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Capicua integrates input from two maternal systems in Drosophila terminal patterning

机译:Capicua整合了果蝇终端模式中两个母体系统的输入

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摘要

In Drosophila, the maternal terminal system specifies cell fates at the embryonic poles via the localised stimulation of the Torso receptor tyrosine kinase (RTK). Signalling by the Torso pathway relieves repression mediated by the Capicua and Groucho repressors, allowing the restricted expression of the zygotic terminal gap genes tailless and huckebein. Here we report a novel positive input into tailless and huckebein transcription by maternal posterior group genes, previously implicated in abdomen and pole cell formation. We show that absence of a subset of posterior group genes, or their overactivation, leads to the spatial reduction or expansion of the tailless and huckebein posterior expression domains, respectively. We demonstrate that the terminal and posterior systems converge, and that exclusion of Capicua from the termini of posterior group mutants is ineffective, accounting for reduced terminal gap gene expression in these embryos. We propose that the terminal and posterior systems function coordinately to alleviate transcriptional silencing by Capicua, and that the posterior system fine-tunes Torso RTK signalling output, ensuring precise spatial domains of tailless and huckebein expression.
机译:在果蝇中,母体终末系统通过局部刺激Torso受体酪氨酸激酶(RTK)来确定胚胎两极的细胞命运。躯干途径的信号可减轻Capicua和Groucho阻遏物介导的阻遏作用,从而使合子末端间隙基因无尾和huckebein的表达受到限制。在这里,我们报告了由母亲后组基因向无尾和huckebein转录的新的积极输入,以前与腹部和极细胞的形成有关。我们显示缺少后组基因的子集,或者它们的过度激活,分别导致无尾和huckebein后表达域的空间减少或扩展。我们证明末端和后部系统会聚,并且从后部突变体的末端排除Capicua是无效的,这说明了这些胚胎中末端间隙基因表达的减少。我们建议末端系统和后系统协同作用以减轻Capicua的转录沉默,并且后系统微调Torso RTK信号输出,确保精确的无尾和huckebein表达空间域。

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