Home LiteratureArticle Details
PMID: 1150744 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Membrane structure and surface coat of Entamoeba histolytica. Topochemistry and dynamics of the cell surface: cap formation and microexudate.

The Journal of cell biology ·Vol. 64 ·No. 3 ·1975-03-00 ·Pages 538-50

Silva PP, Martínez-Palomo A, Gonzalez-Robles A

Abstract

Treatment of living entamoeba histolytica cells with low concentrations of concanavalin A (con A) and peroxidase results in redistribution of the plasma membrane con A receptors to one pole of the cell where a morphologically distinct region--the uroid--is formed. Capping of con A receptors is not accompanied by parallel accumulation of ruthenium red-stainable components. In capped cells, the pattern of distribution of acidic sites ionized at pH 1.8 (labeled by colloidal iron) at the outer surface and of membrane particles (integral membrane components revealed by freeze-fracture) is not altered over the uroid region. Cytochemistry of substrate-attached microexudate located in regions adjacent to E. histolytica cells demonstrates the presence of con A binding sites and ruthenium red- and alcian blue-stainable components and the absent of colloidal iron binding sites. In a previous report we demonstrated that glycerol-induced aggregation of the plasma membrane particles is accompanied by a discontinuous distribution of colloidal iron binding sites, while con A receptors and acidic sites ionized at pH 4.0 remain uniformly distributed over the cell surface. Taken together, our experiments show that, in E. histolytica cells, peripheral membrane components may move independently of integral components and, also, that certain surface determinants may redistribute independently of others. These results point to the complexity of the membrane structure-cell surface relationship in E. histolytica plasma membranes relative to the membrane of the erythrocyte ghost where integral components (the membrane-intercalated particles) contain all antigens, receptors, and anionic sites labeled so far. We conclude that fluidity of integral membrane components (integral membrane fluidity) cannot be inferred from the demonstration of the mobility of surface components nor, conversely, can the fluidity of peripheral membrane components (peripheral membrane fluidity) be assumed from demonstration of the mobility of integral membrane components.

