Endothelial adhesion molecule ESAM binds directly to the multidomain adaptor MAGI-1 and recruits it to cell contacts

F Wegmann, K Ebnet, L Du Pasquier… - Experimental cell …, 2004 - Elsevier
F Wegmann, K Ebnet, L Du Pasquier, D Vestweber, S Butz
Experimental cell research, 2004Elsevier
Endothelial cell-selective adhesion molecule (ESAM) is an immunoglobulin-like
transmembrane protein associated with endothelial tight junctions (TJ). Based on a yeast
two-hybrid screen, we have identified the membrane-associated guanylate kinase protein
MAGI-1 as an intracellular binding partner of ESAM. MAGI-1 is a multidomain adaptor
protein, which binds to transmembrane, cytoskeletal, and signaling molecules, and has
been localized to tight junctions in epithelial cells. MAGI-1 associates with the very C …
Endothelial cell-selective adhesion molecule (ESAM) is an immunoglobulin-like transmembrane protein associated with endothelial tight junctions (TJ). Based on a yeast two-hybrid screen, we have identified the membrane-associated guanylate kinase protein MAGI-1 as an intracellular binding partner of ESAM. MAGI-1 is a multidomain adaptor protein, which binds to transmembrane, cytoskeletal, and signaling molecules, and has been localized to tight junctions in epithelial cells. MAGI-1 associates with the very C-terminal sequence of ESAM most likely through a PDZ domain-mediated interaction. The direct interaction between ESAM and MAGI-1 was confirmed by pull-down experiments. The two proteins formed stable complexes in transfected Chinese hamster ovary (CHO) cells, which could be immunoisolated. We found MAGI-1 to be associated with cell–cell contacts in human umbilical vein endothelial cells (HUVECs) and in mouse endothelium, where it colocalizes with ESAM. In CHO cells, recruitment of MAGI-1 to cell contacts required the presence of ESAM. Hence, ESAM may be involved in anchoring MAGI-1 at endothelial tight junctions.
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