Jung Alain C, Ribeiro Carlos, Michaut Lydia, Certa Ulrich, Affolter Markus
Abteilung Zellbiologie, Biozentrum der Universität Basel, Klingelbergstrasse 70, CH-4056 Basel, Switzerland.
Curr Biol. 2006 Jun 20;16(12):1224-31. doi: 10.1016/j.cub.2006.04.048.
The development of the complex network of epithelial tubes that ultimately forms the Drosophila tracheal system relies on cell migration, cell shape changes, cell rearrangements, cell differentiation, and branch fusion . Most of these events are controlled by a combination of distinct transcription factors and cell-cell signaling molecules, but few proteins that do not fall within these two functional classes have been associated with tracheal development. We show that the MAGUK protein Polychaetoid (Pyd/ZO-1), the Drosophila homolog of the junctional protein ZO-1 , plays a dual role in the formation of tracheal tubes. pyd/ZO-1 mutant embryos display branch fusion defects due to the lack of reliable determination of the fusion cell fate. In addition, pyd/ZO-1 mutant embryos show impaired cell intercalation in thin tracheal branches. Pyd/ZO-1 localizes to the adherens junctions (AJs) in tracheal cells and might thus play a direct role in the regulation of the dynamic state of the AJ during epithelial remodeling. Our study suggests that MAGUK proteins might play important roles during AJ remodeling in epithelial morphogenesis.
最终形成果蝇气管系统的上皮管复杂网络的发育依赖于细胞迁移、细胞形状变化、细胞重排、细胞分化和分支融合。这些事件大多由不同的转录因子和细胞间信号分子共同控制,但很少有不属于这两类功能的蛋白质与气管发育相关。我们发现,MAGUK蛋白多毛类(Pyd/ZO-1),即连接蛋白ZO-1的果蝇同源物,在气管管的形成中起双重作用。pyd/ZO-1突变胚胎由于缺乏对融合细胞命运的可靠决定而表现出分支融合缺陷。此外,pyd/ZO-1突变胚胎在细气管分支中细胞插入受损。Pyd/ZO-1定位于气管细胞的黏着连接(AJs),因此可能在上皮重塑过程中对AJ的动态状态调节中起直接作用。我们的研究表明,MAGUK蛋白可能在上皮形态发生过程中的AJ重塑中起重要作用。