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Following the ‘tracks’: Tramtrack69 regulates epithelial tube expansion in the Drosophila ovary through Paxillin Dynamin and the homeobox protein Mirror

机译:遵循轨迹:Tramtrack69通过PaxillinDynamin和Homeobox蛋白Mirror调节果蝇卵巢中的上皮管扩张

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摘要

Epithelial tubes are the infrastructure for organs and tissues, and tube morphogenesis requires precise orchestration of cell signaling, shape, migration, and adhesion. Follicle cells in the Drosophila ovary form a pair of epithelial tubes whose lumens act as molds for the eggshell respiratory filaments, or dorsal appendages (DAs). DA formation is a robust and accessible model for studying the patterning, formation, and expansion of epithelial tubes. Tramtrack69 (TTK69), a transcription factor that exhibits a variable embryonic DNA-binding preference, controls DA lumen volume and shape by promoting tube expansion; the tramtrack mutation twin peaks (ttktwk) reduces TTK69 levels late in oogenesis, inhibiting this expansion. Microarray analysis of wild-type and ttktwk ovaries, followed by in situ hybridization and RNAi of candidate genes, identified the Phospholipase B-like protein Lamina ancestor (LAMA), the scaffold protein Paxillin, the endocytotic regulator Shibire (Dynamin), and the homeodomain transcription factor Mirror, as TTK69 effectors of DA-tube expansion. These genes displayed enriched expression in DA-tube cells, except lama, which was expressed in all follicle cells. All four genes showed reduced expression in ttktwk mutants and exhibited RNAi phenotypes that were enhanced in a ttktwk/+ background, indicating ttktwk genetic interactions. Although previous studies show that Mirror patterns the follicular epithelium prior to DA tubulogenesis, we show that Mirror has an independent, novel role in tube expansion, involving positive regulation of Paxillin. Thus, characterization of ttktwk-differentially expressed genes expands the network of TTK69 effectors, identifies novel epithelial tube-expansion regulators, and significantly advances our understanding of this vital developmental process.
机译:上皮管是器官和组织的基础设施,并且管的形态发生需要细胞信号,形状,迁移和粘附的精确协调。果蝇卵巢中的卵泡细胞形成一对上皮管,其管腔充当蛋壳呼吸丝或背侧附件(DAs)的霉菌。 DA的形成是用于研究上皮管的图案,形成和扩展的鲁棒且可访问的模型。 Tramtrack69(TTK69)是一种表现出可变的胚胎DNA结合偏好的转录因子,它通过促进管的扩张来控制DA管腔的体积和形状。电车轨道突变双峰(ttk twk )在卵子发生后期降低了TTK69水平,从而抑制了这种扩展。对野生型和ttk twk 卵巢进行微阵列分析,然后对候选基因进行原位杂交和RNAi,鉴定了磷脂酶B样蛋白层板祖先(LAMA),支架蛋白Paxillin,内吞调节剂Shibire(Dynamin)和同源域转录因子Mirror,作为DA管扩张的TTK69效应子。这些基因在喇嘛以外的DA管细胞中显示出丰富的表达,而喇嘛在所有的卵泡细胞中都有表达。所有四个基因均在ttk twk 突变体中表达降低,并表现出在ttk twk / +背景下增强的RNAi表型,表明ttk twk 遗传互动。尽管以前的研究表明Mirror在DA肾小管生成之前先形成卵泡上皮,但我们显示Mirror在扩管中具有独立的新颖作用,涉及Paxillin的正向调节。因此,表征ttk twk 差异表达的基因扩展了TTK69效应子的网络,鉴定了新颖的上皮管扩张调节剂,并极大地增进了我们对这一重要的发育过程的理解。

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