Cloning of the human platelet F11 receptor: a cell adhesion molecule member of the immunoglobulin superfamily involved in platelet aggregation

Author:

Sobocka Malgorzata B.1,Sobocki Tomasz1,Banerjee Probal1,Weiss Cipora1,Rushbrook Julie I.1,Norin Allen J.1,Hartwig John1,Salifu Moro O.1,Markell Mariana S.1,Babinska Anna1,Ehrlich Yigal H.1,Kornecki Elizabeth1

Affiliation:

1. From the Departments of Anatomy/Cell Biology, Biochemistry and Medicine/Renal Division, SUNY Downstate Medical Center, Brooklyn, NY; Program in Neuroscience and the Departments of Chemistry and Biology, CUNY/CSI, Staten Island, NY; and the Department of Medicine/Division of Experimental Medicine and Hematology, Brigham and Women's Hospital, Harvard Medical School, Boston, MA.

Abstract

AbstractThis study demonstrates that the human platelet F11 receptor (F11R) functions as an adhesion molecule, and this finding is confirmed by the structure of the protein as revealed by molecular cloning. The F11R is a 32-/35-kd protein duplex that serves as the binding site through which a stimulatory monoclonal antibody causes platelet aggregation and granule secretion. A physiological role for the F11R protein was demonstrated by its phosphorylation after the stimulation of platelets by thrombin and collagen. A pathophysiological role for the F11R was revealed by demonstrating the presence of F11R-antibodies in patients with thrombocytopenia. Adhesion of platelets through the F11R resulted in events characteristic of the action of cell adhesion molecules (CAMs). To determine the structure of this protein, we cloned the F11R cDNA from human platelets. The predicted amino acid sequence demonstrated that it is an integral membrane protein and an immunoglobulin superfamily member containing 2 extracellular C2-type domains. The structure of the F11R as a member of a CAM family of proteins and its activity in mediating adhesion confirm each another. We conclude that the F11R is a platelet-membrane protein involved in 2 distinct processes initiated on the platelet surface. The first is antibody-induced platelet aggregation and secretion that are dependent on both the FcγRII and the GPIIb/IIIa integrin and that may be involved in pathophysiological processes associated with certain thrombocytopenias. The second is an F11R-mediated platelet adhesion that is not dependent on either the FcγRII or the fibrinogen receptor and that appears to play a role in physiological processes associated with platelet adhesion and aggregation.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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