In tight junctions, claudins regulate the interactions between occludin, tricellulin and marvelD3, which, inversely, modulate claudin oligomerization

Author:

Cording Jimmi1,Berg Johanna1,Käding Nadja1,Bellmann Christian1,Tscheik Christian1,Westphal Julie K.2,Milatz Susanne3,Günzel Dorothee3,Wolburg Hartwig4,Piontek Jörg1,Huber Otmar2,Blasig Ingolf Ernst1

Affiliation:

1. Leibniz-Institut für Molekulare Pharmakologie, Robert-Rössle-Str. 10, 13125 Berlin, Germany

2. Institute of Biochemistry II, Jena University Hospital, Nonnenplan 2, 07743 Jena, Germany

3. Institut für Klinische Physiologie CBF, Charité, Freie Universität und Humboldt-Universität, Berlin

4. Institute of Pathology and Neuropathology, Department of General Pathology, University of Tübingen, Medical School Tübingen, 72076 Germany

Abstract

Summary Tight junctions seal the paracellular cleft of epithelia and endothelia, form vital barriers between tissue compartments and consist of tight-junction-associated marvel proteins (TAMPs) and claudins. The function of TAMPs and the interaction with claudins are not understood. We therefore investigated the binding between the TAMPs occludin, tricellulin, and marvelD3 and their interaction with claudins in living tight-junction-free human embryonic kidney-293 cells. In contrast to claudins and occludin, tricellulin and marvelD3 showed no enrichment at cell–cell contacts indicating lack of homophilic trans-interaction between two opposing cell membranes. However, occludin, marvelD3 and tricellulin exhibited homophilic cis-interactions, along one plasma membrane, as measured by fluorescence resonance energy transfer. MarvelD3 also cis-interacted with occludin and tricellulin heterophilically. Classic claudins, such as claudin-1 to -5 may show cis-oligomerization with TAMPs, whereas the non-classic claudin-11 did not. Claudin-1 and -5 improved enrichment of occludin and tricellulin at cell–cell contacts. The low mobile claudin-1 reduced the membrane mobility of the highly mobile occludin and tricellulin, as studied by fluorescence recovery after photobleaching. Co-transfection of claudin-1 with TAMPs led to changes of the tight junction strand network of this claudin to a more physiological morphology, depicted by freeze-fracture electron microscopy. The results demonstrate multilateral interactions between the tight junction proteins, in which claudins determine the function of TAMPs and vice versa, and provide deeper insights into the tight junction assembly.

Publisher

The Company of Biologists

Subject

Cell Biology

Reference41 articles.

1. Claudin-2 expression induces cation-selective channels in tight junctions of epithelial cells.;Amasheh;J. Cell Sci.,2002

2. Assembly of tight junction is regulated by the antagonism of conventional and novel protein kinase C isoforms.;Andreeva;Int. J. Biochem. Cell Biol.,2006

3. Biology of claudins.;Angelow;Am. J. Physiol. Renal Physiol.,2008

4. The hinge region of the scaffolding protein of cell contacts, zonula occludens protein 1, regulates interacting with various signaling proteins.;Bal;J. Cell. Biochem.,2012

5. MAPK interacts with occludin and mediates EGF-induced prevention of tight junction disruption by hydrogen peroxide.;Basuroy;Biochem. J.,2006

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