The effect of reducing the external sodium concentration, [Na]o, on resting potential, action potential, membrane current, and transient current reversal potential in Myxicola giant axons was studied. Tris chloride was used as a substitute for NaCl. Preliminary experiments were carried out to insure that the effect of Tris substitution could be attributed entirely to the reduction in [Na]o. Both choline and tetramethylammonium chloride were found to have additional effects on the membrane. The transient current is carried largely by Na, while the delayed current seems to be independent of [Na]o. Transient current reversal potential behaves much like a pure Nernst equilibrium potential for sodium. Small deviations from this behavior are consistent with the possibility of some small nonsodium component in the transient current. An exact PNa/PK for the transient current channels could not be computed from these data, but is certainly well greater than unity and possibly quite large. The peak of the action potential varied with [Na]o as expected for a sodium action potential with some substantial potassium permeability at the time of peak. Resting membrane potential is independent of [Na]o. This finding is inconsistent with the view that the resting membrane potential is determined only by the distribution of K and Na, and PNa/PK. It is suggested that PNa/PK's obtained from resting membrane potential-potassium concentration data do not always have the physical meaning generally attributed to them.
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1 December 1969
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December 01 1969
Current Separations in Myxicola Giant Axons
L. Goldman,
L. Goldman
From the Department of Physiology, School of Medicine, University of Maryland, Baltimore, Maryland 21201, and the Laboratory of Biophysics, the National Institute of Neurological Diseases and Stroke, National Institutes of Health, Bethesda, Maryland 20014
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L. Binstock
L. Binstock
From the Department of Physiology, School of Medicine, University of Maryland, Baltimore, Maryland 21201, and the Laboratory of Biophysics, the National Institute of Neurological Diseases and Stroke, National Institutes of Health, Bethesda, Maryland 20014
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L. Goldman
From the Department of Physiology, School of Medicine, University of Maryland, Baltimore, Maryland 21201, and the Laboratory of Biophysics, the National Institute of Neurological Diseases and Stroke, National Institutes of Health, Bethesda, Maryland 20014
L. Binstock
From the Department of Physiology, School of Medicine, University of Maryland, Baltimore, Maryland 21201, and the Laboratory of Biophysics, the National Institute of Neurological Diseases and Stroke, National Institutes of Health, Bethesda, Maryland 20014
Received:
May 26 1969
Online ISSN: 1540-7748
Print ISSN: 0022-1295
Copyright © 1969 by The Rockefeller University Press
1969
J Gen Physiol (1969) 54 (6): 741–754.
Article history
Received:
May 26 1969
Citation
L. Goldman, L. Binstock; Current Separations in Myxicola Giant Axons . J Gen Physiol 1 December 1969; 54 (6): 741–754. doi: https://doi.org/10.1085/jgp.54.6.741
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