Institute of Biosciences and Technology, Texas A&M Health Science Center, Texas A&M University, Houston, TX, United States of America.
Université Côte d'Azur, CNRS, Inserm, IBV, Nice, France.
PLoS Genet. 2019 May 14;15(5):e1008056. doi: 10.1371/journal.pgen.1008056. eCollection 2019 May.
The six C. elegans vulval precursor cells (VPCs) are induced to form the 3°-3°-2°-1°-2°-3° pattern of cell fates with high fidelity. In response to EGF signal, the LET-60/Ras-LIN-45/Raf-MEK-2/MEK-MPK-1/ERK canonical MAP kinase cascade is necessary to induce 1° fate and synthesis of DSL ligands for the lateral Notch signal. In turn, LIN-12/Notch receptor is necessary to induce neighboring cells to become 2°. We previously showed that, in response to graded EGF signal, the modulatory LET-60/Ras-RGL-1/RalGEF-RAL-1/Ral signal promotes 2° fate in support of LIN-12. In this study, we identify two key differences between RGL-1 and RAL-1. First, deletion of RGL-1 confers no overt developmental defects, while previous studies showed RAL-1 to be essential for viability and fertility. From this observation, we hypothesize that the essential functions of RAL-1 are independent of upstream activation. Second, RGL-1 plays opposing and genetically separable roles in VPC fate patterning. RGL-1 promotes 2° fate via canonical GEF-dependent activation of RAL-1. Conversely, RGL-1 promotes 1° fate via a non-canonical GEF-independent activity. Our genetic epistasis experiments are consistent with RGL-1 functioning in the modulatory 1°-promoting AGE-1/PI3-Kinase-PDK-1-AKT-1 cascade. Additionally, animals lacking RGL-1 experience 15-fold higher rates of VPC patterning errors compared to the wild type. Yet VPC patterning in RGL-1 deletion mutants is not more sensitive to environmental perturbations. We propose that RGL-1 functions to orchestrate opposing 1°- and 2°-promoting modulatory cascades to decrease developmental stochasticity. We speculate that such switches are broadly conserved but mostly masked by paralog redundancy or essential functions.
秀丽隐杆线虫的六个原始生殖细胞(VPC)以高保真度诱导形成 3°-3°-2°-1°-2°-3°的细胞命运模式。在 EGF 信号的作用下,LET-60/Ras-LIN-45/Raf-MEK-2/MEK-MPK-1/ERK 经典 MAP 激酶级联反应对于诱导 1°命运和 DSL 配体的合成以产生横向 Notch 信号是必要的。反过来,LIN-12/Notch 受体对于诱导相邻细胞成为 2°也是必要的。我们之前表明,在响应梯度 EGF 信号时,调节性 LET-60/Ras-RGL-1/RalGEF-RAL-1/Ral 信号促进 2°命运,以支持 LIN-12。在这项研究中,我们确定了 RGL-1 和 RAL-1 之间的两个关键区别。首先,RGL-1 的缺失不会导致明显的发育缺陷,而之前的研究表明 RAL-1 对于生存力和生育力是必不可少的。从这一观察结果,我们假设 RAL-1 的基本功能与上游激活无关。其次,RGL-1 在 VPC 命运模式形成中发挥相反的、遗传上可分离的作用。RGL-1 通过 RAL-1 的经典 GEF 依赖性激活来促进 2°命运。相反,RGL-1 通过非经典 GEF 独立活性来促进 1°命运。我们的遗传上位实验与 RGL-1 在调节性 1°促进的 AGE-1/PI3-激酶-PDK-1-AKT-1 级联中发挥作用一致。此外,与野生型相比,缺乏 RGL-1 的动物经历 15 倍更高的 VPC 模式形成错误率。然而,RGL-1 缺失突变体中的 VPC 模式形成对环境干扰不更敏感。我们提出 RGL-1 起协调相反的 1°和 2°促进的调节级联作用的作用,以降低发育随机性。我们推测,这种开关广泛保守,但大多被旁系同源冗余或基本功能所掩盖。