MeSH Terms
Amoeba/metabolism,ultrastructure Animals Cell Membrane/metabolism,ultrastructure Concanavalin A/metabolism Histocytochemistry Microscopy, Electron Peroxidases Receptors, Drug
Chemicals
Receptors, Drug Concanavalin A Peroxidases
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Silva P P
Martínez-Palomo A
Gonzalez-Robles A
References (34)
34 references, click to expand
  1. An electron-microscopic observation of the "tail" end of Entamoeba invadens.
    Trans R Soc Trop Med Hyg. 1961 May;55:263-4 PMID: 13787791
  2. Lanthanum staining of the surface coat of cells. Its enhancement by the use of fixatives containing Alcian blue or cetylpyridinium chloride.
    J Cell Biol. 1971 Dec;51(3):611-20 PMID: 4108476
  3. Rapid lateral diffusion of phospholipids in rabbit sarcoplasmic reticulum.
    Proc Natl Acad Sci U S A. 1972 Aug;69(8):2056-60 PMID: 4506073
  4. Ultrastructural distribution of concanavalin-A receptors on hamster embryo and adenovirus tumour cell cultures.
    Int J Cancer. 1973 Mar 15;11(2):314-26 PMID: 4133578
  5. Ultrastructural localization of concanavalin A receptors in normal and SV 40 -transformed hamster and rat cells.
    Int J Cancer. 1972 Sep 15;10(2):397-410 PMID: 4122311
  6. Ultrastructural detection of concanavalin surface receptors in normal and in polyoma-transformed cells.
    Int J Cancer. 1972 May 15;9(3):676-84 PMID: 4122253
  7. The rapid intermixing of cell surface antigens after formation of mouse-human heterokaryons.
    J Cell Sci. 1970 Sep;7(2):319-35 PMID: 4098863
  8. Ruthenium red and violet. I. Chemistry, purification, methods of use for electron microscopy and mechanism of action.
    Anat Rec. 1971 Nov;171(3):347-68 PMID: 4108333
  9. Positive and negative colloidal iron as cell surface electron stains.
    Lab Invest. 1968 Jan;18(1):63-71 PMID: 4171243
  10. Substrate-attached glycoproteins from normal and virus-transformed cells.
    Biochemistry. 1974 Jan 29;13(3):414-25 PMID: 4358946
  11. Induced redistribution of membrane particles, anionic sites and con A receptors in Entamoeba histolytica.
    Nature. 1974 May 10;249(453):170-1 PMID: 4364818
  12. Ultrastructural visualization of cellular carbohydrate components by means of concanavalin A.
    Exp Cell Res. 1971 Jan;64(1):232-6 PMID: 5541973
  13. The study of cellular "microexudates" by ellipsometry and their relationship to the cell coat.
    Exp Cell Res. 1973 Apr;78(2):303-13 PMID: 4349014
  14. Rotational diffusion of rhodopsin in the visual receptor membrane.
    Nat New Biol. 1972 Mar 15;236(63):39-43 PMID: 4537062
  15. Rhodopsin rotates in the visual receptor membrane.
    Nat New Biol. 1972 Mar 15;236(63):35-8 PMID: 4537061
  16. Selective agglutination of pathogenic strains of Entamoeba histolytica induced con A.
    Nat New Biol. 1973 Oct 10;245(145):186-7 PMID: 4355103
  17. Anionic sites of human erythrocyte membranes. II. Antispectrin-induced transmembrane aggregation of the binding sites for positively charged colloidal particles.
    J Cell Biol. 1973 Nov;59(2 Pt 1):395-406 PMID: 4141707
  18. Release of macromolecules from BALB-c mouse cell lines treated with chelating agents.
    Biochemistry. 1972 May 23;11(11):2161-72 PMID: 4337489
  19. Uropod formation in phytohaemagglutinin (PHA) stimulated lymphocytes.
    Exp Cell Res. 1971 Jun;66(2):433-45 PMID: 4326615
  20. Pathology of human amebiasis.
    Hum Pathol. 1970 Sep;1(3):351-85 PMID: 4330002
  21. Ultrastructural modifications of the cell surface and intercellular contacts of some transformed cell strains.
    Cancer Res. 1969 Apr;29(4):925-37 PMID: 4304733
  22. Techniques of axenic cultivation of Entamoeba histolytica Schaudinn, 1903 and E. histolytica-like amebae.
    J Parasitol. 1968 Oct;54(5):1047-56 PMID: 4319346
  23. The effects of thrombin on phytohemagglutinin receptor sites in human platelets.
    J Cell Biol. 1974 Mar;60(3):541-53 PMID: 4207395
  24. Mapping and migration of lymphocyte surface macromolecules.
    Fed Proc. 1973 Jan;32(1):55-9 PMID: 4567777
  25. Translational mobility of the membrane intercalated particles of human erythrocyte ghosts. pH-dependent, reversible aggregation.
    J Cell Biol. 1972 Jun;53(3):777-87 PMID: 4554989
  26. Role of microexudate carpet in cell division.
    Nature. 1972 Jun 2;237(5353):283-5 PMID: 4557463
  27. Freeze-etch localization of concanavalin A receptors to the membrane intercalated particles of human erythrocyte ghost membranes.
    Biochim Biophys Acta. 1974 Sep 23;363(3):311-9 PMID: 4462620
  28. Natural shedding of carbohydrate-containing macromolecules from cell surfaces.
    Exp Cell Res. 1973 Apr;79(1):152-8 PMID: 4779532
  29. Anionic sites on the membrane intercalated particles of human erythrocyte ghost membranes. Freeze-etch localization.
    Exp Cell Res. 1973 Sep;81(1):127-38 PMID: 4757417
  30. The structure of erythrocyte membranes studied by freeze-etching. II. Localization of receptors for phytohemagglutinin and influenza virus to the intramembranous particles.
    J Exp Med. 1972 Jun 1;135(6):1209-27 PMID: 5025437
  31. Membrane splitting in freeze-ethching. Covalently bound ferritin as a membrane marker.
    J Cell Biol. 1970 Jun;45(3):598-605 PMID: 4918216
  32. Localization of A antigen sites on human erythrocyte ghosts.
    Nature. 1971 Jul 16;232(5307):194-6 PMID: 4933775
  33. Molecular motion in spin-labeled phospholipids and membranes.
    J Am Chem Soc. 1971 Jan 27;93(2):314-26 PMID: 5541516
  34. The ultrastructural basis of capillary permeability studied with peroxidase as a tracer.
    J Cell Biol. 1967 Oct;35(1):213-36 PMID: 6061717
Article Info
Journal
The Journal of cell biology
Abbr.
J Cell Biol
ISSN
0021-9525
Published
1975-03-00
Pages
538-50
Language
English
Region
United States
NLM ID
0375356
PMCID
PMC2109541
Subset
IM
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: product@genelibs.com