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The Permeability of the Sodium Channel to Organic Cations in Myelinated Nerve

The Journal of General Physiology · 1971 · Vol. 58(6) · pp. 599–619
Bertil Hille

Abstract

The relative permeability of sodium channels to 21 organic cations was studied in myelinated nerve fibers. Ionic currents under voltage-clamp conditions were measured in sodium-free solutions containing the test cation. The measured reversal potential and the Goldman equation were used to calculate relative permeabilities. The permeability sequence was: sodium approximately hydroxylamine > hydrazine > ammonium approximately formamidine approximately guanidine approximately hydroxyguanidine > aminoguanididine >> methylamine. The cations of the following compounds were not measurably permeant: N-methylhydroxylamine, methylhydrazine, methylamine, methylguanidine, acetamidine, dimethylamine, tetramethylammonium, tetraethylammonium, ethanolamine, choline, tris(hydroxymethyl)amino methane, imidazole, biguanide, and triaminoguanidine. Thus methyl and methylene groups render cations impermeant. The results can be explained on geometrical grounds by assuming that the sodium channel is an oxygen-lined pore about 3 A by 5 A in cross-section. One pair of oxygens is assumed to be an ionized carboxylic acid. Methyl and amino groups are wider than the 3 A width of the channel. Nevertheless, cations containing amino groups can slide through the channel by making hydrogen bonds to the oxygens. However, methyl groups, being unable to form hydrogen bonds, are too wide to pass through.

Neuroscience and Neural EngineeringElectrochemical Analysis and ApplicationsNeuroscience and Neuropharmacology ResearchSodium channelSodiumPermeability (electromagnetism)ChemistryBiophysicsBiochemistryMembraneOrganic chemistryBiology

MeSH terms

AmidinesQuaternary Ammonium CompoundsAnimalsAnuraBiguanidesBromidesCarboxylic AcidsCell Membrane PermeabilityChemistryChloridesCholineGuanidinesHydrazinesHydrogenHydroxylamines

Funding

  • U.S. Public Health Service
Citations
748
FWCI
8.63
field-weighted impact
References
86
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99%
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Citations per year
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References
Cation Selective Glass Electrodes and their Mode of Operation
Biophysical Journal · 1962 · 850 citations
The action of calcium on the electrical properties of squid axons
The Journal of Physiology · 1957 · 1,836 citations
Charges and Potentials at the Nerve Surface
The Journal of General Physiology · 1968 · 561 citations
Pharmacological Modifications of the Sodium Channels of Frog Nerve
The Journal of General Physiology · 1968 · 487 citations
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