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Single-Cell RNA-Seq Reveals Cellular Heterogeneity of Pluripotency Transition and X Chromosome Dynamics during Early Mouse Development

机译:单细胞RNA-SEQ在早期小鼠发育过程中显示多能转变和X染色体动力学的细胞异质性

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摘要

Summary: Following implantation, the epiblast (EPI) cells transit from the naive to primed pluripotency, accompanied by dynamic changes in X chromosome activity in females. To investigate the molecular attributes of this process, we performed single-cell RNA-seq analysis of 1,724 cells of E5.25, E5.5, E6.25, and E6.5 mouse embryos. We identified three cellular states in the EPI cells that capture the transition along the pluripotency continuum and the acquisition of primitive streak propensity. The transition of three EPI states was driven by inductive signaling activity emanating from the visceral endoderm (VE). In the EPI of female embryos, X chromosome reactivation (XCR) was initiated prior to the completion of imprinted X chromosome inactivation (XCI), and the ensuing random XCI was highly asynchronous. Moreover, imprinted paternal XCI proceeded faster in the VE than the extraembryonic ectoderm. Our study has provided a detailed molecular roadmap of the emergent lineage commitment before gastrulation and characterized X chromosome dynamics during early mouse development. : Cheng et al. present a molecular roadmap at single-cell and allelic resolution that highlights the developmental process of epiblast cells transiting through pluripotency states and acquiring the primitive streak propensity ahead of gastrulation. In the epiblast of female embryos, the paternal X chromosome is reactivated before the completion of imprinted inactivation. Keywords: pluripotency transition, epiblast heterogeneity, pregastrula development, X chromosome inactivation dynamics
机译:发明内容:在植入之后,外表(EPI)细胞从幼稚到底部化多能性转动,伴随着雌性X染色体活性的动态变化。为了研究该方法的分子属性,我们对E5.25,E5.5,E6.25和E6.5小鼠胚胎进行了1,724个细胞的单细胞RNA-SEQ分析。我们鉴定了沿着多能性连续统一的ePI细胞中的三个细胞状态,并采集原始条纹倾向。三种EPI状态的转变是由来自内胚层(VE)发出的电感信号活性的驱动。在雌性胚胎的ePI中,在完成印迹X染色体灭活(XCI)之前启动X染色体再激活(XCR),随后的随机XCI高度异步。此外,在VE中的印迹父亲XCI比Arthraembryonic Ectoderm更快地进行。我们的研究提供了燃烧前的紧急谱系承诺的详细分子路线图,并在早期小鼠发育过程中表征X染色体动力学。 :Cheng等人。在单细胞和等位基因分辨率下出现分子路线图,突出了通过多能性状态过流动的外表细胞的发育过程,并在脱钙之前获取原始条纹倾向。在雌性胚胎的外壳中,在完成压印灭活之前重新激活父X染色体。关键词:多能转换,外素异质性,pregastrulula发育,x染色体灭活动力学

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