Deligiannaki Myrto, Casper Abbie L, Jung Christophe, Gaul Ulrike
Gene Center, Department of Biochemistry, Center of Protein Science CIPSM, Ludwigs-Maximilians University, Feodor-Lynen-Str. 25, Munich 81377, Germany.
Gene Center, Department of Biochemistry, Center of Protein Science CIPSM, Ludwigs-Maximilians University, Feodor-Lynen-Str. 25, Munich 81377, Germany
Development. 2015 Sep 1;142(17):3046-57. doi: 10.1242/dev.119412.
Epithelial sheets play essential roles as selective barriers insulating the body from the environment and establishing distinct chemical compartments within it. In invertebrate epithelia, septate junctions (SJs) consist of large multi-protein complexes that localize at the apicolateral membrane and mediate barrier function. Here, we report the identification of two novel SJ components, Pasiflora1 and Pasiflora2, through a genome-wide glial RNAi screen in Drosophila. Pasiflora mutants show permeable blood-brain and tracheal barriers, overelongated tracheal tubes and mislocalization of SJ proteins. Consistent with the observed phenotypes, the genes are co-expressed in embryonic epithelia and glia and are required cell-autonomously to exert their function. Pasiflora1 and Pasiflora2 belong to a previously uncharacterized family of tetraspan membrane proteins conserved across the protostome-deuterostome divide. Both proteins localize at SJs and their apicolateral membrane accumulation depends on other complex components. In fluorescence recovery after photobleaching experiments we demonstrate that pasiflora proteins are core SJ components as they are required for complex formation and exhibit restricted mobility within the membrane of wild-type epithelial cells, but rapid diffusion in cells with disrupted SJs. Taken together, our results show that Pasiflora1 and Pasiflora2 are novel integral components of the SJ and implicate a new family of tetraspan proteins in the function of these ancient and crucial cell junctions.
上皮细胞层作为选择性屏障,在使身体与外界环境隔绝并在体内建立不同化学区室方面发挥着重要作用。在无脊椎动物上皮中,分隔连接(SJs)由定位在顶端外侧膜并介导屏障功能的大型多蛋白复合物组成。在此,我们报告通过在果蝇中进行全基因组胶质RNA干扰筛选,鉴定出两个新的SJ成分,西番莲1(Pasiflora1)和西番莲2(Pasiflora2)。西番莲突变体表现出可渗透的血脑屏障和气管屏障、气管管过度伸长以及SJ蛋白定位错误。与观察到的表型一致,这些基因在胚胎上皮和胶质细胞中共表达,并且需要细胞自主发挥其功能。西番莲1和西番莲2属于一个以前未被表征的四跨膜蛋白家族,在原口动物 - 后口动物分化中保守。这两种蛋白都定位在SJs处,它们在顶端外侧膜的积累依赖于其他复合物成分。在光漂白后荧光恢复实验中,我们证明西番莲蛋白是SJ的核心成分,因为它们是复合物形成所必需的,并且在野生型上皮细胞的膜内表现出受限的流动性,但在SJ破坏的细胞中快速扩散。综上所述,我们的结果表明西番莲1和西番莲2是SJ的新的整合成分,并表明一个新的四跨膜蛋白家族参与了这些古老而关键的细胞连接的功能。