A cephalin-cholesterol membrane model is described whose electrical resistance can be reversibly raised by CaCl2 or lowered by KCl or NaCl whether these ions are added to the membrane by mechanical immersion or are driven in electrically. Either KCl or NaCl acts antagonistically to CaCl2. Experiments with controlled pH indicate that the above effects depend somehow on combination of the cations with the phospholipid acidic groups. Also, they are correlated with decreased membrane hydration in CaCl2 solutions, and increased hydration in KCl or NaCl solutions. It is conjectured that cells may regulate their transsurface ion pathways and fluxes by K-Ca competition for negatively charged binding sites on plasma membrane phospholipid. It is regarded as a corollary to say that a fundamental event in excitation is displacement of membrane Ca from such a site by catelectrotonically propelled K.
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1 May 1962
Article|
May 01 1962
Phospholipid-Cholesterol Membrane Model : Control of resistance by ions or current flow
Julian M. Tobias,
Julian M. Tobias
From the Department of Physiology, University of Chicago
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Daniel P. Agin,
Daniel P. Agin
From the Department of Physiology, University of Chicago
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Raymond Pawlowski
Raymond Pawlowski
From the Department of Physiology, University of Chicago
Search for other works by this author on:
Julian M. Tobias
From the Department of Physiology, University of Chicago
Daniel P. Agin
From the Department of Physiology, University of Chicago
Raymond Pawlowski
From the Department of Physiology, University of Chicago
Received:
December 19 1961
Online ISSN: 1540-7748
Print ISSN: 0022-1295
Copyright, 1962, by The Rockefeller Institute Press
1962
J Gen Physiol (1962) 45 (5): 989–1001.
Article history
Received:
December 19 1961
Citation
Julian M. Tobias, Daniel P. Agin, Raymond Pawlowski; Phospholipid-Cholesterol Membrane Model : Control of resistance by ions or current flow . J Gen Physiol 1 May 1962; 45 (5): 989–1001. doi: https://doi.org/10.1085/jgp.45.5.989
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