首页> 外文期刊>Cell cycle >Upregulation of nascent mitochondrial biogenesis in mouse hematopoietic stem cells parallels upregulation of CD34 and loss of pluripotency: A potential strategy for reducing oxidative risk in stem cells.
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Upregulation of nascent mitochondrial biogenesis in mouse hematopoietic stem cells parallels upregulation of CD34 and loss of pluripotency: A potential strategy for reducing oxidative risk in stem cells.

机译:小鼠造血干细胞中新生线粒体生物发生的上调性与多能性丧失降低损失的下降性,降低干细胞氧化风险的潜在策略。

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摘要

Oxidative damage by reactive oxygen species generated in mitochondria is a potential cause of stem-cell dysregulation. Little is known about how hematopoietic stem cells mitigate/lessen this risk in the face of upregulated mitochondrial biogenesis/function necessary for the energy needs of differentiation and progenitor expansion. Here we report that upregulation of mitochondrial mass in mouse hematopoietic stem cells is closely linked to the appearance of CD34 on their surface, a marker indicating loss of long-term repopulating ability. These mitochondria have low membrane potential initially, but become active before exiting the primitive LSK compartment. Steady-state hematopoiesis perturbed by global expression of SDF-1/CXCL12 transgene causes a shift in ratios of these mitochondrialy-distinct LSK populations. Based on known effects of SDF-1 and signaling by it's receptor, CXCR4, along with finding primitive progenitors with high mitochondrial mass but low activity, we suggest a model of asymmetric self-renewing stem cell division that could lessen stem cell exposure to oxidative damage.
机译:线粒体中产生的反应性氧物质的氧化损伤是干细胞失调的潜在原因。关于造血干细胞如何减轻/减少面对所需的线粒体生物生物发生/功能的血管生物发生/功能,以造成造血干细胞的降低/减轻这种风险。在这里,我们认为小鼠造血干细胞中线粒体质量的上调与其表面上CD34的外观紧密相关,标记表明长期重新损失能力的损失。这些线粒体最初具有低膜电位,但在离开原始LSK隔室之前变得活跃。通过SDF-1 / CXCL12转基因的全局表达扰动的稳态血液缺陷会导致这些线粒体不同的LSK群体的比率转变。基于SDF-1的已知效果,CXCR4的SDF-1和信号传导以及寻找具有高线粒体肿块但低活性的原始祖细胞,我们建议一种不对称的自我更新干细胞分裂模型,可以减少干细胞暴露于氧化损伤。

著录项

  • 来源
    《Cell cycle》 |2010年第10期|共10页
  • 作者

    Mantel C; Broxmeyer HE;

  • 作者单位

    Department of Microbiology and Immunology Indiana University School of Medicine Indianapolis IN USA.;

  • 收录信息
  • 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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