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Apical Lateral and Basal Polarization Cues Contribute to the Development of the Follicular Epithelium during Drosophila Oogenesis

机译:顶侧和基础极化提示有助于果蝇卵子发生期间的卵泡上皮的发展。

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摘要

Analysis of the mechanisms that control epithelial polarization has revealed that cues for polarization are mediated by transmembrane proteins that operate at the apical, lateral, or basal surface of epithelial cells. Whereas for any given epithelial cell type only one or two polarization systems have been identified to date, we report here that the follicular epithelium in Drosophila ovaries uses three different polarization mechanisms, each operating at one of the three main epithelial surface domains. The follicular epithelium arises through a mesenchymal–epithelial transition. Contact with the basement membrane provides an initial polarization cue that leads to the formation of a basal membrane domain. Moreover, we use mosaic analysis to show that Crumbs (Crb) is required for the formation and maintenance of the follicular epithelium. Crb localizes to the apical membrane of follicle cells that is in contact with germline cells. Contact to the germline is required for the accumulation of Crb in follicle cells. Discs Lost (Dlt), a cytoplasmic PDZ domain protein that was shown to interact with the cytoplasmic tail of Crb, overlaps precisely in its distribution with Crb, as shown by immunoelectron microscopy. Crb localization depends on Dlt, whereas Dlt uses Crb-dependent and -independent mechanisms for apical targeting. Finally, we show that the cadherin–catenin complex is not required for the formation of the follicular epithelium, but only for its maintenance. Loss of cadherin-based adherens junctions caused by armadillo (β-catenin) mutations results in a disruption of the lateral spectrin and actin cytoskeleton. Also Crb and the apical spectrin cytoskeleton are lost from armadillo mutant follicle cells. Together with previous data showing that Crb is required for the formation of a zonula adherens, these findings indicate a mutual dependency of apical and lateral polarization mechanisms.
机译:对控制上皮极化的机制的分析表明,极化提示是由在上皮细胞的顶,侧面或基底表面起作用的跨膜蛋白介导的。迄今为止,对于任何给定的上皮细胞类型,仅鉴定到一个或两个极化系统,我们在这里报告果蝇卵巢中的卵泡上皮使用三种不同的极化机制,每种机制均在三个主要上皮表面域之一中起作用。卵泡上皮通过间质-上皮转化而产生。与基底膜的接触提供了初始极化提示,该极化提示导致了基底膜结构域的形成。此外,我们使用镶嵌分析表明,碎屑(Crb)是滤泡上皮形成和维持所必需的。 Crb定位于与种系细胞接触的卵泡细胞的顶膜。 Crb在卵泡细胞中的积累需要与种系接触。 Discs Lost(Dlt)是一种胞质PDZ域蛋白,已显示与Crb的胞质尾部相互作用,如免疫电子显微镜所示,其分布与Crb精确重叠。 Crb定位取决于Dlt,而Dlt使用Crb依赖性和非依赖性机制进行根尖靶向。最后,我们证明钙粘蛋白-连环蛋白复合物对于卵泡上皮细胞的形成不是必需的,而仅仅是其维持的必要条件。犰狳(β-catenin)突变引起的基于钙粘着蛋白的粘附连接的丧失导致侧向血影蛋白和肌动蛋白细胞骨架的破坏。此外,犰狳突变型卵泡细胞会丢失Crb和顶端的血影蛋白骨架。连同先前的数据表明形成小带粘连物需要Crb,这些发现表明顶端和侧向极化机制相互依赖。

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