Osteonectin is an alpha-granule component involved with thrombospondin in platelet aggregation. 1991

P Clezardin, and L Malaval, and M C Morel, and J Guichard, and T Lecompte, and M C Trzeciak, and M Dechavanne, and J Breton-Gorius, and P D Delmas, and C Kaplan
INSERM U 234, Laboratoire de Biochimie des Protéines Osseuses, Hôpital Edouard Herriot, Lyon, France.

We previously showed that thrombospondin, a major alpha-granule glycoprotein of human platelets, forms a specific complex with osteonectin, a phosphoglycoprotein originally described in bone that is also present in human platelets. The storage organelles and the function of osteonectin in platelets are still unknown. In this study, using electron microscopy in combination with immunogold staining, the major storage organelle for platelet-secreted proteins, the alpha-granules. Furthermore, osteonectin was qualitatively and quantitatively assessed by studying normal platelets and the platelets from a patient with gray platelet syndrome. Gray platelet syndrome is a rare congenital bleeding disorder characterized by a selective deficiency in morphologically recognizable platelet alpha-granules and in the alpha-granule secretory proteins. Binding of an iodinated antiosteonectin monoclonal antibody to gray platelet proteins transferred to nitrocellulose from SDS-polyacrylamide gels showed no band corresponding to osteonectin compared to control platelets. Using a polyclonal antiosteonectin antibody-based radioimmunoassay, gray platelets contained 0.2 +/- 0.03 ng osteonectin per 10(6) platelets, which is only 20% of the normal platelet content of osteonectin (0.93 +/- 0.16 ng per 10(6) platelets). Study of the localization of osteonectin to the surface of human platelets demonstrated that a radioiodinated antiosteonectin polyclonal antibody bound specifically to thrombin-stimulated platelets but not to resting platelets. Binding was concentration-dependent, saturable (1710 +/- 453 binding sites per platelet, Kd = 1 microM), and inhibited by an excess of cold antiosteonectin polyclonal antibody. No binding was observed on the surface of thrombin-stimulated gray platelets. To gain further insights into the role of osteonectin released from activated platelets, the effect of an antiosteonectin polyclonal antibody was tested on the aggregation of washed platelets. F(ab')2 fragments from the antiosteonectin polyclonal antibody inhibited in a dose-dependent manner the aggregation of collagen-stimulated, washed human platelets without affecting collagen-induced platelet serotonin release. To characterize the mechanism through which antiosteonectin F(ab')2 fragments inhibit platelet aggregation, the expression of endogenous thrombospondin (TSP) on the surface of thrombin-activated platelets was studied using 125I-labeled anti-TSP monoclonal antibody P10. The endogenous surface expression of TSP to thrombin-stimulated platelets was significantly inhibited in the presence of antiosteonectin F(ab')2 fragments (6286 +/- 2065 molecules of P10 per platelet) compared to 11,230 +/- 766 molecules of P10 per platelet in the presence of nonimmune F(ab')2 fragments.(ABSTRACT TRUNCATED AT 400 WORDS)

