Piezo1 regulates intestinal epithelial function by affecting the tight junction protein claudin-1 via the ROCK pathway

Y Jiang, J Song, Y Xu, C Liu, W Qian, T Bai, X Hou - Life Sciences, 2021 - Elsevier
Y Jiang, J Song, Y Xu, C Liu, W Qian, T Bai, X Hou
Life Sciences, 2021Elsevier
Abstract Aims Defective tight junctions (TJs) can induce intestinal epithelial dysfunction,
which participates in various diseases such as irritable bowel syndrome. However, the
mechanisms of TJ defects remain unclear. Our study revealed the role of Piezo1 in
regulating intestinal epithelial function and TJs. Materials and methods The human colonic
adenocarcinoma cell line Caco-2 were cultured on Transwell plate to form an epithelial
barrier in vitro, and Piezo1 expression was manipulated using a lentivirus vector. Epithelial …
Aims
Defective tight junctions (TJs) can induce intestinal epithelial dysfunction, which participates in various diseases such as irritable bowel syndrome. However, the mechanisms of TJ defects remain unclear. Our study revealed the role of Piezo1 in regulating intestinal epithelial function and TJs.
Materials and methods
The human colonic adenocarcinoma cell line Caco-2 were cultured on Transwell plate to form an epithelial barrier in vitro, and Piezo1 expression was manipulated using a lentivirus vector. Epithelial function was evaluated by measuring transepithelial electronic resistance (TEER) and 4-kDa FITC-dextran (FD4) transmission. TJ proteins (claudin-1, occludin, ZO-1) were evaluated by RT-PCR, western blot, and immunostaining analysis. Potential signal pathways, including the ROCK and Erk pathways, were detected. Moreover, to explore the regulatory effect of Piezo1 activity on epithelial function, inhibitors (ruthenium red, GsMTx4) and an agonist (Yoda1) were introduced both ex vivo and in vitro.
Key findings
Alteration of Piezo1 expression altered epithelial function and the expression of the tight junction protein claudin-1. Piezo1 expression regulated phosphorylated ROCK1/2 expression, whereas interference on ROCK1/2 prevented the regulation of claudin-1 by Piezo1. In both Caco-2 monolayer and mouse colon epithelium, Piezo1 activity directly modulated epithelial function and permeability.
Significance
Piezo1 negatively regulates epithelial barrier function by affecting the expression of claudin-1. Such regulation may be achieved partially via the ROCK1/2 pathway. Moreover, activating Piezo1 can induce epithelial dysfunction.
Elsevier