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Ouabain induces endocytosis and degradation of tight junction proteins through ERK1/2-dependent pathways
Authors:Ruth Rincon-Heredia,David Flores-Benitez,Catalina Flores-Maldonado,José   Bonilla-Delgado,Vicky Garcí  a-Herná  ndez,Odette Verdejo-Torres,Aida M. Castillo,Isabel Larré  ,Augusto C. Poot-Herná  ndez,Martha Franco,Patricio Gariglio,José   L. Reyes,Rubé  n G. Contreras
Affiliation:1. Department of Physiology, Biophysics and Neurosciences, Center for Research and Advanced Studies (Cinvestav), Mexico City 07360, Mexico;2. Department of Pharmacology, Center for Research and Advanced Studies (Cinvestav), Mexico City 07360, Mexico;3. Department of Genetics and Molecular Biology, Center for Research and Advanced Studies (Cinvestav), Mexico City 07360, Mexico;4. Max-Planck-Institute of Molecular Cell Biology and Genetics, Dresden 01307, Germany;5. Laboratory of Genetics and Molecular Diagnosis, Research Unit, Hospital Juárez de Mexico, Mexico City 07760, Mexico;6. Department of Cellular Engineering and Biocatalysis, Institute of Biotechnology, National University of Mexico (UNAM), A. P. 510-3, Cuernavaca 62250, Morelos, Mexico;g Department of Nephrology, National Institute of Cardiology Ignacio Chávez, Mexico DF 14080, Mexico
Abstract:In addition to being a very well-known ion pump, Na+, K+-ATPase is a cell–cell adhesion molecule and the receptor of digitalis, which transduces regulatory signals for cell adhesion, growth, apoptosis, motility and differentiation. Prolonged ouabain (OUA) blockage of activity of Na+, K+-ATPase leads to cell detachment from one another and from substrates. Here, we investigated the cellular mechanisms involved in tight junction (TJ) disassembly upon exposure to toxic levels of OUA (≥300 nM) in epithelial renal canine cells (MDCK). OUA induces a progressive decrease in the transepithelial electrical resistance (TER); inhibitors of the epidermal growth factor receptor (EGFR, PD153035), cSrc (SU6656 and PP2) and ERK1/2 kinases (PD98059) delay this decrease. We have determined that the TER decrease depends upon internalization and degradation of the TJs proteins claudin (CLDN) 2, CLDN-4, occludin (OCLN) and zonula occludens-1 (ZO-1). OUA-induced degradation of proteins is either sensitive (CLDN-4, OCLN and ZO-1) or insensitive (CLDN-2) to ERK1/2 inhibition. In agreement with the protein degradation findings, OUA decreases the cellular content of ZO-1 and CLDN-2 mRNAs but surprisingly, increases the mRNA of CLDN-4 and OCLN. Changes in the mRNA levels are sensitive (CLDN-4, OCLN and ZO-1) or insensitive (CLDN-2) to ERK1/2 inhibition as well. Thus, toxic levels of OUA activate the EGFR-cSrc-ERK1/2 pathway to induce endocytosis, internalization and degradation of TJ proteins. We also observed decreases in the levels of CLDN-2 protein and mRNA, which were independent of the EGFR-cSrc-ERK1/2 pathway.
Keywords:Claudin   ZO-1   ERK1/2   cSrc   Na+, K+-ATPase
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