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Reduced lymphoid lineage priming promotes human hematopoietic stem cell expansion

机译:减少的淋巴谱系引发促进人造造血干细胞膨胀

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摘要

The hematopoietic system sustains regeneration throughout life by balancing self-renewal and differentiation. To stay poised for mature blood production, hematopoietic stem cells (HSCs) maintain low-level expression of lineage-associated genes, a process termed lineage priming. Here, we modulated expression levels of Inhibitor of DNA binding (ID) proteins to ask whether lineage priming affects self-renewal of human HSCs. We found that lentiviral overexpression of ID proteins in cord blood HSCs biases myeloerythroid commitment at the expense of lymphoid differentiation. Conversely, reducing ID2 expression levels increases lymphoid potential. Mechanistically, ID2 inhibits the transcription factor E47 to attenuate B-lymphoid priming in HSCs and progenitors. Strikingly, ID2 overexpression also results in a 10-fold expansion of HSCs in serial limiting dilution assays, indicating that early lymphoid transcription factors antagonize human HSC self-renewal. The relationship between lineage priming and self-renewal can be exploited to increase expansion of transplantable human HSCs and points to broader implications for other stem cell populations.
机译:造血系统通过平衡自我更新和分化来维持整个生命的再生。为了保持成熟的血液生产,造血干细胞(HSCs)保持血谱和血型相关基因的低水平表达,该过程称为谱系引发。这里,我们调节DNA结合(ID)蛋白的抑制剂的表达水平,以询问谱系引发是否会影响人HSC的自我更新。我们发现脐带血HSC中ID蛋白的慢病毒过度表达偏置髓质血液血液的含量,以淋巴分化为代价。相反,减少ID2表达水平会增加淋巴势。机械地,ID2抑制转录因子E47,以在HSC和祖细胞中衰减B淋巴结灌注。令人醒目的是,ID2过表达也导致HSCS在连续限制稀释测定中的10倍扩张,表明早期淋巴转录因子拮抗人HSC自我更新。可以利用谱系引发和自我更新之间的关系来增加可移植人HSC的扩展,并为其他干细胞群体的影响更广泛。

著录项

  • 来源
    《Cell stem cell》 |2014年第1期|共13页
  • 作者单位

    Princess Margaret Cancer Centre University Health Network Toronto ON M5G 1L7 Canada;

    Princess Margaret Cancer Centre University Health Network Toronto ON M5G 1L7 Canada Department;

    Princess Margaret Cancer Centre University Health Network Toronto ON M5G 1L7 Canada;

    Princess Margaret Cancer Centre University Health Network Toronto ON M5G 1L7 Canada;

    Department of Pediatrics McGill University Research Institute Westmount QC H3Z 2Z3 Canada;

    Princess Margaret Cancer Centre University Health Network Toronto ON M5G 1L7 Canada;

    Princess Margaret Cancer Centre University Health Network Toronto ON M5G 1L7 Canada;

    Princess Margaret Cancer Centre University Health Network Toronto ON M5G 1L7 Canada;

    Princess Margaret Cancer Centre University Health Network Toronto ON M5G 1L7 Canada Department;

    Illumina San Diego CA 92122 United States;

    Illumina San Diego CA 92122 United States;

    Princess Margaret Cancer Centre University Health Network Toronto ON M5G 1L7 Canada Department;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

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