Division of Cell Structure, National Institute for Physiological Sciences, National Institute of Natural Sciences, Okazaki, Aichi, Japan.
Department of Physiological Sciences, The Graduate University for Advanced Studies, SOKENDAI, Okazaki, Aichi, Japan.
J Cell Biol. 2021 Sep 6;220(9). doi: 10.1083/jcb.202005062. Epub 2021 Jul 16.
Tricellular tight junctions (tTJs) are specialized tight junctions (TJs) that seal the intercellular space at tricellular contacts (TCs), where the vertices of three epithelial cells meet. Tricellulin and angulin family membrane proteins are known constituents of tTJs, but the molecular mechanism of tTJ formation remains elusive. Here, we investigated the roles of angulin-1 and tricellulin in tTJ formation in MDCK II cells by genome editing. Angulin-1-deficient cells lost the plasma membrane contact at TCs with impaired epithelial barrier function. The C terminus of angulin-1 bound to the TJ scaffold protein ZO-1, and disruption of their interaction influenced the localization of claudins at TCs, but not the tricellular sealing. Strikingly, the plasma membrane contact at TCs was formed in tricellulin- or claudin-deficient cells. These findings demonstrate that angulin-1 is responsible for the plasma membrane seal at TCs independently of tricellulin and claudins.
三细胞紧密连接(tTJs)是一种特化的紧密连接(TJs),位于三个上皮细胞的顶点相接的三细胞接触点(TCs)处,封闭细胞间隙。已知三细胞蛋白和angulin 家族膜蛋白是 tTJs 的组成部分,但 tTJ 形成的分子机制仍不清楚。在这里,我们通过基因组编辑研究了 MDCK II 细胞中 angulin-1 和 tricellulin 在 tTJ 形成中的作用。angulin-1 缺陷细胞在 TCs 处失去质膜接触,上皮屏障功能受损。angulin-1 的 C 端与 TJ 支架蛋白 ZO-1 结合,破坏它们的相互作用影响 Claudin 在 TCs 的定位,但不影响三细胞封闭。引人注目的是,在 tricellulin 或 Claudin 缺陷细胞中也形成了 TCs 处的质膜接触。这些发现表明,angulin-1 负责 TCs 处的质膜密封,独立于 tricellulin 和 Claudin。