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首页> 外文期刊>Stem cells and development >Distinct Molecular Signature of Murine Fetal Liver and Adult Hematopoietic Stem Cells Identify Novel Regulators of Hematopoietic Stem Cell Function
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Distinct Molecular Signature of Murine Fetal Liver and Adult Hematopoietic Stem Cells Identify Novel Regulators of Hematopoietic Stem Cell Function

机译:小鼠胎儿肝脏和成人造血干细胞的不同分子特征识别造血干细胞功能的新型调节剂

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During ontogeny, fetal liver (FL) acts as a major site for hematopoietic stem cell (HSC) maturation and expansion, whereas HSCs in the adult bone marrow (ABM) are largely quiescent. HSCs in the FL possess faster repopulation capacity as compared with ABM HSCs. However, the molecular mechanism regulating the greater self-renewal potential of FL HSCs has not yet extensively been assessed. Recently, we published RNA sequencing-based gene expression analysis on FL HSCs from 14.5-day mouse embryo (E14.5) in comparison to the ABM HSCs. We reanalyzed these data to identify key transcriptional regulators that play important roles in the expansion of HSCs during development. The comparison of FL E14.5 with ABM HSCs identified more than 1,400 differentially expressed genes. More than 200 genes were shortlisted based on the gene ontology (GO) annotation term "transcription.'' By morpholino-based knockdown studies in zebrafish, we assessed the function of 18 of these regulators, previously not associated with HSC proliferation. Our studies identified a previously unknown role for tdg, uhrf1, uchl5, and ncoa1 in the emergence of definitive hematopoiesis in zebrafish. In conclusion, we demonstrate that identification of genes involved in transcriptional regulation differentially expressed between expanding FL HSCs and quiescent ABM HSCs, uncovers novel regulators of HSC function.
机译:在组织发生期间,胎儿肝脏(FL)作为造血干细胞(HSC)成熟和膨胀的主要部位,而成年骨髓(ABM)的HSC在很大程度上是静态的。与ABM HSCS相比,FL中的HSCS具有更快的重新流量。然而,调节FL HSCs更大自我更新潜力的分子机制尚未得到广泛评估。最近,我们与ABM HSC相比,我们从14.5天的小鼠胚胎(E14.5)上发表了基于RNA测序的基因表达分析。我们重新分析了这些数据,以识别在开发期间扩展HSC的关键转录调节因素。 FL E14.5与ABM HSC的比较鉴定了超过1,400个差异表达的基因。基于基因本体论(GO)注释术语“转录”,在斑马鱼中的敲低度研究中,我们评估了200多种基因的基于基于Zebrafish的敲低,我们评估了这些调节剂中的18项的功能,以前与HSC增殖无关。我们确定了我们的研究TDG,UHRF1,UCH15和NCOA1在斑马鱼中明确血液缺陷的出现中的先前未知的作用。总之,我们证明鉴定转录调控的基因鉴定在扩增FL HSC和静态ABM HSC之间,揭示了新型监管机构HSC功能。

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