Wasserscheid Isabel, Thomas Ulrich, Knust Elisabeth
Institut für Genetik, Heinrich-Heine-Universität Düsseldorf, Düsseldorf, Germany.
Dev Dyn. 2007 Apr;236(4):1064-71. doi: 10.1002/dvdy.21089.
Epithelia display two types of polarity, apical-basal and planar cell polarity (PCP), and both are crucial for morphogenesis and organogenesis. PCP signaling pathways comprise transmembrane proteins, such as Flamingo/Starry Night, and cytoplasmic, membrane-associated proteins such as Dishevelled. During establishment of PCP in the Drosophila wing, PCP proteins accumulate apically in distinct "cortical domains" on proximal and distal plasma membranes. This finding suggests that their localized function depends on prior definition of apicobasal polarity. Here, we show that overexpression of Bazooka, a PDZ-domain protein essential for apicobasal polarity in the embryo, perturbs development of PCP, but has no effect on apicobasal polarity. The PCP phenotype is associated with a failure to restrict Flamingo/Starry night to the proximal and distal plasma membranes of the wing epithelium. We further demonstrate that flamingo expresses two differentially spliced RNAs in wing imaginal discs, which encode two isoforms of the atypical cadherin Flamingo. The predominant Starry night-type form contains a PDZ-binding motif, which mediates binding to Bazooka in vitro. Pull-down assays support the occurrence of such an interaction in wing imaginal discs. The results suggest that interaction between the apicobasal and planar cell polarity systems has to be tightly coordinated to ensure proper morphogenesis of the wing disc epithelium.
上皮组织表现出两种极性类型,即顶 - 基极性和平面细胞极性(PCP),这两种极性对于形态发生和器官发生都至关重要。PCP信号通路包括跨膜蛋白,如Flamingo/Starry Night,以及细胞质、膜相关蛋白,如Dishevelled。在果蝇翅膀PCP建立过程中,PCP蛋白在近端和远端质膜上不同的“皮质结构域”顶端积累。这一发现表明它们的局部功能依赖于顶 - 基极性的预先定义。在这里,我们表明,Bazooka的过表达会干扰PCP的发育,Bazooka是胚胎中顶 - 基极性所必需的一种PDZ结构域蛋白,但对顶 - 基极性没有影响。PCP表型与无法将Flamingo/Starry night限制在翅膀上皮的近端和远端质膜有关。我们进一步证明,flamingo在翅成虫盘表达两种差异剪接的RNA,它们编码非典型钙黏蛋白Flamingo的两种异构体。主要的Starry night型形式包含一个PDZ结合基序,该基序在体外介导与Bazooka的结合。下拉实验支持在翅成虫盘中存在这种相互作用。结果表明,顶 - 基极性和平面细胞极性系统之间的相互作用必须紧密协调,以确保翅成虫盘上皮的正常形态发生。