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首页> 外文期刊>Developmental biology >Conserved mechanism of Wnt signaling function in the specification of vulval precursor fates in C. elegans and C. briggsae.
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Conserved mechanism of Wnt signaling function in the specification of vulval precursor fates in C. elegans and C. briggsae.

机译:Wnt信号功能的保守机制在秀丽隐杆线虫和秀丽隐杆线虫的外阴前体命运的规范中。

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摘要

The C. elegans hermaphrodite vulva serves as a paradigm for understanding how signaling pathways control organ formation. Previous studies have shown that Wnt signaling plays important roles in vulval development. To understand the function and evolution of Wnt signaling in Caenorhabditis nematodes we focused on C. briggsae, a species that is substantially divergent from C. elegans in terms of the evolutionary time scale yet shares almost identical morphology. We isolated mutants in C. briggsae that display multiple pseudo-vulvae resulting from ectopic VPC induction. We cloned one of these loci and found that it encodes an Axin homolog, Cbr-PRY-1. Our genetic studies revealed that Cbr-pry-1 functions upstream of the canonical Wnt pathway components Cbr-bar-1 (beta-catenin) and Cbr-pop-1(tcf/lef) as well as the Hox target Cbr-lin-39 (Dfd/Scr). We further characterized the pry-1 vulval phenotype in C. briggsae and C. elegans using 8 cell fate markers, cell ablation, and genetic interaction approaches. Our results show that ectopically induced VPCs in pry-1 mutants adopt 2 degrees fates independently of the gonad-derived inductive and LIN-12/Notch-mediated lateral signaling pathways. We also found that Cbr-pry-1 mutants frequently show a failure of P7.p induction. A similar, albeit low penetrant, defect is also observed in C. elegans pry-1 mutants. The genetic analysis of the P7.p induction defect revealed that it was caused by altered regulation of lin-12 and its transcriptional target lip-1 (MAP kinase phosphatase). Thus, our results provide evidence for LIN-12/Notch-dependent and independent roles of Wnt signaling in promoting 2 degrees VPC fates in both nematode species.
机译:秀丽隐杆线虫雌雄同体外阴作为理解信号传导途径如何控制器官形成的范例。先前的研究表明,Wnt信号在外阴发育中起重要作用。为了了解Wen信号在线虫秀丽隐杆线虫中的功能和进化,我们集中于C. briggsae,这是一种在进化时间尺度上与秀丽隐杆线虫基本不同,但形态几乎相同的物种。我们分离了C. briggsae中的突变体,这些突变体显示出异位VPC诱导产生的多个假性外阴。我们克隆了这些基因座之一,发现它编码Axin同源物Cbr-PRY-1。我们的遗传研究表明,Cbr-pry-1在经典Wnt途径组分Cbr-bar-1(β-catenin)和Cbr-pop-1(tcf / lef)以及Hox目标Cbr-lin-39的上游起作用(Dfd / Scr)。我们进一步表征了使用8种细胞命运标记,细胞消融和遗传相互作用方法在C. briggsae和C. elegans中的pry-1外阴表型。我们的研究结果表明,pry-1突变体中的异位诱导VPC独立于性腺衍生的诱导和LIN-12 / Notch介导的横向信号传导途径采用2度命运。我们还发现,Cbr-pry-1突变体经常显示P7.p诱导失败。在秀丽隐杆线虫pry-1突变体中也观察到类似的,尽管低渗透性的缺陷。对P7.p诱导缺陷的遗传分析表明,它是由lin-12及其转录靶子lip-1(MAP激酶磷酸酶)的调控改变引起的。因此,我们的结果为Wnt信号通路在两个线虫物种中促进2度VPC命运提供了LIN-12 / Notch依赖性和独立作用的证据。

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