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Dual interaction of JAM-C with JAM-B and alpha(M)beta2 integrin: function in junctional complexes and leukocyte adhesion

Authors :
Chrystelle Lamagna
Robert J.C. Gilbert
Beat A. Imhof
E. Yvonne Jones
Pilar Ruga
Friedemann Kiefer
Guillaume Mandicourt
Michel Aurrand-Lions
James Brown
Paolo Meda
Source :
Molecular Biology of the Cell, Vol. 16, No 10 (2005) pp. 4992-5003
Publication Year :
2005

Abstract

The junctional adhesion molecules (JAMs) have been recently described as interendothelial junctional molecules and as integrin ligands. Here we show that JAM-B and JAM-C undergo heterophilic interaction in cell-cell contacts and that JAM-C is recruited and stabilized in junctional complexes by JAM-B. In addition, soluble JAM-B dissociates soluble JAM-C homodimers to form JAM-B/JAM-C heterodimers. This suggests that the affinity of JAM-C monomers to form dimers is higher for JAM-B than for JAM-C. Using antibodies against JAM-C, the formation of JAM-B/JAM-C heterodimers can be abolished. This liberates JAM-C from its vascular binding partner JAM-B and makes it available on the apical side of vessels for interaction with its leukocyte counterreceptor αMβ2integrin. We demonstrate that the modulation of JAM-C localization in junctional complexes is a new regulatory mechanism for αMβ2-dependent adhesion of leukocytes.

Details

ISSN :
10591524
Volume :
16
Issue :
10
Database :
OpenAIRE
Journal :
Molecular biology of the cell
Accession number :
edsair.doi.dedup.....db63f164f3e429681cf5bd888316462a