Cho Yuma, Taniguchi Akari, Kubo Akiharu, Ikenouchi Junichi
Department of Biochemistry, Kyushu University Graduate School of Medical Sciences, Fukuoka, Japan.
Division of Dermatology, Department of Internal Related, Graduate School of Medicine, Kobe University, Kobe, Japan.
Elife. 2025 Jul 24;13:RP102794. doi: 10.7554/eLife.102794.
The epithelial cell sheet maintains its integrity as a barrier while undergoing turnover of constituent cells. To sustain the barrier continuously, it's essential to preserve the 'old' tight junctions (TJs) between cells being excluded from the sheet and their neighbors while simultaneously forming de novo TJs between newly adjacent cells. However, the molecular mechanisms involved in the formation of de novo TJs remain largely unknown. This study investigates two scenarios: the formation of de novo TJs during the removal of apoptotic cells from mouse monolayer epithelial sheets and during the differentiation of the granular layer in mouse stratified epidermis. We revealed that rapid claudin assembly is achieved by actively regulating the dissociation of the EpCAM/TROP2-claudin complex in both situations. Furthermore, we found that the Rho-ROCK pathway initiates the activation of matriptase, which cleaves EpCAM/TROP2, resulting in the supply of polymerizable claudin from the stockpiled EpCAM/TROP2-claudin complex at the plasma membrane to induce rapid de novo TJ formation.
上皮细胞层在经历组成细胞更新时,作为屏障维持其完整性。为了持续维持屏障功能,在将细胞从细胞层中排除时,保持被排除细胞与其相邻细胞之间的“旧”紧密连接(TJ),同时在新相邻细胞之间形成新生TJ至关重要。然而,新生TJ形成所涉及的分子机制在很大程度上仍不清楚。本研究调查了两种情况:从小鼠单层上皮细胞层中清除凋亡细胞期间以及小鼠分层表皮颗粒层分化期间新生TJ的形成。我们发现,在这两种情况下,通过积极调节EpCAM/TROP2-闭合蛋白复合物的解离,可实现快速的闭合蛋白组装。此外,我们发现Rho-ROCK途径启动了matriptase的激活,matriptase裂解EpCAM/TROP2,从而从质膜上储存的EpCAM/TROP2-闭合蛋白复合物中提供可聚合的闭合蛋白,以诱导快速新生TJ形成。