Stein Laura, Brunner Nora, Amasheh Salah
Institute of Veterinary Physiology, Department of Veterinary Medicine, Freie Universität Berlin, 14163 Berlin, Germany.
Membranes (Basel). 2022 Jul 23;12(8):731. doi: 10.3390/membranes12080731.
The epithelial barrier is crucial for proper gastrointestinal function, preventing the unwanted passage of solutes and therefore representing a prerequisite for vectorial transport. Claudin-4 and claudin-18.2, two critical tight junction proteins of the gastric epithelium, seal neighboring cells in a physically and mechanically challenging environment. As the oocyte allows the functional and molecular analyses of claudin interaction, we have addressed the hypothesis that this interaction is not only dependent on mechanical force but also on pH. We expressed human claudin-4 and claudin-18 in oocytes, and analyzed them in a two-cell model approach. Cells were clustered in pairs to form contact areas expressing CLDN18 + CLDN18, CLDN4/18 + CLDN4/18, and compared to controls, respectively. Contact areas in cells incubated in medium at pH 5.5 and 7.4 were quantified by employing transmitted light microscopy. After 24 h at pH 5.5, clustering of CLDN18 + CLDN18 and CLDN4/18 + CLDN4/18-expressing oocytes revealed a contact area reduced by 45% and 32%, compared with controls, respectively. A further approach, high-pressure impulse assay, revealed a stronger tight junction interaction at pH 5.5 in oocyte pairs expressing CLDN18 + CLDN18 or CLDN4/18 + CLDN4/18 indicating a protective role of claudin-18 for tight junction integrity during pH challenge. Thus, our current analysis of gastric tight junction proteins further establishes oocytes as an expression and two-cell screening model for tight junction integrity analysis of organ- and tissue-specific claudins by the characterization of homo- and heterophilic -interaction dependent on barrier effectors.
上皮屏障对于胃肠道的正常功能至关重要,它可防止溶质的不必要通过,因此是向量运输的先决条件。Claudin-4和Claudin-18.2是胃上皮细胞中两种关键的紧密连接蛋白,在物理和机械挑战性环境中封闭相邻细胞。由于卵母细胞可进行Claudin相互作用的功能和分子分析,我们探讨了这样一种假说,即这种相互作用不仅依赖于机械力,还依赖于pH值。我们在卵母细胞中表达了人Claudin-4和Claudin-18,并采用双细胞模型方法对其进行分析。细胞成对聚集以形成表达CLDN18 + CLDN18、CLDN4/18 + CLDN4/18的接触区域,并分别与对照进行比较。通过透射光显微镜对在pH 5.5和7.4培养基中孵育的细胞中的接触区域进行定量。在pH 5.5下培养24小时后,表达CLDN18 + CLDN18和CLDN4/18 + CLDN4/18的卵母细胞的聚集显示,与对照相比,接触区域分别减少了45%和32%。另一种方法,高压脉冲试验,显示在表达CLDN18 + CLDN18或CLDN4/18 + CLDN4/18的卵母细胞对中,pH 5.5时紧密连接相互作用更强,表明Claudin-18在pH挑战期间对紧密连接完整性具有保护作用。因此,我们目前对胃紧密连接蛋白的分析进一步将卵母细胞确立为一种表达和双细胞筛选模型,用于通过表征依赖于屏障效应器的同型和异型相互作用来分析器官和组织特异性Claudin的紧密连接完整性。