Laboratory of Biochemistry, Department of Biopharmaceutical Sciences, Gifu Pharmaceutical University , Gifu, Japan.
School of Food and Nutritional Sciences, University of Shizuoka , Shizuoka, Japan.
Tissue Barriers. 2021 Jan 2;9(1):1860409. doi: 10.1080/21688370.2020.1860409. Epub 2020 Dec 23.
Colonic epithelial cells move up along the crypt villus axis and are differentiated into absorptive or secretory cells. Claudin-7 (CLDN7), a tight junctional protein, is mainly located at the surface of crypt, whereas CLDN2 is located at the bottom. However, the expression mechanism and function of these CLDNs are not fully understood. The expression levels of CLDN2 and CLDN7 were altered depending on the culture days in MCE301 cells derived from mouse colon. The nuclear levels of transcriptional factors p53 and hepatocyte nuclear factor 4α (HNF4α) at day 21 were higher than those at day 7. Tenovin-1 (TEN), a p53 activator, increased the nuclear levels of p53 and HNF4α. The mRNA level and promoter activity of CLDN7 were increased by TEN, whereas those of CLDN2 were decreased. The changes of CLDNs expression were inhibited by p53 and HNF4α siRNAs. The association between p53 and HNF4α was elevated by TEN. In addition, the binding of p53 and HNF4α to the promoter region of CLDN2 and CLDN7 was enhanced by TEN. Transepithelial electrical resistance was decreased by TEN, but paracellular fluxes of lucifer yellow and dextran were not. In the Ussing chamber assay, TEN increased dilution potential and the ratio of permeability of Cl to Na. Both p53 and HNF4α were highly expressed at the surface of mouse colon crypt. We suggest that p53 and HNF4α alter the paracellular permeability of Cl to Na mediated by the inverse regulation of CLDN2 and CLDN7 expression in the colon.
结肠上皮细胞沿着隐窝绒毛轴向上移动,并分化为吸收细胞或分泌细胞。紧密连接蛋白 Claudin-7 (CLDN7) 主要位于隐窝表面,而 CLDN2 位于底部。然而,这些 CLDN 的表达机制和功能尚未完全了解。MCE301 细胞来源于小鼠结肠,其 CLDN2 和 CLDN7 的表达水平随培养天数的改变而改变。第 21 天的转录因子 p53 和肝细胞核因子 4α (HNF4α) 的核水平高于第 7 天。p53 激活剂 Tenovin-1 (TEN) 增加了 p53 和 HNF4α 的核水平。TEN 增加了 CLDN7 的 mRNA 水平和启动子活性,而降低了 CLDN2 的表达。p53 和 HNF4α siRNA 抑制了 CLDNs 表达的变化。TEN 增加了 p53 和 HNF4α 之间的结合。此外,TEN 增强了 p53 和 HNF4α 与 CLDN2 和 CLDN7 启动子区域的结合。TEN 降低了跨上皮电阻,但对 Lucifer Yellow 和右旋糖酐的细胞旁通量没有影响。在 Ussing 室测定中,TEN 增加了稀释电位和 Cl 对 Na 的通透性比值。p53 和 HNF4α 在小鼠结肠隐窝表面高度表达。我们认为 p53 和 HNF4α 通过反向调节 CLDN2 和 CLDN7 的表达改变了 Cl 对 Na 的细胞旁通透性。