Simulation of Na channel inactivation by thiazine dyes.
Open Access
- 1 November 1982
- journal article
- research article
- Published by Rockefeller University Press in The Journal of general physiology
- Vol. 80 (5), 641-662
- https://doi.org/10.1085/jgp.80.5.641
Abstract
Some dyes of the methylene blue family serve as artificial inactivators of the sodium channels when present inside squid axons at a concentration of approximately 0.1 mM. The dyes restore a semblance of inactivation after normal inactivation has been destroyed by pronase. In fibers that inactivate normally, the dyes hasten the decay of sodium current. Many dye-blocked channels conduct transiently on exit of the dye molecule after repolarization to the holding potential. In contrast, normally inactivated channels do not conduct during recovery from inactivation. Kinetic evidence shows that inactivation of a dye-blocked channel is unlikely or impossible, which suggests that dye molecules compete with inactivation "particles" for the same site. In the absence of tetrodotoxin, the dyes do not affect the ON gating current unless the interpulse interval is very short. If sufficient equilibration time is allowed during a pulse, the initial amplitude of the OFF gating current is reduced to near zero. This suggests that a dye molecule is a Na channel completely blocks that channel's gating current, even the fraction that is resistant to normal inactivation. Dyes block INa and Ig with the same time course. This provides the strongest evidence to date that virtually all of recorded "gating current" is associated with Na channels. Tetrodotoxin greatly slows dissociation of dye molecules from Na channels and reduced gating current during both opening and closing of the channels.This publication has 22 references indexed in Scilit:
- Internal and external application of photodynamic sensitizers on squid giant axonsThe Journal of Membrane Biology, 1977
- Inactivation of the sodium channel. I. Sodium current experiments.The Journal of general physiology, 1977
- Effects of strychnine on the sodium conductance of the frog node of Ranvier.The Journal of general physiology, 1977
- Inactivation of the asymmetrical displacement current in giant axons of Loligo forbesi.The Journal of Physiology, 1977
- Local anesthetics: hydrophilic and hydrophobic pathways for the drug-receptor reaction.The Journal of general physiology, 1977
- Kinetic analysis of pancuronium interaction with sodium channels in squid axon membranes.The Journal of general physiology, 1977
- Destruction of the sodium conductance inactivation by a specific protease in perfused nerve fibres from Loligo.The Journal of Physiology, 1976
- MECHANISM OF FREQUENCY-DEPENDENT INHIBITION OF SODIUM CURRENTS IN FROG MYELINATED NERVE BY LIDOCAINE DERIVATIVE GEA 9681975
- Destruction of Sodium Conductance Inactivation in Squid Axons Perfused with PronaseThe Journal of general physiology, 1973
- Photodynamic Alteration of Sodium Currents in Lobster AxonsThe Journal of general physiology, 1972