Regulation of vascular endothelial barrier function by Epac, a cAMP-activated exchange factor for Rap GTPase

Xavier Culleré(Brigham and Women's Hospital), Sunil K. Shaw(Brigham and Women's Hospital), Lorna P. Andersson(Brigham and Women's Hospital), Junichi Hirahashi(Brigham and Women's Hospital), Francis W. Luscinskas(Brigham and Women's Hospital), Tanya N. Mayadas(Brigham and Women's Hospital)
Blood
September 17, 2004
Cited by 362Open Access
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Abstract

Endothelial cell-cell junctional proteins and cortical actin are of central importance for regulating vascular permeability. Rap1, a member of the Ras family of GTPases, is enriched at endothelial cell-cell contacts and activated by cyclic AMP (cAMP) through a PKA-independent pathway. Activation of a cAMP-inducible guanine-exchange factor for Rap, Epac, results in markedly enhanced basal endothelial barrier function by increasing cortical actin and subsequent redistribution of adherens and tight junctional molecules to cell-cell contacts. Activation of Epac also counteracts thrombin-induced hyperpermeability through down-regulation of Rho GTPase activation, suggesting cross-talk between Rap and Rho GT-Pases. Thus, Epac/Rap activation represents a new pathway for regulating endothelial cell barrier function.


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