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Am J Physiol Cell Physiol 292: C2070-C2083, 2007; doi:10.1152/ajpcell.00489.2006
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EXTRACELLULAR MATRIX, CELL INTERACTIONS

PECAM-1 isoform-specific regulation of kidney endothelial cell migration and capillary morphogenesis

Shuji Kondo,1 Elizabeth A. Scheef,2 Nader Sheibani,2,3 and Christine M. Sorenson1

Departments of 1Pediatrics, 2Ophthalmology and Visual Sciences, and 3Pharmacology, University of Wisconsin School of Medicine and Public Health, Madison, Wisconsin

Submitted 15 September 2006 ; accepted in final form 1 February 2007

Platelet endothelial cell adhesion molecule-1 (PECAM-1) has been implicated in angiogenesis through its involvement in endothelial cell-cell and cell-matrix interactions and signal transduction. Recent studies indicate that the cytoplasmic domain of PECAM-1 plays an important role in its cell adhesive and signaling properties. However, the role PECAM-1 isoforms play during angiogenic events such as cell adhesion and migration requires further delineation. To gain insight into the role PECAM-1 plays during vascular development and angiogenesis, we examined the expression pattern of PECAM-1 isoforms during kidney vascularization. We show that multiple isoforms of PECAM-1 are expressed during renal vascular development with different frequencies. The PECAM-1 that lacks exons 14 and 15 ({Delta}14&15) was the predominant isoform detected in the renal vasculature. To further study PECAM-1 isoform-specific functions we isolated kidney endothelial cells (EC) from wild-type and PECAM-1-deficient (PECAM-1–/–) mice with B4-lectin-coated magnetic beads. PECAM-1–/– kidney EC showed reduced migration, inability to undergo capillary morphogenesis in Matrigel, dense peripheral focal adhesions, and peripheral cortical actin distribution compared with wild-type cells. PECAM-1–/– kidney EC secreted increased amounts of fibronectin and decreased amounts of tenascin-C and thrombospondin-1. Reexpression of {Delta}14&15, but not full-length, PECAM-1 in PECAM-1–/– kidney EC restored cell migration and capillary morphogenesis defects. Thus PECAM-1 may regulate the adhesive and migratory properties of kidney EC in an isoform-specific fashion through modulation of integrin activity and extracellular matrix protein expression. Our results indicate that regulated expression of specific PECAM-1 isoforms may enable EC to accommodate the different stages of angiogenesis.

CD31; alternative splicing; angiogenesis; integrins; extracellular matrix



Address for reprint requests and other correspondence: C. M. Sorenson, Univ. of Wisconsin School of Medicine and Public Health, Dept. of Pediatrics, 600 Highland Ave., H4/444 CSC, Madison, WI 53792-4108 (e-mail: cmsorenson{at}wisc.edu)




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