β 2 -Adrenoceptors Activate Nitric Oxide Synthase in Human Platelets

Author:

Queen Lindsay R.1,Xu Biao1,Horinouchi Kazumi1,Fisher Ian1,Ferro Albert1

Affiliation:

1. From the Department of Clinical Pharmacology, Center for Cardiovascular Biology & Medicine, King’s College London, St Thomas’ Hospital, London, UK.

Abstract

Abstract —Nitric oxide (NO), generated by platelets through stimulation of nitric oxide synthase (NOS), limits platelet adhesion and aggregation after a prothrombotic stimulus. Platelet β-adrenoceptors (βARs) mediate inhibition of aggregation, but no direct link has been shown between these receptors and platelet adhesion or NO production. We examined NOS activity in human platelets from the conversion of l -[ 3 H]-arginine to l -[ 3 H]-citrulline, after βAR stimulation or cAMP elevation. Basal NOS activity was 0.11±0.03 pmol l -citrulline/10 8 platelets. The βAR agonist isoproterenol 1 μmol/L and the adenylyl cyclase activator forskolin 1 μmol/L each increased NOS activity, to 0.26±0.04 and 0.23±0.03 pmol l -citrulline/10 8 platelets, respectively ( P <0.01 for each). Both responses were abolished by the adenylyl cyclase inhibitor SQ22536 50 μmol/L. NOS activation by isoproterenol or forskolin was not associated with a change in intracellular Ca 2+ . In functional studies, isoproterenol inhibited U46619-induced platelet aggregation in a concentration-dependent manner, but this effect was not significantly diminished by NOS inhibition. In contrast, thrombin-stimulated platelet adhesion to cultured human umbilical vein endothelial cell monolayers was inhibited by isoproterenol, and this effect was abolished by NOS inhibition (1.3±0.2% versus 2.6±0.2% respectively; P <0.001). Effects of isoproterenol on NOS activity, platelet aggregation, and adhesion were mediated exclusively through β 2 ARs, as determined by coincubation with βAR subtype-selective antagonists. We conclude that β 2 ARs activate platelet NOS by increasing cAMP, and that this activation is Ca 2+ -independent. β 2 ARs may contribute to modulation of platelet aggregation and adhesion to endothelium, and our findings suggest that activation of the l -arginine/NO system mediates the effects of β 2 ARs on adhesion but not aggregation. ( Circ Res. 2000;87:39-44.)

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Cardiology and Cardiovascular Medicine,Physiology

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