Institute of Biochemistry II, Jena University Hospital, Nonnenplan 2, 07743, Jena, Germany.
Cell Mol Life Sci. 2010 Jun;67(12):2057-68. doi: 10.1007/s00018-010-0313-y. Epub 2010 Mar 7.
Sealing of the paracellular cleft by tight junctions is of central importance for epithelia and endothelia to function as efficient barriers between the extracellular space and the inner milieu. Occludin and claudins represent the major tight junction components involved in establishing this barrier function. A special situation emerges at sites where three cells join together. Tricellulin, a recently identified tetraspan protein concentrated at tricellular contacts, was reported to organize tricellular as well as bicellular tight junctions. Here we show that in MDCK cells, the tricellulin C-terminus is important for the basolateral translocation of tricellulin, whereas the N-terminal domain appears to be involved in directing tricellulin to tricellular contacts. In this respect, identification of homomeric tricellulin-tricellulin and of heteromeric tricellulin-occludin complexes extends a previously published model and suggests that tricellulin and occludin are transported together to the edges of elongating bicellular junctions and get separated when tricellular contacts are formed.
紧密连接封闭细胞旁间隙对于上皮组织和内皮组织在细胞外空间和内环境之间形成有效的屏障至关重要。封闭蛋白和闭合蛋白是参与建立这种屏障功能的主要紧密连接成分。在三个细胞连接在一起的部位会出现特殊情况。最近在三细胞接触点集中发现的四跨膜蛋白 tricellulin 被报道能够组织三细胞和双细胞紧密连接。在这里,我们表明在 MDCK 细胞中,tricellulin 的 C 末端对于其基底外侧易位很重要,而 N 末端结构域似乎参与将 tricellulin 引导至三细胞接触点。在这方面,同源三聚体 tricellulin-tricellulin 和异源三聚体 tricellulin-occludin 复合物的鉴定扩展了先前发表的模型,并表明 tricellulin 和 occludin 一起被运输到延长的双细胞连接处的边缘,并且在形成三细胞接触时被分离。