[No authors listed]
Tryptase exacerbates intestinal ischemia-reperfusion injury, however, the direct role of tryptase in intestinal mucosal injury and the underlying mechanism remains largely unknown. Protease-activated receptor 2 (PARâ2), commonly activated by tryptase, interacts with various adaptor proteins, including βâarrestinâ2. The present study aimed to determine whether tryptase is capable of inducing intestinal mucosal cell injury via PARâ2 activation and to define the role of βâarrestinâ2 in the process of injury. The IECâ6 rat intestinal epithelial cell line was challenged by tryptase stimulation. Cell viability, lactate dehydrogenase (LDH) activity and apoptosis were analyzed to determine the severity of cell injury. Injury was also evaluated following treatments with specific PARâ2 and extracellular signalârelated kinases (ERK) inhibitors, and knockdown of βâarrestinâ2. PARâ2, ERK and βâarrestinâ2 protein expression levels were evaluated. Tryptase treatment (100 and 1,000 ng/ml) resulted in IECâ6 cell injury, as demonstrated by significant reductions in cell viability, accompanied by concomitant increases in LDH activity and levels of cleaved caspaseâ3 protein expression. Furthermore, tryptase treatment led to a marked increase in PARâ2 and phosphorylatedâERK expression, and exposure to specific PARâ2 and ERK inhibitors eliminated the changes induced by tryptase. Knockdown of βâarrestinâ2 blocked tryptaseâmediated cell injury, whereas tryptase exerted no influence on βâarrestinâ2 expression in IECâ6 cells. These data indicate that tryptase may directly damage IECâ6 cells via PAR-2 and the downstream activation of ERK, and demonstrate that the signaling pathway requires β-arrestin-2.
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