Gating of Na channels. Inactivation modifiers discriminate among models.
Open Access
- 1 February 1987
- journal article
- research article
- Published by Rockefeller University Press in The Journal of general physiology
- Vol. 89 (2) , 253-274
- https://doi.org/10.1085/jgp.89.2.253
Abstract
Macroscopic Na currents were recorded from N18 neuroblastoma cells by the whole-cell voltage-clamp technique. Inactivation of the Na currents was removed by intracellular application of proteolytic enzymes, trypsin, .alpha.-chymotrypsin, papain, or ficin, or bath application of N-bromoacetamide. Unlike what had been reported in squid giant axons and frog skeletal muscle fibers, these treatments often increased Na currents at all test pulse potentials. In addition, removal of inactivation gating shifted the midpoint of the peak Na conductance-voltage curve in the negative direction by 26 mV on average and greatly prolonged the rising phase of Na currents for small depolarizations. Polypeptide toxins from Leiurus quinquestriatus scorption and Goniopora coral, which slow inactivation in adult nerve and muscle cells, also increase the peak Na conductance and shift the peak conductance curve in the negative direction by 7-10 mV in neuroblastoma cells. Control experiments argue against ascribing the shifts to series resistance artifacts or to spontaneous changes of the voltage dependence of Na channel kinetics. The negative shift of the peak conductance curve, the increase in peak Na currents, and the prolongation of the rise at small depolarization after removal of inactivation are consistent with gating kinetic models for neuroblastoma cell Na channels, where inactivation follows nearly irreversible activation with a relaively high, voltage-independent rate constant and Na channels open only once in a depolarization. As the same kind of experiment does not give apparent shifting of activation and prolongation of the rising phase of Na currents in adult axon and muscle membranes, the Na channels of these other membranes probably open more than once in a depolarization.This publication has 47 references indexed in Scilit:
- Destruction of the sodium conductance inactivation by a specific protease in perfused nerve fibres from Loligo.The Journal of Physiology, 1976
- Decreased rate of sodium conductance inactivation in the node of Ranvier induced by a polypeptide toxin from sea anemoneBiochimica et Biophysica Acta (BBA) - Biomembranes, 1976
- Purification of a toxic protein from scorpion venom which activates the action potential Na+ ionophore.Journal of Biological Chemistry, 1976
- Membrane potential dependent binding of scorpion toxin to action potential Na+ ionophore.Proceedings of the National Academy of Sciences, 1976
- Gating in Sodium Channels of NerveAnnual Review of Physiology, 1976
- SPECIFIC CHEMICAL GROUPS INVOLVED IN THE CONTROL OF IONIC CONDUCTANCE IN NERVEfn1Annals of the New York Academy of Sciences, 1975
- Effects of proteolytic enzymes on ionic conductances of squid axon membranesThe Journal of Membrane Biology, 1975
- Activation of the action potential Na+ ionophore of cultured neuroblastoma cells by veratridine and batrachotoxinJournal of Biological Chemistry, 1975
- Die Wirkung von Skorpiongift auf die Ionenströme des Ranvierschen SchnürringsPflügers Archiv - European Journal of Physiology, 1968
- EFFECTS OF VARIOUS POTASSIUM SALTS AND PROTEASES UPON EXCITABILITY OF INTRACELLULARLY PERFUSED SQUID GIANT AXONSProceedings of the National Academy of Sciences, 1964