UI MeSH Term Description Entries
D007140 Immunoglobulin Fab Fragments Univalent antigen-binding fragments composed of one entire IMMUNOGLOBULIN LIGHT CHAIN and the amino terminal end of one of the IMMUNOGLOBULIN HEAVY CHAINS from the hinge region, linked to each other by disulfide bonds. Fab contains the IMMUNOGLOBULIN VARIABLE REGIONS, which are part of the antigen-binding site, and the first IMMUNOGLOBULIN CONSTANT REGIONS. This fragment can be obtained by digestion of immunoglobulins with the proteolytic enzyme PAPAIN. Fab Fragment,Fab Fragments,Ig Fab Fragments,Immunoglobulins, Fab Fragment,Fab Immunoglobulin Fragments,Immunoglobulin Fab Fragment,Immunoglobulins, Fab,Fab Fragment Immunoglobulins,Fab Fragment, Immunoglobulin,Fab Fragments, Immunoglobulin,Fragment Immunoglobulins, Fab,Fragment, Fab,Immunoglobulin Fragments, Fab
D008854 Microscopy, Electron Microscopy using an electron beam, instead of light, to visualize the sample, thereby allowing much greater magnification. The interactions of ELECTRONS with specimens are used to provide information about the fine structure of that specimen. In TRANSMISSION ELECTRON MICROSCOPY the reactions of the electrons that are transmitted through the specimen are imaged. In SCANNING ELECTRON MICROSCOPY an electron beam falls at a non-normal angle on the specimen and the image is derived from the reactions occurring above the plane of the specimen. Electron Microscopy
D010974 Platelet Aggregation The attachment of PLATELETS to one another. This clumping together can be induced by a number of agents (e.g., THROMBIN; COLLAGEN) and is part of the mechanism leading to the formation of a THROMBUS. Aggregation, Platelet
D010980 Platelet Membrane Glycoproteins Surface glycoproteins on platelets which have a key role in hemostasis and thrombosis such as platelet adhesion and aggregation. Many of these are receptors. PM-GP,Platelet Glycoprotein,Platelet Membrane Glycoprotein,PM-GPs,Platelet Glycoproteins,Glycoprotein, Platelet,Glycoprotein, Platelet Membrane,Glycoproteins, Platelet,Glycoproteins, Platelet Membrane,Membrane Glycoprotein, Platelet,Membrane Glycoproteins, Platelet,PM GP
D001791 Blood Platelet Disorders Disorders caused by abnormalities in platelet count or function. Thrombocytopathy,Blood Platelet Disorder,Disorder, Blood Platelet,Disorders, Blood Platelet,Platelet Disorder, Blood,Platelet Disorders, Blood,Thrombocytopathies
D003094 Collagen A polypeptide substance comprising about one third of the total protein in mammalian organisms. It is the main constituent of SKIN; CONNECTIVE TISSUE; and the organic substance of bones (BONE AND BONES) and teeth (TOOTH). Avicon,Avitene,Collagen Felt,Collagen Fleece,Collagenfleece,Collastat,Dermodress,Microfibril Collagen Hemostat,Pangen,Zyderm,alpha-Collagen,Collagen Hemostat, Microfibril,alpha Collagen
D003594 Cytoplasmic Granules Condensed areas of cellular material that may be bounded by a membrane. Cytoplasmic Granule,Granule, Cytoplasmic,Granules, Cytoplasmic
D004797 Enzyme-Linked Immunosorbent Assay An immunoassay utilizing an antibody labeled with an enzyme marker such as horseradish peroxidase. While either the enzyme or the antibody is bound to an immunosorbent substrate, they both retain their biologic activity; the change in enzyme activity as a result of the enzyme-antibody-antigen reaction is proportional to the concentration of the antigen and can be measured spectrophotometrically or with the naked eye. Many variations of the method have been developed. ELISA,Assay, Enzyme-Linked Immunosorbent,Assays, Enzyme-Linked Immunosorbent,Enzyme Linked Immunosorbent Assay,Enzyme-Linked Immunosorbent Assays,Immunosorbent Assay, Enzyme-Linked,Immunosorbent Assays, Enzyme-Linked
D005260 Female Females
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man

Related Publications

P Clezardin, and L Malaval, and M C Morel, and J Guichard, and T Lecompte, and M C Trzeciak, and M Dechavanne, and J Breton-Gorius, and P D Delmas, and C Kaplan
July 1988, Blood,
P Clezardin, and L Malaval, and M C Morel, and J Guichard, and T Lecompte, and M C Trzeciak, and M Dechavanne, and J Breton-Gorius, and P D Delmas, and C Kaplan
September 2001, Thrombosis and haemostasis,
P Clezardin, and L Malaval, and M C Morel, and J Guichard, and T Lecompte, and M C Trzeciak, and M Dechavanne, and J Breton-Gorius, and P D Delmas, and C Kaplan
September 1987, Pathologie-biologie,
P Clezardin, and L Malaval, and M C Morel, and J Guichard, and T Lecompte, and M C Trzeciak, and M Dechavanne, and J Breton-Gorius, and P D Delmas, and C Kaplan
November 1984, The Journal of clinical investigation,
P Clezardin, and L Malaval, and M C Morel, and J Guichard, and T Lecompte, and M C Trzeciak, and M Dechavanne, and J Breton-Gorius, and P D Delmas, and C Kaplan
November 1992, Journal of the neurological sciences,
P Clezardin, and L Malaval, and M C Morel, and J Guichard, and T Lecompte, and M C Trzeciak, and M Dechavanne, and J Breton-Gorius, and P D Delmas, and C Kaplan
July 1981, Blood,
P Clezardin, and L Malaval, and M C Morel, and J Guichard, and T Lecompte, and M C Trzeciak, and M Dechavanne, and J Breton-Gorius, and P D Delmas, and C Kaplan
January 1982, Transactions - American Society for Artificial Internal Organs,
P Clezardin, and L Malaval, and M C Morel, and J Guichard, and T Lecompte, and M C Trzeciak, and M Dechavanne, and J Breton-Gorius, and P D Delmas, and C Kaplan
November 1989, Chest,
P Clezardin, and L Malaval, and M C Morel, and J Guichard, and T Lecompte, and M C Trzeciak, and M Dechavanne, and J Breton-Gorius, and P D Delmas, and C Kaplan
July 2009, Biochemical and biophysical research communications,
P Clezardin, and L Malaval, and M C Morel, and J Guichard, and T Lecompte, and M C Trzeciak, and M Dechavanne, and J Breton-Gorius, and P D Delmas, and C Kaplan
January 1997, Journal of Tongji Medical University = Tong ji yi ke da xue xue bao,
Copied contents to your clipboard!