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PMID: 2368921 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Platelet membrane skeleton revealed by quick-freeze deep-etch.

The Anatomical record ·Vol. 227 ·No. 1 ·1990-05-00 ·Pages 1-11

Bearer EL

Abstract

Actin polymerization is an essential component of platelet activation. Since actin appears to polymerize at its membrane-associated end, knowledge of the structural relationship of actin filaments to membrane is an important part of understanding that polymerization process. A membrane-associated actin-containing cytoskeleton has been described in human platelets biochemically and is composed, at least in part, by an association between glycoprotein Ib and the actin-binding protein originally isolated from macrophages. Many other actin-associated proteins with known sub-membranous localization in other systems have been found in platelets, including alpha-actinin, vinculin, and low levels of spectrin and the red cell protein Band 4.1. Because of the density of the platelet cytoplasm, the structure of the membrane-skeleton has not yet been visualized. We have used quick freeze-deep etch techniques to observe the sub-membranous cytoplasm and report visualization of a periodic, submembranous filament system not before seen in the platelet. This filamentous system was more easily observed in thrombin-stimulated platelets, but appeared to be present in resting, discoid cells as well. The filaments could also be readily observed when platelets are lysed after fixation, stained with tannic acid, and embedded for thin-sectioning. This membrane cytoskeleton was composed of 9 nm thick filaments lying 15 nm apart, and 15 nm from the membrane. The filaments appeared to lie in parallel and to encircle the cell. Similar filaments could be seen associated with intracytoplasmic membrane systems in activated cells.

