Max-Planck-Institute of Molecular Cell Biology and Genetics, 01307-Dresden, Germany.
G3 (Bethesda). 2013 Feb;3(2):153-65. doi: 10.1534/g3.112.005074. Epub 2013 Feb 1.
The evolutionarily conserved transmembrane protein Crumbs is required for epithelial polarity and morphogenesis in the embryo, control of tissue size in imaginal discs and morphogenesis of photoreceptor cells, and prevents light-dependent retinal degeneration. The small cytoplasmic domain contains two highly conserved regions, a FERM (i.e., protein 4.1/ezrin/radixin/moesin)-binding and a PDZ (i.e., postsynaptic density/discs large/ZO-1)-binding domain. Using a fosmid-based transgenomic approach, we analyzed the role of the two domains during invagination of the tracheae and the salivary glands in the Drosophila embryo. We provide data to show that the PDZ-binding domain is essential for the maintenance of cell polarity in both tissues. In contrast, in embryos expressing a Crumbs protein with an exchange of a conserved Tyrosine residue in the FERM-binding domain to an Alanine, both tissues are internalized, despite some initial defects in apical constriction, phospho-Moesin recruitment, and coordinated invagination movements. However, at later stages these embryos fail to undergo dorsal closure, germ band retraction, and head involution. In addition, frequent defects in tracheal fusion were observed. These results suggest stage and/or tissue specific binding partners. We discuss the power of this fosmid-based system for detailed structure-function analyses in comparison to the UAS/Gal4 system.
进化上保守的跨膜蛋白 Crumbs 对于胚胎上皮极性和形态发生、成虫盘组织大小的控制和光感受器细胞的形态发生以及防止光依赖性视网膜变性是必需的。小胞质域包含两个高度保守的区域,一个 FERM(即蛋白 4.1/埃兹林/radixin/moesin)结合域和一个 PDZ(即突触后密度/discs 大/ZO-1)结合域。我们使用基于 fosmid 的转基因组方法分析了这两个结构域在果蝇胚胎气管和唾液腺内陷过程中的作用。我们提供的数据表明,PDZ 结合域对于这两种组织中细胞极性的维持是必需的。相比之下,在表达 FERM 结合域中保守的酪氨酸残基被丙氨酸取代的 Crumbs 蛋白的胚胎中,尽管在顶端收缩、磷酸化-Moesin 募集和协调的内陷运动中存在一些初始缺陷,但两种组织都被内陷。然而,在后期这些胚胎不能进行背侧闭合、生殖带回缩和头部内卷。此外,经常观察到气管融合缺陷。这些结果表明存在阶段和/或组织特异性的结合伴侣。我们讨论了与 UAS/Gal4 系统相比,这种基于 fosmid 的系统在详细的结构-功能分析中的优势。