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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Canonical Notch signaling is dispensable for adult steady-state and stress myelo-erythropoiesis
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Canonical Notch signaling is dispensable for adult steady-state and stress myelo-erythropoiesis

机译:规范凹口信号传导可分配成人稳态和应激肌室 - 促红细胞生成

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摘要

Although an essential role for canonical Notch signaling in generation of hematopoietic stem cells in the embryo and in thymic T-cell development is well established, its role in adult bone marrow (BM) myelopoiesis remains unclear. Some studies, analyzing myeloid progenitors in adult mice with inhibited Notch signaling, implicated distinct roles of canonical Notch signaling in regulation of progenitors for the megakaryocyte, erythroid, and granulocyte-macrophage cell lineages. However, these studies might also have targeted other pathways. Therefore, we specifically deleted, in adult BM, the transcription factor recombination signal-binding protein J kappa (Rbpj), through which canonical signaling from all Notch receptors converges. Notably, detailed progenitor staging established that canonical Notch signaling is fully dispensable for all investigated stages of megakaryocyte, erythroid, and myeloid progenitors in steady state unperturbed hematopoiesis, after competitive BM transplantation, and in stress-induced erythropoiesis. Moreover, expression of key regulators of these hematopoietic lineages and Notch target genes were unaffected by Rbpj deficiency in BM progenitor cells.
机译:虽然在胚胎和胸腺T细胞发育中产生造血干细胞的典型缺口信号传导的重要作用是很好的,但其在成人骨髓(BM)髓鞘中的作用仍不清楚。一些研究,分析成年小鼠中的粘土祖细胞抑制缺口信号传导,含义不同作用的规范缺口信号传导在巨核细胞,红细胞和粒细胞 - 巨噬细胞谱系中祖细胞调节中。然而,这些研究也可能靶向其他途径。因此,我们在成人BM中具体缺失转录因子重组信号结合蛋白Jκ(RBPJ),通过该缺口受体来自所有缺口受体的典型信号传导。值得注意的是,详细的祖先分期确立了规范的Notch信号传导对于在稳定状态下的巨核细胞,红细胞和髓样祖细胞的所有调查的血液血管发作,在竞争性BM移植后和应激诱导的促红细胞生成症中完全可以分配。此外,这些造血谱系和缺口靶基因的关键调节剂的表达不受BM祖细胞的RBPJ缺乏的影响。

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  • 作者单位

    Univ Oxford MRC Weatherall Inst Mol Med Radcliffe Dept Med Haematopoiet Stem Cell Biol Lab;

    Univ Oxford MRC Weatherall Inst Mol Med Radcliffe Dept Med Haematopoiet Stem Cell Biol Lab;

    Univ Oxford MRC Weatherall Inst Mol Med Radcliffe Dept Med Haematopoiet Stem Cell Biol Lab;

    Karolinska Univ Hosp Huddinge Karolinska Inst Dept Med Huddinge Ctr Hematol &

    Regenerat Med;

    Univ Oxford MRC Weatherall Inst Mol Med Radcliffe Dept Med Haematopoiet Stem Cell Biol Lab;

    Univ Oxford MRC Weatherall Inst Mol Med Radcliffe Dept Med Haematopoiet Stem Cell Biol Lab;

    Univ Oxford MRC Weatherall Inst Mol Med Radcliffe Dept Med Haematopoiet Stem Cell Biol Lab;

    Univ Oxford MRC Weatherall Inst Mol Med Radcliffe Dept Med Haematopoiet Stem Cell Biol Lab;

    Univ Oxford MRC Weatherall Inst Mol Med Radcliffe Dept Med Haematopoiet Stem Cell Biol Lab;

    Univ Oxford MRC Weatherall Inst Mol Med Radcliffe Dept Med Haematopoiet Stem Cell Biol Lab;

    Univ Oxford MRC Weatherall Inst Mol Med Radcliffe Dept Med Haematopoiet Stem Cell Biol Lab;

    Karolinska Inst Dept Cell &

    Mol Biol Stockholm Sweden;

    Univ Oxford MRC Weatherall Inst Mol Med Radcliffe Dept Med Haematopoiet Stem Cell Biol Lab;

    Univ Oxford MRC Weatherall Inst Mol Med Radcliffe Dept Med Haematopoiet Stem Cell Biol Lab;

    Univ Oxford MRC Weatherall Inst Mol Med Radcliffe Dept Med Computat Biol Res Grp Oxford England;

    Univ Oxford MRC Weatherall Inst Mol Med Radcliffe Dept Med Computat Biol Res Grp Oxford England;

    Univ Oxford MRC Weatherall Inst Mol Med Radcliffe Dept Med Computat Biol Res Grp Oxford England;

    Karolinska Inst Dept Cell &

    Mol Biol Stockholm Sweden;

    Karolinska Inst Dept Cell &

    Mol Biol Stockholm Sweden;

    Univ Oxford MRC Weatherall Inst Mol Med Radcliffe Dept Med MRC Mol Haematol Unit Oxford England;

    Karolinska Inst Dept Cell &

    Mol Biol Stockholm Sweden;

    Univ Oxford MRC Weatherall Inst Mol Med Radcliffe Dept Med Haematopoiet Stem Cell Biol Lab;

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  • 正文语种 eng
  • 中图分类 血液及淋巴系疾病 ;
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