MeSH Terms
Actin Cytoskeleton/ultrastructure Blood Platelets/cytology,ultrastructure Cell Membrane/ultrastructure Cytoplasm/ultrastructure Freeze Etching Humans Microscopy, Electron
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Bearer E L
Department of Biochemistry, University of California, San Francisco 94143.
References (42)
42 references, click to expand
  1. Actions of cytochalasins on the organization of actin filaments and microtubules in a neuronal growth cone.
    J Cell Biol. 1988 Oct;107(4):1505-16 PMID: 3170637
  2. Platelet activation and microfilament bundling.
    J Cell Biol. 1981 Apr;89(1):146-51 PMID: 7194875
  3. Identification of glycoprotein Ib beta as one of the major proteins phosphorylated during exposure of intact platelets to agents that activate cyclic AMP-dependent protein kinase.
    J Biol Chem. 1987 Sep 15;262(26):12627-31 PMID: 3040761
  4. The exocytosis of human blood platelets. A fast freezing and freeze-substitution analysis.
    Eur J Cell Biol. 1987 Apr;43(2):273-82 PMID: 3595636
  5. Platelets contain proteins immunologically related to red cell spectrin and protein 4.1.
    Blood. 1985 Jan;65(1):52-9 PMID: 3880645
  6. Changes in the cytoskeletal structure of human platelets following thrombin activation.
    J Biol Chem. 1981 Jul 10;256(13):6927-32 PMID: 6894599
  7. Shape and cytoplasmic filaments in control and lidocaine-treated human platelets.
    Blood. 1977 Jul;50(1):39-53 PMID: 871525
  8. The role of phospholipids in platelet function.
    Ann Clin Lab Sci. 1980 Nov-Dec;10 (6):463-73 PMID: 6255856
  9. The platelet fibrinogen receptor: an immunogold-surface replica study of agonist-induced ligand binding and receptor clustering.
    J Cell Biol. 1987 Jun;104(6):1655-63 PMID: 3584243
  10. Localization of phosphatidylethanolamine in the plasma membrane of diamide-treated human blood platelets.
    Biomed Biochim Acta. 1985;44(9):1335-41 PMID: 4084279
  11. Changes in the organization of membrane lipids during human platelet activation. Study by fluorescent and freeze-fracture cytochemistry.
    Lab Invest. 1986 Feb;54(2):136-45 PMID: 3945048
  12. The organization of aminophospholipids in human platelet membranes: selective changes induced by thrombin.
    J Lab Clin Med. 1978 May;91(5):802-10 PMID: 641403
  13. Redistribution of alpha-granules and their contents in thrombin-stimulated platelets.
    J Cell Biol. 1984 Feb;98(2):748-60 PMID: 6229546
  14. Diacylglycerol in large alpha-actinin/actin complexes and in the cytoskeleton of activated platelets.
    Nature. 1985 Apr 4-10;314(6010):469-72 PMID: 4039039
  15. Linkage of a membrane skeleton to integral membrane glycoproteins in human platelets. Identification of one of the glycoproteins as glycoprotein Ib.
    J Clin Invest. 1985 Oct;76(4):1673-83 PMID: 2932470
  16. Quick-freeze, deep-etch visualization of the cytoskeleton beneath surface differentiations of intestinal epithelial cells.
    J Cell Biol. 1981 Nov;91(2 Pt 1):399-409 PMID: 7198124
  17. Isolation and characterization of actin and actin-binding protein from human platelets.
    J Cell Biol. 1981 Oct;91(1):201-11 PMID: 7197680
  18. Isolation and partial characterization of human platelet vinculin.
    J Cell Biol. 1985 Mar;100(3):669-76 PMID: 3919032
  19. Specific interaction between phosphatidylinositol 4,5-bisphosphate and profilactin.
    Nature. 1985 Apr 4-10;314(6010):472-4 PMID: 2984579
  20. Lipids of the platelet membrane.
    Lab Invest. 1986 Feb;54(2):119-21 PMID: 3945047
  21. Interaction of fibronectin with its receptor on platelets.
    Cell. 1985 Sep;42(2):439-48 PMID: 2411420
  22. The phospholipid and fatty acid composition of human platelet surface and intracellular membranes isolated by high voltage free flow electrophoresis.
    J Biol Chem. 1982 Mar 25;257(6):3100-4 PMID: 7061467
  23. Cytoskeletal reorganization of human platelets after stimulation revealed by the quick-freeze deep-etch technique.
    J Cell Biol. 1987 Oct;105(4):1771-80 PMID: 3667697
  24. Disruption of phospholipid asymmetry in erythrocyte vesicles deficient in spectrin.
    Cell Biol Int Rep. 1985 Jul;9(7):597-606 PMID: 2411434
  25. Actin filament content and organization in unstimulated platelets.
    J Cell Biol. 1984 Jun;98(6):1985-91 PMID: 6233292
  26. Reversible binding of actin to gelsolin and profilin in human platelet extracts.
    J Cell Biol. 1987 Aug;105(2):833-42 PMID: 3040771
  27. Observations on the "cytoskeleton" of human platelets.
    Thromb Haemost. 1980 Feb 29;42(5):1661-6 PMID: 6154324
  28. The submembranous fibrils of human blood platelets.
    J Cell Biol. 1970 Oct;47(1):293-9 PMID: 4998250
  29. Anionic lipid domains: correlation with functional topography in a mammalian cell membrane.
    Proc Natl Acad Sci U S A. 1980 Nov;77(11):6601-5 PMID: 6935671
  30. Actin filaments, stereocilia, and hair cells of the bird cochlea. IV. How the actin filaments become organized in developing stereocilia and in the cuticular plate.
    Dev Biol. 1986 Jul;116(1):119-29 PMID: 3732602
  31. Complete nucleotide sequence of a gene conferring polymyxin B resistance on yeast: similarity of the predicted polypeptide to protein kinases.
    Proc Natl Acad Sci U S A. 1987 Aug;84(16):5848-52 PMID: 3039511
  32. On the association of glycoprotein Ib and actin-binding protein in human platelets.
    J Cell Biol. 1985 Jan;100(1):317-21 PMID: 3155520
  33. Fibronectin potentiates actin polymerization in thrombin-activated platelets.
    J Cell Biochem. 1986;30(1):71-7 PMID: 3514638
  34. Actin filaments, stereocilia, and hair cells of the bird cochlea. III. The development and differentiation of hair cells and stereocilia.
    Dev Biol. 1986 Jul;116(1):100-18 PMID: 3732601
  35. Actin filaments elongate from their membrane-associated ends.
    J Cell Biol. 1981 Aug;90(2):485-94 PMID: 7197276
  36. Cytoskeleton of human platelets at rest and after spreading.
    J Cell Biol. 1980 Sep;86(3):795-802 PMID: 6157694
  37. Platelet glycoproteins IIb and IIIa: evidence for a family of immunologically and structurally related glycoproteins in mammalian cells.
    Proc Natl Acad Sci U S A. 1986 Nov;83(21):8351-5 PMID: 3534886
  38. Identification of a membrane skeleton in platelets.
    J Cell Biol. 1988 May;106(5):1525-38 PMID: 3372587
  39. Modulation of gelsolin function by phosphatidylinositol 4,5-bisphosphate.
    Nature. 1987 Jan 22-28;325(6102):362-4 PMID: 3027569
  40. Intramembranous cytochemistry: a perspective.
    Lab Invest. 1982 Jun;46(6):637-9 PMID: 7087392
  41. Nanometre-level analysis demonstrates that lipid flow does not drive membrane glycoprotein movements.
    Nature. 1989 Jul 27;340(6231):284-8 PMID: 2747796
  42. Organization and role of platelet membrane phospholipids as studied with phospholipases A2 from various venoms and phospholipases C from bacterial origin.
    Toxicon. 1982;20(1):291-8 PMID: 7080042
Article Info
Journal
The Anatomical record
Abbr.
Anat Rec
ISSN
0003-276X
Published
1990-05-00
Pages
1-11
Language
English
Region
United States
NLM ID
0370540
PMCID
PMC4517857
Subset
IM
Grants
NIGMS NIH HHS · R01 GM047368 · United States
NIADDK NIH HHS · AM-32094 · United States
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