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Published on: August 14, 2014
Molecular and cellular properties of PECAM-1 (endoCAM/CD31): a novel vascular cell-cell adhesion molecule
S M Albelda1, W A Muller, C A Buck
1Wistar Institute, Philadelphia, Pennsylvania 19104.
Insights
Platelet endothelial cell adhesion molecule-1 (PECAM-1) mediates cell-cell adhesion. This finding supports PECAM-1's role in vascular interactions like thrombosis and wound healing.
Area of Science:
- Molecular Biology
- Immunology
- Cell Biology
Background:
- Platelet endothelial cell adhesion molecule-1 (PECAM-1) is a glycoprotein found on platelets and endothelial cells.
- PECAM-1 is a member of the immunoglobulin gene superfamily.
- Previous studies suggest PECAM-1 functions as a vascular cell adhesion molecule.
Purpose of the Study:
- To evaluate the function of PECAM-1 in cell adhesion.
- To investigate PECAM-1's role in cell-cell interactions.
Main Methods:
- Transfection of COS-7, mouse 3T3, and L cells with PECAM-1 cDNA.
- Analysis of PECAM-1 expression on transfected cell surfaces.
- Observation of cell-cell junction formation and aggregation in transfected cells.
- Inhibition studies using anti-PECAM antibodies.
Main Results:
- Transfected cells expressed PECAM-1 on their surface.
- PECAM-1 localized to cell-cell junctions in COS-7 and 3T3 transfectants.
- Stable PECAM-1 transfectants exhibited calcium-dependent aggregation.
- Anti-PECAM antibodies inhibited cell aggregation.
Conclusions:
- PECAM-1 actively mediates cell-cell adhesion.
- PECAM-1 is involved in vascular processes such as thrombosis, wound healing, and angiogenesis.
Abstract:
PECAM-1 is a 130-120-kD integral membrane glycoprotein found on the surface of platelets, at endothelial intercellular junctions in culture, and on cells of myeloid lineage. Previous studies have shown that it is a member of the immunoglobulin gene superfamily and that antibodies against the bovine form of this protein (endoCAM) can inhibit endothelial cell-cell interactions. These data suggest that PECAM-1 may function as a vascular cell adhesion molecule. The function of this molecule has been further evaluated by transfecting cells with a full-length PECAM-1 cDNA. Transfected COS-7, mouse 3T3 and L cells expressed a 130-120-kD glycoprotein on their cell surface that reacted with anti-PECAM-1 polyclonal and monoclonal antibodies. COS-7 and 3T3 cell transfectants formed cell-cell junctions that were highly enriched in PECAM-1, reminiscent of its distribution at endothelial cell-cell borders. In contrast, this protein remained diffusely distributed within the plasma membrane of PECAM-1 transfected cells that were in contact with mock transfectants. Mouse L cells stably transfected with PECAM-1 demonstrated calcium-dependent aggregation that was inhibited by anti-PECAM antibodies. These results demonstrate that PECAM-1 mediates cell-cell adhesion and support the idea that it may be involved in some of the interactive events taking place during thrombosis, wound healing, and angiogenesis.
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