Abstract

Interaction of von Willebrand Factor with glycoprotein Ib-IX-V induces platelet activation through a still poorly defined mechanism. Previous studies have suggested a possible role for the low affinity receptor for immunoglobulin, Fc gamma RIIA, in GPIb-IX-V signaling. Here we show that binding of vWF to platelets induces the tyrosine phosphorylation of Fc gamma RIIA by a Src kinase. Treatment of platelets with the anti-Fc gamma RIIA monoclonal antibody IV.3 specifically inhibits vWF-induced but not thrombin-induced pleckstrin phosphorylation and serotonin secretion. Moreover, vWF fails to induce pleckstrin phosphorylation in mouse platelets, lacking Fc gamma RIIA, and serotonin secretion is impaired. Pleckstrin phosphorylation and serotonin secretion in human platelets stimulated with vWF are blocked by the cyclooxygenase inhibitor acetylsalicylic acid. However, release of arachidonic acid and synthesis of TxA(2) induced by vWF are not affected by the anti-Fc gamma RIIA monoclonal antibody IV.3. Similarly, vWF-induced tyrosine phosphorylation of Fc gamma RIIA, as well as of Syk and PLC gamma 2, occurs normally in aspirinized platelets. Inhibition of the tyrosine kinase Syk by piceatannol does not affect vWF-induced tyrosine phosphorylation of Fc gamma RIIA but prevents phosphorylation of PLC gamma 2. Pleckstrin phosphorylation and platelet secretion induced by vWF, but not by thrombin, are also inhibited by piceatannol. Pleckstrin phosphorylation is also sensitive to the phosphatidylinositol 3-kinase inhibitor wortmannin. These results indicate that PLC gamma 2 plays a central role in platelet activation by vWF and that the stimulation of this enzyme requires coordinated signals through endogenous TxA(2) and Fc gamma RIIA.

Highlights

  • Von Willebrand Factor1 is a large glycoprotein synthesized by endothelial cells and megakaryocytes and plays an important role in platelet adhesion and thrombus formation [1]

  • To clarify the role of Fc␥RIIA in platelet stimulation by von Willebrand Factor (vWF), we examined whether Fc␥RIIA itself was activated upon stimulation of human platelets with vWF

  • Activation of Fc␥RIIA involves the phosphorylation of tyrosine residues in its cytoplasmic ITAM that enables the receptor to bind and activate Syk leading to the tyrosine phosphorylation of downstream substrates, such as PLC␥2 [12, 16, 17]

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Summary

Introduction

Von Willebrand Factor (vWF)1 is a large glycoprotein synthesized by endothelial cells and megakaryocytes and plays an important role in platelet adhesion and thrombus formation [1]. These results identify a signaling pathway that is activated in vWF-stimulated platelets by a mechanism independent of TxA2 and which involves Fc␥RIIA, the tyrosine kinase Syk, and PLC␥2.

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