基因表达发生变化,包括促凋亡调节因子Bcl2l11(Bim)表达增加和Jun表达降低。总体而言,我们的数据表明ERG控制HSPCs的存活,白血病细胞可能利用这一特性。《干细胞》2017年;35:1773 - 1785。