Hang Lam Li, Kam Ho-Mok, Arthur Verhoeven, Ronald Oude Elferink
While cAMP is a major intracellular messenger, studies on modulating effects of cAMP on tight junctions in epithelial cells are very limited. In this study, we characterized a bidirectional and prominent regulation of the tight junction by soluble adenylyl cyclase (sAC) in human intestinal epithelial (Caco2Bbe1) cells. Pharmacological inhibition and knockdown of sAC substantially increased TEER, while overexpression of sAC reciprocally decreased TEER. Mechanistically, EPAC1 was the sole cAMP effector responsible for the regulation of TEER by sAC. Pharmacological inhibition or knockdown of sAC as well as inhibition of EPAC1 resulted in increased protein expression of claudin-4, and again, with a reciprocal decrease of claudin-4 protein expression upon sAC overexpression. These interventions did not affect paracellular lucifer yellow permeability. sAC inhibition also induced p-ERK protein expression. While the ERK inhibitor, SCH772984, decreased TEER, ERK did not seem to be involved in the regulation of claudin-4 expression via sAC. Concluding from these data, sAC activity exerts a prominent bidirectional control over the ionic permeability of tight junctions in Caco2Bbe1 monolayers by regulating claudin-4 protein expression via EPAC1. This suggests a pivotal role of sAC in modulation of tight junctions in human intestinal epithelial cells, and proposes a molecular mechanism by which cAMP modulate tight junctions.