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Multiple Requirements for Rab GTPases in the Development of Drosophila Tracheal Dorsal Branches and Terminal Cells

机译:果蝇气管背支和终末细胞发育中Rab GTPases的多重要求。

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摘要

The tracheal epithelium in fruit fly larvae is a popular model for multi- and unicellular migration and morphogenesis. Like all epithelial cells, tracheal cells use Rab GTPases to organize their internal membrane transport, resulting in the specific localization or secretion of proteins on the apical or basal membrane compartments. Some contributions of Rabs to junctional remodelling and governance of tracheal lumen contents are known, but it is reasonable to assume that they play important further roles in morphogenesis. This pertains in particular to terminal tracheal cells, specialized branch-forming cells that drastically reshape both their apical and basal membrane during the larval stages. We performed a loss-of-function screen in the tracheal system, knocking down endogenously tagged alleles of 26 Rabs by targeting the tag via RNAi. This revealed that at least 14 Rabs are required to ensure proper cell fate specification and migration of the dorsal branches, as well as their epithelial fusion with the contralateral dorsal branch. The screen implicated four Rabs in the subcellular morphogenesis of terminal cells themselves. Further tests suggested residual gene function after knockdown, leading us to discuss the limitations of this approach. We conclude that more Rabs than identified here may be important for tracheal morphogenesis, and that the tracheal system offers great opportunities for studying several Rabs that have barely been characterized so far.
机译:果蝇幼虫的气管上皮是多细胞和单细胞迁移和形态发生的流行模型。像所有上皮细胞一样,气管细胞使用Rab GTPases来组织其内部膜运输,从而导致蛋白质在顶膜或基底膜区室中的特定定位或分泌。已知Rabs对交界重塑和气管腔内容物的治理有一些贡献,但是可以合理地假设Rabs在形态发生中起重要作用。这尤其涉及到气管末端细胞,即专门的分支形成细胞,在幼虫阶段会彻底重塑其顶膜和基膜。我们在气管系统中进行了功能丧失筛选,通过RNAi靶向标签,敲除了26个Rabs的内源性标签等位基因。这表明至少需要14个Rab,以确保适当的细胞命运规范和背分支的迁移,以及它们与对侧背分支的上皮融合。筛选涉及四个Rabs终端细胞本身的亚细胞形态发生。进一步的测试表明敲除后残留的基因功能,这使我们讨论了这种方法的局限性。我们得出的结论是,超出此处确定的Rab可能对气管形态发生很重要,并且气管系统为研究迄今几乎未表征的几种Rab提供了巨大的机会。

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