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HLH-2/E2A 表达在秀丽隐杆线虫性腺发生过程中连接细胞命运决定的随机和确定性因素。

HLH-2/E2A Expression Links Stochastic and Deterministic Elements of a Cell Fate Decision during C. elegans Gonadogenesis.

机构信息

Department of Biological Sciences, Columbia University, 1212 Amsterdam Avenue, New York, NY 10027, USA.

Center for Studies in Physics and Biology, The Rockefeller University, 1230 York Avenue, New York, NY 10065, USA; Laboratoire Physico Chimie Curie, Institut Curie, PSL Research University, CNRS UMR168, 26 rue d'Ulm, 75248 Paris Cedex 05, France.

出版信息

Curr Biol. 2019 Sep 23;29(18):3094-3100.e4. doi: 10.1016/j.cub.2019.07.062. Epub 2019 Aug 8.

Abstract

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 "α 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 α 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 α 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 α 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 α 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 α cells.

摘要

随机机制使从细菌到人类等生物的细胞命运多样化[1-4]。在秀丽隐杆线虫性腺发生过程中,锚细胞/ 腹子宫前体细胞(AC/VU)命运决定中,两个“α细胞”,每个细胞都有成为 AC 或 VU 的同等潜力,通过 LIN-12/Notch 和其配体 LAG-2/DSL 相互作用[5,6]。这种 LIN-12/Notch 介导的相互作用参与了反馈机制,放大了两个α细胞之间最初的随机差异,确保具有更高 lin-12 活性的细胞成为 VU,而另一个成为 AC[7-9]。最初设想α细胞之间的初始差异是由于 lin-12 表达/活性的“噪声”引起的随机不平衡[6]。然而,随后的证据表明,α细胞的相对出生顺序会影响它们的命运,这表明可能还有其他因素在起作用[7]。在这里,我们使用高通量谱系分析[10];GFP 标记的内源性 LIN-12、LAG-2 和 HLH-2,一种协调 AC/VU 发育的保守转录因子[7,11];和组织特异性 hlh-2 缺失等位基因来研究初始差异的性质。我们确定了两个随机因素:相对出生顺序,它主要起源于三代前的体生殖腺谱系开始时,以及 HLH-2 表达的开始,使得第一个表达 HLH-2 的亲本细胞偏向于 VU 命运。我们发现这些因素是相互关联的,因为 HLH-2 表达的开始与亲本细胞的诞生有关。最后,我们通过显示 hlh-2 在 α 细胞中是 LIN-12 表达所必需的,为 HLH-2 表达偏倚提供了一个潜在的确定性机制。

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