Clinical Physiology/Nutritional Medicine, Medical Department, Division of Gastroenterology, Infectiology and Rheumatology, Charité-Universitätsmedizin Berlin, 12203 Berlin, Germany.
Int J Mol Sci. 2021 Jul 22;22(15):7827. doi: 10.3390/ijms22157827.
Water transport in epithelia occurs transcellularly (aquaporins) and paracellularly (claudin-2, claudin-15). Recently, we showed that downregulated tricellulin, a protein of the tricellular tight junction (tTJ, the site where three epithelial cells meet), increased transepithelial water flux. We now check the hypothesis that another tTJ-associated protein, angulin-1 ( lipolysis-stimulated lipoprotein receptor, LSR) is a direct negative actuator of tTJ water permeability depending on the tightness of the epithelium. For this, a tight and an intermediate-tight epithelial cell line, MDCK C7 and HT-29/B6, were stably transfected with CRISPR/Cas9 and single-guide RNA targeting angulin-1 and morphologically and functionally characterized. Water flux induced by an osmotic gradient using 4-kDa dextran caused water flux to increase in angulin-1 KO clones in MDCK C7 cells, but not in HT-29/B6 cells. In addition, we found that water permeability in HT-29/B6 cells was not modified after either angulin-1 knockout or tricellulin knockdown, which may be related to the presence of other pathways, which reduce the impact of the tTJ pathway. In conclusion, modulation of the tTJ by knockout or knockdown of tTJ proteins affects ion and macromolecule permeability in tight and intermediate-tight epithelial cell lines, while the transepithelial water permeability was affected only in tight cell lines.
上皮细胞中的水转运既可以通过细胞旁途径(连接蛋白-2、连接蛋白-15),也可以通过跨细胞途径(水通道蛋白)。最近,我们发现下调紧密连接蛋白三连接蛋白(tTJ,即三个上皮细胞相遇的部位)可增加上皮细胞的跨上皮水通量。我们现在验证另一个 tTJ 相关蛋白——angulin-1(脂肪酶刺激的脂蛋白受体,LSR)是否是 tTJ 水通透性的直接负调控因子,这种调控依赖于上皮细胞的紧密程度。为此,我们使用 CRISPR/Cas9 和靶向 angulin-1 的单导向 RNA 对紧密和中度紧密的上皮细胞系 MDCK C7 和 HT-29/B6 进行稳定转染,并对其进行形态学和功能特征分析。用 4 kDa 葡聚糖诱导渗透压梯度,结果显示在 MDCK C7 细胞中,angulin-1 KO 克隆诱导水通量增加,但在 HT-29/B6 细胞中没有增加。此外,我们发现 HT-29/B6 细胞中的水通透性在 angulin-1 敲除或三连接蛋白敲低后没有改变,这可能与其他途径的存在有关,这些途径降低了 tTJ 途径的影响。总之,通过敲除或敲低 tTJ 蛋白调节 tTJ 会影响紧密和中度紧密上皮细胞系中离子和大分子的通透性,而跨上皮水通透性仅在紧密细胞系中受到影响。