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Epigenetic regulator function through mouse gastrulation

机译:表观遗传调节剂通过小鼠腐化功能

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摘要

During ontogeny, proliferating cells become restricted in their fate through the combined action of cell-type-specific transcription factors and ubiquitous epigenetic machinery, which recognizes universally available histone residues or nucleotides in a context-dependent manner(1,2). The molecular functions of these regulators are generally well understood, but assigning direct developmental roles to them is hampered by complex mutant phenotypes that often emerge after gastrulation(3,4). Single-cell RNA sequencing and analytical approaches have explored this highly conserved, dynamic period across numerous model organisms(5-8), including mouse(9-18). Here we advance these strategies using a combined zygotic perturbation and single-cell RNA-sequencing platform in which many mutant mouse embryos can be assayed simultaneously, recovering robust morphological and transcriptional information across a panel of ten essential regulators. Deeper analysis of central Polycomb repressive complex (PRC) 1 and 2 components indicates substantial cooperativity, but distinguishes a dominant role for PRC2 in restricting the germline. Moreover, PRC mutant phenotypes emerge after gross epigenetic and transcriptional changes within the initial conceptus prior to gastrulation. Our experimental framework may eventually lead to a fully quantitative view of how cellular diversity emerges using an identical genetic template and from a single totipotent cell.An experimental and analytical pipeline is used to assess, at the single-cell level, complex transcriptional and morphological mutant phenotypes that occur in mouse embryos during gastrulation.
机译:在组织发生期间,通过细胞类型特异性转录因子和普遍存在的表观遗传机械的组合作用,增殖细胞在其命运中受到限制,其以上下文的方式识别普遍可用的组蛋白残基或核苷酸(1,2)。这些调节剂的分子功能通常很好地理解,但是将它们的直接发育角色分配给它们受到常见的复杂突变体表型的阻碍(3,4)。单细胞RNA测序和分析方法探讨了跨越多种模型生物(5-8)的高度保守的动态时期,包括小鼠(9-18)。在这里,我们使用组合的扰动和单细胞RNA测序平台推进这些策略,其中可以同时测定许多突变小鼠胚胎,在十个基本调节器面板上恢复鲁棒形态和转录信息。对中枢多元抑制复合物(PRC)1和2组分的更深入分析表明,具有实质性的合作性,但对PRC2的主导作用区分在限制种系中。此外,在腐蚀性之前,PRC突变表型在初始概念内的毛细管病毒和转录变化之后出现。我们的实验框架最终可能会出现使用相同的遗传模板以及从单一的全能细胞出现的细胞分集的完全定量观点。实验和分析管道用于评估单细胞水平,复杂的转录和形态突变体在腐蚀过程中在小鼠胚胎中发生的表型。

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  • 来源
    《Nature》 |2020年第7819期|102-108|共7页
  • 作者单位

    Max Planck Inst Mol Genet Dept Genome Regulat Berlin Germany;

    Max Planck Inst Mol Genet Dept Genome Regulat Berlin Germany;

    Broad Inst MIT & Harvard Cambridge MA 02142 USA|Harvard Univ Dept Stem Cell & Regenerat Biol Cambridge MA 02138 USA|Harvard Univ Dept Mol & Cellular Biol Cambridge MA 02138 USA;

    Max Planck Inst Mol Genet Dept Genome Regulat Berlin Germany;

    Max Planck Inst Mol Genet Dept Genome Regulat Berlin Germany;

    Max Planck Inst Mol Genet Dept Dev Genet Berlin Germany;

    Max Planck Inst Mol Genet Sequencing Core Facil Berlin Germany;

    Max Planck Inst Mol Genet Sequencing Core Facil Berlin Germany;

    Washington Univ Dept Phys St Louis MO 63130 USA;

    Max Planck Inst Mol Genet Dept Genome Regulat Berlin Germany|Broad Inst MIT & Harvard Cambridge MA 02142 USA|Harvard Univ Dept Stem Cell & Regenerat Biol Cambridge MA 02138 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 22:15:28

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