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PMID: 6885911 Published · ppublish English Comparative Study Journal Article Research Support, U.S. Gov't, Non-P.H.S.

Nonlysosomal vesicles (acidosomes) are involved in phagosome acidification in Paramecium.

The Journal of cell biology ·Vol. 97 ·No. 2 ·1983-08-00 ·Pages 566-70

Allen RD, Fok AK

Abstract

Although acidification of phagocytic vacuoles has received a broadened interest with the development of pH-sensitive fluorescent probes to follow the pH changes of vacuoles and acidic vesicles in living cells, the mechanism responsible for the acidification of such vacuoles still remains in doubt. In previous studies of the digestive vacuole system in the ciliate Paramecium caudatum we observed and described a unique population of apparently nonlysosomal vesicles that quickly fused with the newly released vacuole before the vacuole became acid and before lysosomes fused with the vacuole. In this paper we report the following: (a) these vesicles, named acidosomes, are devoid of acid phosphatase; (b) these vesicles accumulate neutral red as well as acridine orange, two observations that demonstrate their acid content; (c) cytochalasin B given 15 s after exposure of the cells to indicator dye-stained yeast will inhibit the acidification of yeast-containing vacuoles; and that (d) we observed using electron microscopy, that fusion of acidosomes with the vacuole is inhibited by cytochalasin B. We conclude that the mechanism for acidification of phagocytic vacuoles in Paramecium resides, at least partially if not entirely, in the acidosomes.

MeSH Terms
Animals Hydrogen-Ion Concentration Lysosomes/physiology Organoids/physiology Paramecium/physiology,ultrastructure Phagocytosis Vacuoles/physiology
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Allen R D
Fok A K
References (23)
23 references, click to expand
  1. Exocytosis regulates urinary acidification in turtle bladder by rapid insertion of H+ pumps into the luminal membrane.
    Proc Natl Acad Sci U S A. 1982 Jul;79(14):4327-31 PMID: 6289300
  2. Phagosome fusion vesicles of paramecium. I. Thin-section morphology.
    Eur J Cell Biol. 1983 Jan;29(2):150-8 PMID: 6682040
  3. Phagosome fusion vesicles of Paramecium. II. Freeze-fracture evidence for membrane replacement.
    Eur J Cell Biol. 1983 Jan;29(2):159-65 PMID: 6832165
  4. UPTAKE OF DYES AND DRUGS BY LIVING CELLS IN CULTURE.
    Life Sci. 1964 Dec;3:1407-14 PMID: 14248630
  5. Distribution of acid phosphatase in Paramecium caudatum: its relations with the process of digestion.
    J Protozool. 1970 Feb;17(1):24-35 PMID: 5420329
  6. Commentary. Lysosomotropic agents.
    Biochem Pharmacol. 1974 Sep 15;23(18):2495-531 PMID: 4606365
  7. Food vacuole membrane growth with microtubule-associated membrane transport in Paramecium.
    J Cell Biol. 1974 Dec;63(3):904-22 PMID: 4373478
  8. Endocytosis.
    Annu Rev Biochem. 1977;46:669-722 PMID: 332066
  9. Fluorescence probe measurement of the intralysosomal pH in living cells and the perturbation of pH by various agents.
    Proc Natl Acad Sci U S A. 1978 Jul;75(7):3327-31 PMID: 28524
  10. Uptake and intracellular distribution of neutral red in cultured fibroblasts.
    Exp Cell Res. 1978 Sep;115(2):343-55 PMID: 689090
  11. Axenic Paramecium caudatum. I. Mass culture and structure.
    J Protozool. 1979 Aug;26(3):463-70 PMID: 536935
  12. A morphological study of plasma and phagosome membranes during endocytosis in Acanthamoeba.
    J Cell Biol. 1980 Feb;84(2):246-60 PMID: 6991507
  13. Phagosome-lysosome fusion. Characterization of intracellular membrane fusion in mouse macrophages.
    J Cell Biol. 1980 Jun;85(3):754-65 PMID: 7391139
  14. Membrane recycling and endocytosis in Paramecium confirmed by horseradish peroxidase pulse-chase studies.
    J Cell Sci. 1980 Oct;45:131-45 PMID: 7462342
  15. ATP-dependent acidification of intact and disrupted lysosomes. Evidence for an ATP-driven proton pump.
    J Biol Chem. 1981 Apr 25;256(8):3858-64 PMID: 7217060
  16. The respiratory burst of phagocytic cells is associated with a rise in vacuolar pH.
    Nature. 1981 Apr 2;290(5805):406-9 PMID: 7219526
  17. Digestive system membranes: freeze-fracture evidence for differentiation and flow in Paramecium.
    J Cell Biol. 1981 Apr;89(1):9-20 PMID: 7228903
  18. Temporal changes of lysosome and phagosome pH during phagolysosome formation in macrophages: studies by fluorescence spectroscopy.
    J Cell Biol. 1981 Jun;89(3):645-52 PMID: 6166620
  19. Axenic Paramecium caudatum. II. Changes in fine structure with culture age.
    Eur J Cell Biol. 1981 Aug;25(1):182-92 PMID: 7285952
  20. Effect of weak bases on the intralysosomal pH in mouse peritoneal macrophages.
    J Cell Biol. 1981 Sep;90(3):665-9 PMID: 6169733
  21. Rapid acidification of endocytic vesicles containing alpha 2-macroglobulin.
    Cell. 1982 Mar;28(3):643-51 PMID: 6176331
  22. Identification and characterization of a proton pump on lysosomes by fluorescein-isothiocyanate-dextran fluorescence.
    Proc Natl Acad Sci U S A. 1982 May;79(9):2758-62 PMID: 6178109
  23. pH changes in pinosomes and phagosomes in the ameba, Chaos carolinensis.
    J Cell Biol. 1982 Jul;94(1):143-9 PMID: 7119011
Article Info
Journal
The Journal of cell biology
Abbr.
J Cell Biol
ISSN
0021-9525
Published
1983-08-00
Pages
566-70
Language
English
Region
United States
NLM ID
0375356
PMCID
PMC2112527
Subset
IM
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