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Coordinated control of lumen size and collective migration in the salivary gland

机译:唾液腺腔大小和集体迁移的协调控制

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The Drosophila embryonic salivary gland is a powerful system to analyze the cellular and molecular mechanisms of tubulogenesis in vivo. The secretory portion of the salivary gland (referred to here as the salivary gland), is a pair of elongated epithelial tubes with a single central lumen, that is formed by the invagination and collective migration of gland cells from the ventral surface of the embryo.(1,2) As the salivary gland elongates during migration, the central lumen elongates and narrows at the proximal end.(3) A number of genes are known to regulate salivary gland migration and/or lumen size (Table 1); however, it is only recently that we have begun to analyze how control of salivary gland migration is coordinated with control of lumen size. To understand coordinated control of salivary gland migration and lumen size, we analyzed the role of the single Drosophila Rho GTPase, Rho1, in salivary gland tubulogenesis. In addition to the requirement of Rho1 in salivary gland invagination and migration (Xu et al. 2008), our recent studies show that Rho1 controls salivary gland lumen width and length during the migration process (Fig. 1). These studies reveal that Rho1-mediated processes at the proximal end of the migrating salivary gland, such as cell shape change, cell rearrangement and apical domain elongation, contribute to collective migration and narrowing and elongation of the lumen.
机译:果蝇胚胎唾液腺是一个功能强大的系统,可以分析体内肾小管生成的细胞和分子机制。唾液腺的分泌部分(在此称为唾液腺)是一对具有单个中央管腔的细长上皮管,这是由腺细胞从胚胎腹面的内陷和集体迁移形成的。 (1,2)由于唾液腺在迁移过程中伸长,中央管腔在近端伸长并变窄。(3)已知许多基因可调节唾液腺迁移和/或管腔大小(表1);然而,直到最近,我们才开始分析唾液腺迁移的控制与管腔大小的控制如何协调。为了了解唾液腺迁移和管腔大小的协调控制,我们分析了果蝇中Rho GTPase Rho1在唾液小管形成中的作用。除了在唾液腺的内陷和迁移中需要Rho1(Xu et al。2008),我们最近的研究表明,Rho1在迁移过程中控制唾液腺管腔的宽度和长度(图1)。这些研究表明,Rho1介导的迁移唾液腺近端过程,例如细胞形状改变,细胞重排和顶端结构域延长,有助于集体迁移以及管腔变窄和延长。

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