Hildebrandt Anja, Pflanz Ralf, Behr Matthias, Tarp Theresa, Riedel Dietmar, Schuh Reinhard
Research Group Molecular Organogenesis, Germany.
Department of Molecular Developmental Biology, Germany.
Dev Biol. 2015 Apr 15;400(2):237-47. doi: 10.1016/j.ydbio.2015.02.008. Epub 2015 Feb 20.
Epithelial tissues separate body compartments with different compositions. Tight junctions (TJs) in vertebrates and septate junctions (SJs) in invertebrates control the paracellular flow of molecules between these compartments. This epithelial barrier function of TJs and SJs must be stably maintained in tissue morphogenesis during cell proliferation and cell movement. Here, we show that Bark beetle (Bark), a putative transmembrane scavenger receptor-like protein, is essential for the maturation but not the establishment of SJs in Drosophila. Embryos that lack bark establish functional SJs, but due to rudimentary septae formation during subsequent embryonic development, these become non-functional. Furthermore, cell adhesion is impaired at the lateral cell membrane and the core protein complexes of SJs are mis-localised, but appear to form otherwise normally in such embryos. We propose a model in which Bark acts as a scaffold protein that mediates cell adhesion and mounting of SJ core complexes during cell rearrangement in tissue morphogenesis.
上皮组织分隔具有不同成分的身体腔室。脊椎动物中的紧密连接(TJs)和无脊椎动物中的分隔连接(SJs)控制着这些腔室之间分子的细胞旁流动。在细胞增殖和细胞运动过程中的组织形态发生过程中,TJs和SJs的这种上皮屏障功能必须得到稳定维持。在这里,我们表明,树皮甲虫(Bark),一种假定的跨膜清道夫受体样蛋白,对于果蝇中SJs的成熟而非建立至关重要。缺乏bark的胚胎建立了功能性SJs,但由于在随后的胚胎发育过程中隔膜形成不完善,这些SJs变得无功能。此外,细胞间粘附在侧细胞膜处受损,SJs的核心蛋白复合物定位错误,但在这些胚胎中似乎在其他方面正常形成。我们提出了一个模型,其中Bark作为一种支架蛋白,在组织形态发生过程中的细胞重排期间介导细胞粘附和SJ核心复合物的组装。