首页> 外文期刊>Current Biology: CB >HLH-2/E2A Expression Links Stochastic and Deterministic Elements of a Cell Fate Decision during C. elegans Gonadogenesis
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HLH-2/E2A Expression Links Stochastic and Deterministic Elements of a Cell Fate Decision during C. elegans Gonadogenesis

机译:HLH-2 / E2A表达链接C.杆状杆菌期间CELFANS GONADOCONERY期间的细胞命运决定的随机和确定性元素

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摘要

Stochastic mechanisms diversify cell fate in organisms ranging from bacteria to humans [1-4]. In the anchor cell/ventral uterine precursor cell (AC/VU) fate decision during C. elegans gonadogenesis, two "alpha cells," each with equal potential to be an AC or a VU, interact via LIN-12/Notch and its ligand LAG-2/DSL [5, 6]. This LIN-12/Notch-mediated interaction engages feedback mechanisms that amplify a stochastic initial difference between the two alpha cells, ensuring that the cell with higher lin-12 activity becomes the VU while the other becomes the AC [7-9]. The initial difference between the alpha cells was originally envisaged as a random imbalance from "noise" in lin-12 expression/activity [6]. However, subsequent evidence that the relative birth order of the alpha cells biases their fates suggested other factors may be operating [7]. Here, we investigate the nature of the initial difference using high-throughput lineage analysis [10]; GFP-tagged endogenous LIN-12, LAG-2, and HLH-2, a conserved transcription factor that orchestrates AC/VU development [7, 11]; and tissue-specific hlh-2 null alleles. We identify two stochastic elements: relative birth order, which largely originates at the beginning of the somatic gonad lineage three generations earlier, and onset of HLH-2 expression, such that the alpha cell whose parent expressed HLH-2 first is biased toward the VU fate. We find that these elements are interrelated, because initiation of HLH-2 expression is linked to the birth of the parent cell. Finally, we provide a potential deterministic mechanism for the HLH-2 expression bias by showing that hlh-2 is required for LIN-12 expression in the alpha cells.
机译:随机机制在从细菌到人类的生物中分化细胞命运[1-4]。在锚细胞/腹侧子宫前体细胞(AC / VU)在C.秀丽隐杆状发作期间的命运决定,两个“α细胞”,每个“alpha细胞”,每个具有相同的电位为AC或Vu,通过Lin-12 /缺口和其配体相互作用LAG-2 / DSL [5,6]。该LIN-12 / Notch介导的交互接合反馈机制,反馈机制放大两个α细胞之间的随机初始差异,确保具有较高LIN-12活动的单元变为VU,而另一个成为AC [7-9]。 α细胞之间的初始差异最初设想为Lin-12表达/活动中的“噪声”随机不平衡[6]。但是,随后的证据表明,α细胞的相对出生顺序偏离其命名,建议其他因素可以运作[7]。在这里,我们使用高通量谱系分析研究初始差异的性质[10]; GFP标记的内源性LIN-12,LAG-2和HLH-2,保守的转录因子编排了AC / VU开发[7,11];和组织特异性HLH-2零等位基因。我们鉴定了两个随机元素:相对出生顺序,这在很大程度上起源于Somatic Gonad谱系三代人的开始,并且HLH-2表达的开始,使得父母表示HLH-2的α细胞偏向于VU命运。我们发现这些元素是相互关联的,因为HLH-2表达的启动与父细胞的诞生有关。最后,我们通过表明在α细胞中需要HLH-2表达需要HLH-2,为HLH-2表达偏向提供潜在的确定性机制。

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  • 来源
    《Current Biology: CB》 |2019年第18期|共11页
  • 作者单位

    Columbia Univ Dept Biol Sci 1212 Amsterdam Ave New York NY 10027 USA;

    Rockefeller Univ Ctr Studies Phys &

    Biol 1230 York Ave New York NY 10065 USA;

    Columbia Univ Dept Biol Sci 1212 Amsterdam Ave New York NY 10027 USA;

    Columbia Univ Dept Biol Sci 1212 Amsterdam Ave New York NY 10027 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物科学;
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