Bit-Avragim Nana, Hellwig Nicole, Rudolph Franziska, Munson Chantilly, Stainier Didier Y S, Abdelilah-Seyfried Salim
Max Delbrück Center for Molecular Medicine, Berlin, Germany.
J Cell Sci. 2008 Aug 1;121(Pt 15):2503-10. doi: 10.1242/jcs.033167. Epub 2008 Jul 15.
The zebrafish MAGUK protein Nagie oko is a member of the evolutionarily conserved Crumbs protein complex and functions as a scaffolding protein involved in the stabilization of multi-protein assemblies at the tight junction. During zebrafish embryogenesis, mutations in nagie oko cause defects in both epithelial polarity and cardiac morphogenesis. We used deletion constructs of Nagie oko in functional rescue experiments to define domains essential for cell polarity, maintenance of epithelial integrity and cardiac morphogenesis. Inability of Nagie oko to interact with Crumbs proteins upon deletion of the PDZ domain recreates all aspects of the nagie oko mutant phenotype. Consistent with this observation, apical localization of Nagie oko within the myocardium and neural tube is dependent on Oko meduzy/Crumbs2a. Disruption of direct interactions with Patj or Lin-7, two other members of the Crumbs protein complex, via the bipartite L27 domains produces only partial nagie oko mutant phenotypes and does not impair correct junctional localization of the truncated Nagie oko deletion protein within myocardial cells. Similarly, loss of the evolutionarily conserved region 1 domain, which mediates binding to Par6, causes only a subset of the nagie oko mutant epithelial phenotypes. Finally, deletion of the C-terminus, including the entire guanylate kinase and the SH3 domains, renders the truncated Nagie oko protein inactive and recreates all features of the nagie oko mutant phenotype when tested in functional complementation assays. Our observations reveal a previously unknown diversity of alternative multi-protein assembly compositions of the Crumbs-Nagie-oko and Par6-aPKC protein complexes that are highly dependent on the developmental context.
斑马鱼MAGUK蛋白Nagie oko是进化上保守的Crumbs蛋白复合物的成员,作为一种支架蛋白,参与紧密连接处多蛋白组装体的稳定。在斑马鱼胚胎发育过程中,nagie oko的突变导致上皮极性和心脏形态发生缺陷。我们在功能挽救实验中使用Nagie oko的缺失构建体来定义细胞极性、上皮完整性维持和心脏形态发生所必需的结构域。删除PDZ结构域后,Nagie oko无法与Crumbs蛋白相互作用,重现了nagie oko突变体表型的所有方面。与这一观察结果一致,Nagie oko在心肌和神经管内的顶端定位依赖于Oko meduzy/Crumbs2a。通过二分L27结构域破坏与Crumbs蛋白复合物的另外两个成员Patj或Lin-7的直接相互作用,仅产生部分nagie oko突变体表型,并且不会损害截短的Nagie oko缺失蛋白在心肌细胞内的正确连接定位。同样,介导与Par6结合的进化保守区域1结构域的缺失,仅导致nagie oko突变体上皮表型的一部分。最后,删除C末端,包括整个鸟苷酸激酶和SH3结构域,使截短的Nagie oko蛋白失活,并在功能互补试验中测试时重现了nagie oko突变体表型的所有特征。我们的观察结果揭示了Crumbs-Nagie-oko和Par6-aPKC蛋白复合物以前未知的多种替代多蛋白组装组成的多样性,这些多样性高度依赖于发育背景。