Platelet-endothelial cell adhesion molecule-1 (PECAM-1) is a member of the immunoglobulin superfamily that is expressed at high levels on endothelial intercellular junctions and regulates transendothelial migration of leukocytes through unknown mechanisms. The investigators have recently observed that PECAM-1 engagement by antibodies results in increases in intracellular Ca++ levels in endothelial cells (EC). Since increases in Ca++ are important for many endothelial functions, including neutrophil migration across cell monolayers, the goals of this proposal are to study mechanisms how PECAM engagement regulates EC Ca++ influx and to directly test the hypothesis that PECAM mediated calcium regulation plays a role in neutrophil transmigration. To accomplish this, the investigators propose to 1) Determine the type of PECAM-1 engagement needed to trigger increase in intracellular Ca++, by engaging PECAM with a panel of epitope-mapped anti-PECAM antibodies, evaluating the role of Ab clustering, by treating cells with a soluble PECAM IgG chimera, and by using a cell-cell binding assay; 2) Define the regions in the cytoplasmic domain of PECAM required to increase Ca++, by transfecting a non-PECAM expressing cell line with a series of mutant PECAM molecules that contain truncations or mutations in the cytoplasmic domain, focusing first on the role of key tyrosine residues that undergo phosphorylation; 3) Determine mechanisms by which PECAM engagement leads to an increase in Ca++. Simultaneous patch clamping and intracellular calcium measurements in EC will define the electrophysiologic characteristics of the presumed current and allow dissection of the signaling processes interposed between engagement of PECAM and channel opening; and 4) Test the role of PECAM induced calcium signaling in an in vitro model of neutrophil transmigration in which neutrophils will migrate through monolayers of model cell lines transfected with wild type and mutant PECAM-1 cDNA's. The ability of PECAM-1 to enhance transmigration will be correlated with ability of each mutant cell line to support PECAM-mediated calcium increases. These studies will have a number of important implications for vascular biology including the identification of a potentially novel endothelial cell calcium influx pathway regulated by cell-cell interactions and a better understanding of the basic mechanisms of transendothelial leukocyte migration.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Project (R01)
Project #
2R01HL049591-06
Application #
2748032
Study Section
Pathology A Study Section (PTHA)
Project Start
1993-08-01
Project End
2002-11-30
Budget Start
1998-12-16
Budget End
1999-11-30
Support Year
6
Fiscal Year
1999
Total Cost
Indirect Cost
Name
University of Pennsylvania
Department
Internal Medicine/Medicine
Type
Schools of Medicine
DUNS #
042250712
City
Philadelphia
State
PA
Country
United States
Zip Code
19104
Gao, Cunji; Sun, Weiyong; Christofidou-Solomidou, Melpo et al. (2003) PECAM-1 functions as a specific and potent inhibitor of mitochondrial-dependent apoptosis. Blood 102:169-79
O'Brien, Christopher D; Lim, Poay; Sun, Jing et al. (2003) PECAM-1-dependent neutrophil transmigration is independent of monolayer PECAM-1 signaling or localization. Blood 101:2816-25
Ji, Guangju; O'Brien, Christopher D; Feldman, Morris et al. (2002) PECAM-1 (CD31) regulates a hydrogen peroxide-activated nonselective cation channel in endothelial cells. J Cell Biol 157:173-84
Nakada, M T; Amin, K; Christofidou-Solomidou, M et al. (2000) Antibodies against the first Ig-like domain of human platelet endothelial cell adhesion molecule-1 (PECAM-1) that inhibit PECAM-1-dependent homophilic adhesion block in vivo neutrophil recruitment. J Immunol 164:452-62
Lazaar, A L; Amrani, Y; Hsu, J et al. (1998) CD40-mediated signal transduction in human airway smooth muscle. J Immunol 161:3120-7
Christofidou-Solomidou, M; Bridges, M; Murphy, G F et al. (1997) Expression and function of endothelial cell alpha v integrin receptors in wound-induced human angiogenesis in human skin/SCID mice chimeras. Am J Pathol 151:975-83
Christofidou-Solomidou, M; Nakada, M T; Williams, J et al. (1997) Neutrophil platelet endothelial cell adhesion molecule-1 participates in neutrophil recruitment at inflammatory sites and is down-regulated after leukocyte extravasation. J Immunol 158:4872-8
Christofidou-Solomidou, M; Albelda, S M; Bennett, F C et al. (1997) Experimental production and modulation of human cytotoxic dermatitis in human-murine chimeras. Am J Pathol 150:631-9
DeLisser, H M; Christofidou-Solomidou, M; Strieter, R M et al. (1997) Involvement of endothelial PECAM-1/CD31 in angiogenesis. Am J Pathol 151:671-7
Christofidou-Solomidou, M; Longley, B J; Whitaker-Menezes, D et al. (1997) Human skin/SCID mouse chimeras as an in vivo model for human cutaneous mast cell hyperplasia. J Invest Dermatol 109:102-7

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