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Resolving Fates and Single-Cell Transcriptomes of Hematopoietic Stem Cell Clones by PolyloxExpress Barcoding

机译:通过聚氧Xpress条形码解决造血干细胞克隆的序号和单细胞转录组

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摘要

Lineage tracing reveals hematopoietic stem cell (HSC) fates, while single-cell RNA sequencing identifies snapshots of HSC transcriptomes. To obtain information on fate plus transcriptome in the same cell, we developed the PolyloxExpress allele, enabling Cre-recombinase-dependent RNA barcoding in situ. Linking fates to single HSC transcriptomes provided the information required to identify transcriptional signatures of HSC fates, which were not apparent in single-HSC transcriptomes alone. We find that differentiation-inactive, multilineage, and lineage-restricted HSC clones reside in distinct regions of the transcriptional landscape of hematopoiesis. Differentiation-inactive HSC clones are closer to the origin of the transcriptional trajectory, yet they are not characterized by a quiescent gene signature. Fate-specific gene signatures imply coherence of clonal HSC fates, and HSC output toward short-lived lineage progenitors indicates stability of HSC fates over time, These combined analyses of fate and transcriptome under physiological conditions may pave the way toward identifying molecular determinants of HSC fates.
机译:谱系追踪揭示造血干细胞(HSC)的命运,而单细胞RNA测序识别HSC转录组的快照。为了获得同一细胞中命运加转录组的信息,我们开发了Polyoxexpress等位基因,使Cre重组酶依赖的RNA原位条形码成为可能。将命运与单个HSC转录组联系起来,提供了识别HSC命运的转录特征所需的信息,这在单个HSC转录组中并不明显。我们发现分化不活跃、多系和谱系受限的HSC克隆位于造血转录景观的不同区域。分化不活跃的HSC克隆更接近转录轨迹的起源,但它们没有静态基因特征。命运特异性基因标记意味着克隆HSC命运的一致性,HSC向短寿命谱系祖细胞的输出表明HSC命运随时间的稳定,这些在生理条件下对命运和转录组的联合分析可能为确定HSC命运的分子决定因素铺平道路。

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  • 来源
    《Cell stem cell》 |2020年第3期|共21页
  • 作者单位

    German Canc Res Ctr Div Cellular Immunol Neuenheimer Feld 280 D-69120 Heidelberg Germany;

    German Canc Res Ctr Div Cellular Immunol Neuenheimer Feld 280 D-69120 Heidelberg Germany;

    German Canc Res Ctr Div Cellular Immunol Neuenheimer Feld 280 D-69120 Heidelberg Germany;

    German Canc Res Ctr Div Cellular Immunol Neuenheimer Feld 280 D-69120 Heidelberg Germany;

    German Canc Res Ctr Div Theoret Syst Biol Neuenheimer Feld 580 D-69120 Heidelberg Germany;

    German Canc Res Ctr Div Cellular Immunol Neuenheimer Feld 280 D-69120 Heidelberg Germany;

    German Canc Res Ctr Div Cellular Immunol Neuenheimer Feld 280 D-69120 Heidelberg Germany;

    German Canc Res Ctr Div Theoret Syst Biol Neuenheimer Feld 580 D-69120 Heidelberg Germany;

    Max Delbruck Ctr Sci Genom Platforms BIMSB BIH Hannoversche Str 28 D-10115 Berlin Germany;

    Max Delbruck Ctr Sci Genom Platforms BIMSB BIH Hannoversche Str 28 D-10115 Berlin Germany;

    German Canc Res Ctr Div Cellular Immunol Neuenheimer Feld 280 D-69120 Heidelberg Germany;

    German Canc Res Ctr Div Theoret Syst Biol Neuenheimer Feld 580 D-69120 Heidelberg Germany;

    German Canc Res Ctr Div Cellular Immunol Neuenheimer Feld 280 D-69120 Heidelberg Germany;

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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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