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PMID: 8433352 Published · ppublish English Journal Article

Relation between cytoskeleton, hypo-osmotic treatment and volume regulation in Ehrlich ascites tumor cells.

The Journal of membrane biology ·Vol. 131 ·No. 1 ·1993-01-00 ·Pages 55-66

Cornet M, Lambert IH, Hoffmann EK

Abstract

Pretreatment with cytochalasin B, which is known to disrupt microfilaments, significantly inhibits regulatory volume decrease (RVD) in Ehrlich ascites tumor cells, suggesting that an intact microfilament network is a prerequisite for a normal RVD response. Colchicine, which is known to disrupt microtubules, has no significant effect on RVD. Ehrlich cells have a cortical three-dimensional, orthogonal F-actin filament network which makes the cells look completely black in light microscopy following immunogold/silver staining using anti-actin antibodies. After addition of cytochalasin B, the stained cells get lighter with black dots localized to the plasma membrane and appearance of multiple knobby protrusions at cell periphery. Also, a significant decrease in the staining of the cells is seen after 15 min of RVD in hypotonic medium. This microfilament reorganization appears during RVD in the presence of external Ca2+ or Ca(2+)-ionophore A23187. It is, however, abolished in the absence of extracellular calcium, with or without prior depletion of intracellular Ca2+ stores. An effect of increased calcium influx might therefore be considered. The microfilament reorganization during RVD is abolished by the calmodulin antagonists pimozide and trifluoperazine, suggesting the involvement of calmodulin in the process. The microfilament reorganization is also prevented by addition of quinine. This quinine inhibition is overcome by addition of the K+ ionophore valinomycin.

