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首页> 外文期刊>Blood cells, molecules and diseases >Erythropoietin receptor signaling regulates both erythropoiesis and megakaryopoiesis in vivo.
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Erythropoietin receptor signaling regulates both erythropoiesis and megakaryopoiesis in vivo.

机译:促红细胞生成素受体信号传导在体内调节促红细胞生成和巨核细胞生成。

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摘要

Transgenic expression of a gain-of-function truncated mouse erythropoietin receptor gene (EpoR) leads to expansion of the HSC pool in response to human erythropoietin (Epo). We have re-examined this observation using a knock-in mouse model, wherein the mouse EpoR gene was replaced in its proper genetic locus by a single copy of either a wild-type human or a polycythemia-inducing truncated human EPOR gene. Bone marrow cells obtained from knock-in mice were transplanted together with competitor bone marrow cells in a model that allows tracking of erythroid, platelet, and leukocyte contributions by each genotype. Secondary transplants were also performed. Stem/progenitor cells were identified phenotypically and isolated for colony-forming assays to evaluate cytokine responsiveness by cells with the wild-type human or truncated human EPOR gene. Augmented Epo signaling increased erythroid repopulation post-transplant as expected, but had no effect on short-term or long-term leukocyte repopulation. However, the wild-type human EPOR knock-in mouse showed decreases in both erythroid and platelet repopulation compared to marrow cells from the mutant human EPOR knock-in mouse or normal B6 animals. These results provide evidence supporting a role for Epo signaling in megakaryopoiesis in vivo and suggest a role for Epo signaling early in hematopoietic development.
机译:功能增强的截短小鼠促红细胞生成素受体基因(EpoR)的转基因表达导致HSC池的扩增,以响应人类促红细胞生成素(Epo)。我们已经使用敲入小鼠模型重新检查了该观察结果,其中小鼠EpoR基因在其适当的基因位点被野生型人或诱导红细胞增多症的截短型人EPOR基因的单拷贝取代。将从敲入小鼠获得的骨髓细胞与竞争性骨髓细胞一起移植到一个模型中,该模型可以跟踪每种基因型对红系,血小板和白细胞的贡献。还进行了二次移植。从表型上鉴定干细胞/祖细胞,并分离以用于集落形成分析,以评估具有野生型人或截短人源EPOR基因的细胞对细胞因子的反应能力。增强的Epo信号传导如预期的那样,增加了移植后红系的重新形成,但对短期或长期的白细胞重新形成没有影响。但是,与来自突变型人EPOR敲入小鼠或正常B6动物的骨髓细胞相比,野生型人EPOR敲入小鼠显示出类红细胞和血小板的减少。这些结果提供证据支持Epo信号传导在体内巨核细胞生成中的作用,并提示Epo信号传导在造血发育早期中的作用。

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