首页> 外文OA文献 >Expression of a constitutively active erythropoietin receptor in primary hematopoietic progenitors abrogates erythropoietin dependence and enhances erythroid colony-forming unit, erythroid burst-forming unit, and granulocyte/macrophage progenitor growth.
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Expression of a constitutively active erythropoietin receptor in primary hematopoietic progenitors abrogates erythropoietin dependence and enhances erythroid colony-forming unit, erythroid burst-forming unit, and granulocyte/macrophage progenitor growth.

机译:组成型活性促红细胞生成素受体在原代造血祖细胞中的表达消除了促红细胞生成素依赖性,并增强了红细胞集落形成单位,红细胞爆发形成单位和粒细胞/巨噬细胞祖细胞的生长。

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摘要

We tested the ability of a constitutively activated erythropoietin receptor [EpoR(R129C)] to alter the growth requirements of primary hematopoietic precursors that terminally differentiate in culture. Two recombinant retroviruses expressing EpoR(R129C), spleen focus-forming virus (SFFVc-EpoR) and myeloproliferative sarcoma virus (MPSVcEpoR), were used to infect fetal liver cells that served as a source of hematopoietic progenitors. Methylcellulose cultures were incubated in the absence of any added growth factors or in combination with selected growth factors. EpoR(R129C) completely abrogated the Epo requirement of erythroid colony-forming units to form erythrocytes after 2-5 days in culture and did not interfere with the differentiation program of these cells. In the absence of added growth factors EpoR(R129C) did not enhance erythroid burst-forming unit development. In contrast to experiments in heterologous cell lines, EpoR(R129C) did not render progenitor cells independent of interleukin 3 or granulocyte/macrophage colony-stimulating factor (GM-CSF). However, when progenitors were cultured with added steel factor, but not with interleukin 3 or GM-CSF, EpoR(R129C) augmented the growth and differentiation of erythroid bursts, mixed erythroid/myeloid, and granulocyte/macrophage (GM) colonies. Furthermore, both viruses were capable of expressing EpoR(R129C) in erythroid, mixed erythroid/myeloid, and GM colonies. Thus an aberrantly expressed and constitutively activated EpoR can stimulate proliferation of some GM progenitors. The ability of EpoR(R129C) to abrogate the Epo requirement of primary hematopoietic cells, but not the requirement for other cytokines, is consistent with the induction of erythroblastosis in vivo.
机译:我们测试了组成型激活的促红细胞生成素受体[EpoR(R129C)]改变最终在培养中分化的造血前体的生长要求的能力。表达EpoR(R129C)的两种重组逆转录病毒,脾脏聚焦形成病毒(SFFVc-EpoR)和骨髓增生性肉瘤病毒(MPSVcEpoR)被用于感染作为造血祖细胞来源的胎儿肝细胞。在不添加任何生长因子的情况下或与选定的生长因子结合孵育甲基纤维素培养物。在培养2-5天后,EpoR(R129C)完全废除了类红细胞集落形成单位形成红细胞的Epo要求,并且不干扰这些细胞的分化程序。在没有添加生长因子的情况下,EpoR(R129C)不会增强类红细胞爆发形成单位的发育。与异源细胞系中的实验相反,EpoR(R129C)没有使祖细胞独立于白介素3或粒细胞/巨噬细胞集落刺激因子(GM-CSF)。但是,当祖细胞添加钢因子而不是白介素3或GM-CSF培养时,EpoR(R129C)会增加红系突增,红系/髓系混合以及粒细胞/巨噬细胞(GM)菌落的生长和分化。此外,两种病毒都能够在类红细胞,类红细胞/髓样混合细胞和GM菌落中表达EpoR(R129C)。因此,异常表达和组成型激活的EpoR可以刺激某些GM祖细胞的增殖。 EpoR(R129C)取消原代造血细胞对Epo的要求,但对其他细胞因子的要求,与体内诱导成红细胞病一致。

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