MeSH Terms
Actin Cytoskeleton/drug effects,pathology Animals Calcimycin/pharmacology Calcium/pharmacology Carcinoma, Ehrlich Tumor/pathology Cytochalasin B/pharmacology Cytoskeleton/drug effects,pathology Female Hypotonic Solutions In Vitro Techniques Mice Osmotic Pressure
Chemicals
Hypotonic Solutions Calcimycin Cytochalasin B Calcium
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Cornet M
Laboratory of Cell and Tissue Biology, University of Liège, Belgium.
Lambert I H
Hoffmann E K
References (45)
45 references, click to expand
  1. Hypotonicity and cell volume regulation in shark rectal gland: role of organic osmolytes and F-actin.
    Am J Physiol. 1992 Mar;262(3 Pt 2):F468-79 PMID: 1558164
  2. Calcium regulation of the actin-mediated cytoskeletal transformation of sea urchin coelomocytes.
    Cell Motil. 1983;3(5-6):525-34 PMID: 6420068
  3. Actin filaments undergo limited subunit exchange in physiological salt conditions.
    J Cell Biol. 1982 Aug;94(2):316-24 PMID: 7202009
  4. Mechanism of action of cytochalasin B on actin.
    Cell. 1980 Jun;20(2):329-41 PMID: 6893016
  5. Mediation of cell volume regulation by Ca2+ influx through stretch-activated channels.
    Nature. 1987 Nov 5-11;330(6143):66-8 PMID: 2444891
  6. Calcium control of the intestinal microvillus cytoskeleton: its implications for the regulation of microfilament organizations.
    Proc Natl Acad Sci U S A. 1980 Nov;77(11):6458-62 PMID: 6935660
  7. Caldesmon, a novel regulatory protein in smooth muscle and nonmuscle actomyosin systems.
    J Biol Chem. 1991 Jul 5;266(19):12115-8 PMID: 2061300
  8. Chloride transport in human fibroblasts is activated by hypotonic shock.
    Biochem Biophys Res Commun. 1989 May 15;160(3):1330-8 PMID: 2543398
  9. Hormonally induced changes in the cytoskeleton of human thyroid cells in culture.
    J Cell Biol. 1982 Jul;94(1):42-50 PMID: 6288739
  10. Relations between cell volume control, microfilaments and microtubules networks in T2 and PC12 cultured cells.
    J Physiol (Paris). 1988;83(1):43-9 PMID: 3183978
  11. Mechanical transduction in biological systems.
    Crit Rev Biomed Eng. 1988;16(2):141-69 PMID: 2460290
  12. Separate, Ca2+-activated K+ and Cl- transport pathways in Ehrlich ascites tumor cells.
    J Membr Biol. 1986;91(3):227-44 PMID: 2427725
  13. Increase of cytosolic calcium results in formation of F-actin aggregates in endothelial cells.
    Cell Biol Int Rep. 1988 Apr;12(4):321-9 PMID: 3135945
  14. Cation and anion transport pathways in volume regulatory response of human lymphocytes to hyposmotic media.
    Am J Physiol. 1985 May;248(5 Pt 1):C480-7 PMID: 2581453
  15. Mechanisms in volume regulation in Ehrlich ascites tumor cells.
    Ren Physiol Biochem. 1988 May-Oct;11(3-5):221-47 PMID: 3074400
  16. Baroreceptor mechanisms at the cellular level.
    Fed Proc. 1987 Jan;46(1):12-6 PMID: 2433161
  17. Cell swelling activates K+ and Cl- channels as well as nonselective, stretch-activated cation channels in Ehrlich ascites tumor cells.
    J Membr Biol. 1992 Jul;129(1):13-36 PMID: 1383549
  18. High resolution light and electron microscopic localization of tubulin with the IGS (immuno gold staining) method.
    Cell Biol Int Rep. 1981 Sep;5(9):889-99 PMID: 7028278
  19. The mechanism of action of colchicine. Binding of colchincine-3H to cellular protein.
    J Cell Biol. 1967 Aug;34(2):525-33 PMID: 6068183
  20. Effects of osmotic shocks on the ultrastructure of different tissues and cell types.
    Exp Cell Res. 1985 Sep;160(1):106-16 PMID: 4043240
  21. Ion channels activated by osmotic and mechanical stress in membranes of opossum kidney cells.
    J Membr Biol. 1988 Sep;104(3):223-32 PMID: 2463364
  22. Ouabain-resistant mechanism of volume control and the ultrastructural organization of liver slices recovering from swelling in vitro.
    J Membr Biol. 1981 Apr 30;59(3):191-209 PMID: 7195430
  23. Volume-induced increase of K+ and Cl- permeabilities in Ehrlich ascites tumor cells. Role of internal Ca2+.
    J Membr Biol. 1984;78(3):211-22 PMID: 6427469
  24. Incorporation of cytoplasmic vesicles into apical membrane of mammalian urinary bladder epithelium.
    Nature. 1982 Jun 24;297(5868):685-8 PMID: 6283364
  25. Cytoskeleton and ion movements during volume regulation in cultured PC12 cells.
    J Membr Biol. 1993 Apr;133(2):161-70 PMID: 7685822
  26. Involvement of calcium and cytoskeleton in gallbladder epithelial cell volume regulation.
    Am J Physiol. 1985 Jan;248(1 Pt 1):C27-36 PMID: 4038438
  27. The volume regulation in some animal cells.
    Arch Biol (Liege). 1965;76(2):217-32 PMID: 5858817
  28. Caldesmon: a calmodulin-binding actin-regulatory protein.
    Cell Calcium. 1986 Dec;7(5-6):309-27 PMID: 3545485
  29. Activation of Cl-dependent K transport in Ehrlich ascites tumor cells.
    Am J Physiol. 1986 Sep;251(3 Pt 1):C369-79 PMID: 3092674
  30. Effect of adenosine 3',5'-cyclic monophosphate on volume and cytoskeleton of MDCK cells.
    Am J Physiol. 1986 Feb;250(2 Pt 1):C319-24 PMID: 3006500
  31. Membrane potential, anion and cation conductances in Ehrlich ascites tumor cells.
    J Membr Biol. 1989 Oct;111(2):113-31 PMID: 2482360
  32. Ca2(+)-activated cell volume recovery mechanisms.
    Annu Rev Physiol. 1990;52:27-42 PMID: 2184757
  33. Cyclic AMP- and cytochalasin B-induced arborization in cultured aortic smooth muscle cells: its cytopharmacological characterization.
    Cell Tissue Res. 1989 Feb;255(2):435-42 PMID: 2538239
  34. Role of intracellular calcium in cellular volume regulation.
    Am J Physiol. 1986 Jun;250(6 Pt 1):C841-52 PMID: 3087213
  35. Requirement of divalent cations for fast exchange of actin monomers and actin filament subunits.
    J Mol Biol. 1981 Dec 15;153(3):681-93 PMID: 7338922
  36. Volume regulation by human lymphocytes: characterization of the ionic basis for regulatory volume decrease.
    J Cell Physiol. 1982 Aug;112(2):189-96 PMID: 6288741
  37. Volume regulation in rat pheochromocytoma cultured cells submitted to hypoosmotic conditions.
    Arch Int Physiol Biochim Biophys. 1991 Feb;99(1):71-6 PMID: 1713489
  38. Ca2+-dependent K+ transport in the Ehrlich ascites tumor cell.
    Biochim Biophys Acta. 1982 Mar 8;685(3):273-8 PMID: 6279150
  39. Study of microfilaments network during volume regulation process of cultured PC 12 cells.
    Pflugers Arch. 1987 Sep;410(1-2):223-5 PMID: 3684507
  40. Mechanosensitive ion channels.
    J Membr Biol. 1990 Feb;113(2):93-107 PMID: 1690807
  41. Volume regulation by human lymphocytes. Role of calcium.
    J Gen Physiol. 1982 May;79(5):849-68 PMID: 6808083
  42. Fluorescent phallotoxin, a tool for the visualization of cellular actin.
    Proc Natl Acad Sci U S A. 1979 Sep;76(9):4498-502 PMID: 291981
  43. Cell volume regulation in Ehrlich ascites tumor cells.
    J Cell Physiol. 1974 Aug;84(1):115-25 PMID: 4858521
  44. From signal to pseudopod. How cells control cytoplasmic actin assembly.
    J Biol Chem. 1989 Nov 5;264(31):18261-4 PMID: 2681192
  45. Ca2+ control of actin filament length. Effects of macrophage gelsolin on actin polymerization.
    J Biol Chem. 1981 Sep 25;256(18):9693-7 PMID: 6270098
Article Info
Journal
The Journal of membrane biology
Abbr.
J Membr Biol
ISSN
0022-2631
Published
1993-01-00
Pages
55-66
Language
English
Region
United States
NLM ID
0211301
Subset
IM
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