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首页> 外文期刊>Developmental cell >In Vivo Imaging Reveals Different Cellular Functions for FGF and Dpp Signaling in Tracheal Branching Morphogenesis
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In Vivo Imaging Reveals Different Cellular Functions for FGF and Dpp Signaling in Tracheal Branching Morphogenesis

机译:体内成像揭示气管分支形态发生中FGF和Dpp信号的不同细胞功能。

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In the developing tracheal system of Drosophila melanogaster, six major branches arise by guided cell migration from a sac-like structure. The chemoattractant Branchless/FGF (Bnl) appears to guide cell migration and is essential for the formation of all tracheal branches, while Decapentaplegic (Dpp) signaling is strictly required for the formation of a subset of branches, the dorsal and ventral branches. Using in vivo confocal video microscopy, we find that the two signaling systems affect different cellular functions required for branching morphogenesis. Bnl/FGF signaling affects the formation of dynamic filopodia, possibly controlling cytoskeletal activity and motility as such, and Dpp controls cellular functions allowing branch morphogenesis and outgrowth.
机译:在发展中的果蝇的气管系统中,通过从囊状结构引导的细胞迁移,产生了六个主要分支。趋化性无分支/ FGF(Bnl)似乎指导细胞迁​​移,对于所有气管分支的形成都是必不可少的,而十足功能(Dpp)信号传导则是分支的一部分,背侧和腹侧分支的形成所必需的。使用体内共聚焦显微镜,我们发现这两个信号系统影响分支形态发生所需的不同细胞功能。 Bnl / FGF信号传导影响动态丝状伪足的形成,从而可能控制细胞骨架活性和运动性,而Dpp控制细胞功能,从而允许分支形态发生和生长。

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