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Intracellular Reactive Oxygen Species Mark and Influence the Megakaryocyte-Erythrocyte Progenitor Fate of Common Myeloid Progenitors

机译:细胞内活性氧标记并影响普通髓系祖细胞的巨核细胞-红细胞祖细胞的命运

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While most studies regarding reactive oxygen species (ROS) focus on their deleterious biological effects, a growing body of evidence indicates the importance of ROS as critical mediators of several signaling pathways, including those involved in hematopoiesis. In this study, we show the critical role of ROS in lineage decision of myeloid progenitors. In megakaryocyte-erythrocyte progenitor cells (MEP), intracellular ROS levels were found to be as low as those in hematopoietic stem cells (HSC). In contrast, remarkably high intracellular ROS levels were observed in granulocyte-monocyte progenitor cells. Intracellular ROS levels in common myeloid progenitors (CMP) were inversely correlated with their MEP differentiation potential. Moreover, gene set enrichment analysis revealed that ROS-low CMP showed gene expression patterns similar to those of MEP, indicating that intracellular ROS levels mark the fate of CMP. In in vitro assays, ROS significantly suppressed the generation of MEP and the formation of megakaryocyte-erythrocyte colonies from CMP. In ROS-high CMP, expression of colony-stimulating factor one receptor (CSF1R) was highly upregulated, and its surface expression correlated with their granulocyte-monocyte differentiation potential. Furthermore, ROS was found to induce the expression of CSF1R mRNA in a leukemia cell line. These data provide novel insights into the relationship between ROS and the hematopoietic differentiation system.
机译:尽管大多数有关活性氧(ROS)的研究都集中在其有害的生物学作用上,但越来越多的证据表明ROS作为几种信号通路(包括参与造血功能的通路)的关键介体的重要性。在这项研究中,我们显示了ROS在髓系祖细胞谱系决定中的关键作用。在巨核细胞-红细胞祖细胞(MEP)中,发现细胞内ROS水平与造血干细胞(HSC)中的ROS水平一样低。相反,在粒细胞单核祖细胞中观察到非常高的细胞内ROS水平。普通髓样祖细胞(CMP)中的细胞内ROS水平与其MEP分化潜能负相关。此外,基因集富集分析表明,低ROS CMP显示出与MEP相似的基因表达模式,表明细胞内ROS水平标志着CMP的命运。在体外测定中,ROS显着抑制了CMP产生MEP和巨核-红细胞集落的形成。在ROS高CMP中,集落刺激因子1受体(CSF1R)的表达高度上调,并且其表面表达与其粒细胞-单核细胞分化潜能相关。此外,发现ROS诱导白血病细胞系中CSF1R mRNA的表达。这些数据为ROS与造血分化系统之间的关系提供了新颖的见解。

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