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Biophysical Journal 9: 873-883 (1969)
© 1969 the Biophysical Society

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The pH Dependency of Relative Ion Permeabilities in the Crayfish Giant Axon

Alfred Strickholm, B. Gunnar Wallin and Peter Shrager

ABSTRACT

The dependence of the membrane potential on potassium, chloride, and sodium ions, was determined at the pH's of 6.0, 7.5, and 9.0 for the resting and depolarized crayfish ventral nerve cord giant axon. In normal saline (external potassium = 5.4 mM), the dependence of the membrane potential on the external potassium ions decreased with lowered pH while that for chloride increased. In contrast, in the potassium depolarized axon (external potassium = 25 mM), the dependence of the membrane potential on external potassium was minimum around pH 7.5 and increased in either more acidic or basic pH. In addition, the dependence of the membrane potential on external chloride in the depolarized axon was maximum at pH 7.5 and decreased in either more acidic or basic pH. The sodium dependency of the membrane potential was small and relatively unaffected by pH or depolarization. The data are interpreted as indicating a reversible surface membrane protein-phospholipid conformation change which occurs in the transition from the resting to the depolarized axon.




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J. L. Walker Jr. and A. M. Brown
Unified Account of the Variable Effects of Carbon Dioxide on Nerve Cells
Science, March 13, 1970; 167(3924): 1502 - 1504.
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Copyright © 1969 by the Biophysical Society.