PECAM-1 Mediates NO-Dependent Dilation of Arterioles to High Temporal Gradients of Shear Stress
- 1 August 2005
- journal article
- research article
- Published by Wolters Kluwer Health in Arteriosclerosis, Thrombosis, and Vascular Biology
- Vol. 25 (8) , 1590-1595
- https://doi.org/10.1161/01.atv.0000170136.71970.5f
Abstract
Objective— In response to changes in wall shear stress (WSS) the vascular endothelium releases several factors, among others nitric oxide. On the basis of studies of endothelial cells in culture, suggesting that platelet endothelial cell adhesion molecule-1 (PECAM-1) is specifically involved in sensing and coupling high temporal gradients of fluid shear stress with activation of eNOS, we hypothesized that dilations of isolated skeletal muscle arterioles from PECAM-1 knockout mice (PECAM-KO) will be reduced to rapid increases in WSS elicited by increases in perfusate flow. Methods and Results— Small and large step increases in flow resulted in substantial dilations in arterioles of WT mice (45±4%), but they were markedly reduced in arterioles of PECAM-KO mice (22±5%). The initial slope of dilations, when WSS increased rapidly, was greater in vessels of WT than those of PECAM-KO mice (slopes: 0.378 and 0.094, respectively), whereas the second phase of dilations, when flow/shear stress was steady, was similar in the 2 groups (slopes: 0.085 and 0.094, respectively). Inhibition of eNOS significantly reduced the initial phase of dilations in arterioles from WT, but not from those of PECAM-KO mice. The calcium ionophore A23187 elicited similar NO-mediated dilation in both WT and PECAM-KO mice. Conclusions— In isolated arterioles of PECAM-KO mice activation of eNOS and consequent dilation by agonists is maintained, but the dilation to high temporal gradients of wall shear stress elicited by increases in perfusate flow is reduced. Thus, we propose that PECAM-1 plays an important role in the ability of the endothelium to sense and couple high temporal gradients of wall shear stress to NO-mediated arteriolar dilation during sudden changes in blood flow in vivo.Keywords
This publication has 27 references indexed in Scilit:
- Colocalization of eNOS and the Catalytic Subunit of PKA in Endothelial Cell Junctions: A Clue for Regulated NO ProductionJournal of Histochemistry & Cytochemistry, 2004
- PECAM-1 Interacts With Nitric Oxide Synthase in Human Endothelial CellsArteriosclerosis, Thrombosis, and Vascular Biology, 2004
- Association between platelet endothelial cellular adhesion molecule 1 (PECAM‐1/CD31) polymorphisms and acute myocardial infarction: a study in patients from SicilyEuropean Journal of Immunogenetics, 2004
- Polymorphisms in the Platelet‐Endothelial Cell Adhesion Molecule‐1 (PECAM‐1) Gene, Asn563Ser and Gly670Arg, Associated with Myocardial Infarction in the JapaneseAnnals of the New York Academy of Sciences, 2001
- Is PECAM-1 a Mechanoresponsive Molecule?Cell Structure and Function, 2001
- Dissecting the Interaction between Nitric Oxide Synthase (NOS) and CaveolinJournal of Biological Chemistry, 1997
- Steady Shear and Step Changes in Shear Stimulate Endothelium via Independent Mechanisms—Superposition of Transient and Sustained Nitric Oxide ProductionBiochemical and Biophysical Research Communications, 1996
- Both nitric oxide and prostaglandin-mediated responses are impaired in skeletal muscle arterioles of hypertensive ratsJournal Of Hypertension, 1996
- Fluid Flow and Osmotic Stress Induce Tyrosine Phosphorylation of an Endothelial Cell 128-kDa Surface GlycoproteinBiochemical and Biophysical Research Communications, 1995
- Focal adhesion proteins associated with apical stress fibers of human fibroblastsCell Motility, 1995