C-terminal peptide of thrombospondin-1 induces platelet aggregation through the Fc receptor γ-chain–associated signaling pathway and by agglutination

Author:

Tulasne David1,Judd Barbi A.1,Johansen Mette1,Asazuma Naoki1,Best Denise1,Brown Eric J.1,Kahn Mark1,Koretzky Gary A.1,Watson Steve P.1

Affiliation:

1. From the Department of Pharmacology, University of Oxford, United Kingdom; Abramson Family Cancer Center and Department of Medicine, University of Pennsylvania, Philadelphia; and the Program in Host-Pathogen Interactions, University of California, San Francisco.

Abstract

AbstractA peptide from the C-terminal domain of thrombospondin-1 (Arg-Phe-Tyr-Val-Val-Met-Trp-Lys; known as 4N1-1) has been reported to induce platelet aggregation and to bind to the integrin-associated protein (IAP), which is also known as CD47. In this study, it was discovered that 4N1-1 or its derivative peptide, 4N1K, induces rapid phosphorylation of the Fc receptor (FcR) γ chain, Syk, SLP-76, and phospholipase C γ2 in human platelets. A specific inhibitor of Src family kinases, 4-amino-4-(4-methylphenyl)-7-(t-butyl) pyrazola[3,4-d]pyrimidine, prevented phosphorylation of these proteins, abolished platelet secretion, and reduced aggregation by approximately 50%. A similar inhibition of aggregation to 4N1-1 was obtained in the presence of Arg-Gly-Asp-Ser in mouse platelets deficient in FcR γ chain or SLP-76 and in patients with type I Glanzmann thrombasthenia. These results show that 4N1-1 signals through a pathway similar to that used by the collagen receptor glycoprotein (GP) VI. The αIIbβ3-independent aggregation induced by 4N1-1 was also observed in fixed platelets and platelets from patients with Bernard-Soulier syndrome, which are deficient in GPIbα. Surprisingly, the ability of 4N1-1 to stimulate aggregation and tyrosine phosphorylation was not altered in platelets pretreated with anti-IAP antibodies and in IAP-deficient mice. These results show that the C-terminal peptide of thrombospondin induces platelet aggregation through the FcR γ-chain signaling pathway and through agglutination. The latter pathway is independent of signaling events and does not use GPIbα or αIIbβ3. Neither of these pathways is mediated by IAP.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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