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PMID: 529122 Published · ppublish English Journal Article

Ionic conductances of membranes in ciliated and deciliated Paramecium.

The Journal of physiology ·Vol. 296 ·1979-11-00 ·Pages 49-60

Machemer H, Ogura A

Abstract

1. Paramecium caudatum was deciliated with ethanol. The ionic conductance of the membrane was investigated with constant current, voltage clamp and mechanical stimuli. 2. The resting potential was not modified by the removal of the cilia. The dependence of the resting potential on the extracellular concentrations of Ca and K was the same in deciliated and control cells. 3. The input resistance in deciliated and ciliated cells increased after the ethanol treatment. 4. The membrane capacitance decreased to 48% after deciliation, suggesting that the ciliary surface area is equal to the somatic surface area. 5. Deciliation completely removed the regenerative response (graded action potential) elicited by depolarizing current pulses or mechanical stimuli. 6. Deciliated cells retained the depolarizing and hyperpolarizing mechanoreceptor responses. 7. Voltage-clamp experiments demonstrated the loss of the early inward current in deciliated cells; it was restored during ciliary regeneration. Steady-state current-voltage relationships were unchanged by deciliation. 8. The time courses of the recovery of the membrane capacitance and of the early inward current were similar, suggesting that the number of voltage-sensitive Ca channels is proportional to the ciliary membrane area. 9. We conclude that the voltage-sensitive Ca channels reside in the ciliary membrane (in confirmation of Dunlap, 1976; Ogura & Takahashi, 1976), while mechanoreceptor channels, rectifier channels and resting conductances are localized in the somatic membrane.

MeSH Terms
Animals Calcium/metabolism Cell Membrane/physiology Cilia/physiology Electric Conductivity Intracellular Membranes/physiology Ion Channels/physiology Mechanoreceptors/physiology Membrane Potentials Paramecium/physiology Potassium/metabolism
Chemicals
Ion Channels Potassium Calcium
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Machemer H
Ogura A
References (9)
9 references, click to expand
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    J Physiol. 1978 Jan;274:639-54 PMID: 415134
  2. Are receptor-activated ciliary motor responses mediated through voltage or current?
    Nature. 1978 Nov 16;276(5685):285-7 PMID: 101892
  3. Motor activity and bioelectric control of cilia.
    Fortschr Zool. 1977;24(2-3):195-210 PMID: 415955
  4. Separation of membrane currents using a Paramecium mutant.
    Nature. 1977 Jul 14;268(5616):120-4 PMID: 593305
  5. Artificial deciliation causes loss of calcium-dependent responses in Paramecium.
    Nature. 1976 Nov 11;264(5582):170-2 PMID: 995200
  6. Genetic modification of electric properties in an excitable membrane (paramecium-calcium conductance-electrophysiological measurements-membrane mutant).
    Proc Natl Acad Sci U S A. 1972 Jan;69(1):93-7 PMID: 4500559
  7. Electrophysiological control of reversed ciliary beating in Paramecium.
    J Gen Physiol. 1973 May;61(5):572-87 PMID: 4705638
  8. Sensory mechanisms in Paramecium. I. Two components of the electric response to mechanical stimulation of the anterior surface.
    J Exp Biol. 1972 Jun;56(3):683-94 PMID: 4668721
  9. Bioelectric control of ciliary activity.
    Science. 1972 May 5;176(4034):473-81 PMID: 5032346
Article Info
Journal
The Journal of physiology
Abbr.
J Physiol
ISSN
0022-3751
Published
1979-11-00
Pages
49-60
Language
English
Region
England
NLM ID
0266262
PMCID
PMC1279063
Subset
IM
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