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Gray Platelet Syndrome. Demonstration of Alpha Granule Membranes That Can Fuse with the Cell Surface

Overview
Journal J Clin Invest
Specialty General Medicine
Date 1987 Oct 1
PMID 2443536
Citations 17
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Abstract

Platelets from patients with the gray platelet syndrome have decreased recognizable alpha granules and are markedly deficient in some alpha-granule secretory proteins. Using immunocytochemical techniques with antibodies to an alpha-granule membrane protein, GMP-140, we identified the membranes of intracellular vesicles in gray platelets as alpha-granule membranes. Gray platelets contained normal amounts of GMP-140 as measured by electroimmunoassay. The activation of gray platelets with thrombin caused GMP-140 to be redistributed to the plasma membrane surface, as in normal platelets. In agreement with previous studies, an endogenously synthesized secretory protein, platelet factor 4, was undetectable in gray platelets. However, the alpha-granule proteins albumin and IgG, which are thought to be derived from endocytosis of plasma proteins into megakaryocytes, were present in substantial quantities and were secreted efficiently from gray platelets. Therefore, the fundamental defect in the gray platelet syndrome may be in the targeting of endogenously synthesized secretory proteins to developing alpha granules in megakaryocytes.

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References
1.
Berman C, Yeo E, Wencel-Drake J, Furie B, Ginsberg M, Furie B . A platelet alpha granule membrane protein that is associated with the plasma membrane after activation. Characterization and subcellular localization of platelet activation-dependent granule-external membrane protein. J Clin Invest. 1986; 78(1):130-7. PMC: 329541. DOI: 10.1172/JCI112542. View

2.
George J, Pickett E, Saucerman S, McEver R, Kunicki T, Kieffer N . Platelet surface glycoproteins. Studies on resting and activated platelets and platelet membrane microparticles in normal subjects, and observations in patients during adult respiratory distress syndrome and cardiac surgery. J Clin Invest. 1986; 78(2):340-8. PMC: 423547. DOI: 10.1172/JCI112582. View

3.
Stenberg P, Beckstead J, McEver R, Levin J . Immunohistochemical localization of membrane and alpha-granule proteins in plastic-embedded mouse bone marrow megakaryocytes and murine megakaryocyte colonies. Blood. 1986; 68(3):696-702. View

4.
Paul J, Schwarzbauer J, Tamkun J, Hynes R . Cell-type-specific fibronectin subunits generated by alternative splicing. J Biol Chem. 1986; 261(26):12258-65. View

5.
Woods Jr V, Wolff L, Keller D . Resting platelets contain a substantial centrally located pool of glycoprotein IIb-IIIa complex which may be accessible to some but not other extracellular proteins. J Biol Chem. 1986; 261(32):15242-51. View