Chemically induced K+ conduction noise in squid axon
- 1 June 1979
- journal article
- research article
- Published by Springer Nature in The Journal of Membrane Biology
- Vol. 47 (2) , 99-112
- https://doi.org/10.1007/bf01876111
Abstract
Internal perfusion of tetraethylammonium ions (TEA) in squid axons produces a significant high frequency noise component. Although internal TEA suppresses the potassium conductance (G K) noise at relatively low frequencies, it induces high frequency noise which exceeds the intensity of the normal potassium and sodium noise. In addition, the induced noise is dependent on the presence of internal potassium ions (K+) suggesting that this source of noise arises from a modulation of the K+ conductance due to the blocking and unblocking of the K+ channel. The simplest model describing the TEA data is a two-step sequential pseudo-unimolecular reaction where TEA binds during an open conductance state. A unit channel conductance of 2 pS is estimated from the TEA data as well as noise induced by triethyldecylammonium (TEDA) ions. Thus, these data are consistent with the hypothesis that the channel is blocked whenever the quaternary ammonium ion binding site, located near or within the K+ channel, is occupied.This publication has 26 references indexed in Scilit:
- K+ conduction phenomena applicable to the low frequency impedance of squid axonThe Journal of Membrane Biology, 1979
- K+ Conduction description from the low frequency impedance and admittance of squid axonThe Journal of Membrane Biology, 1977
- CONDUCTANCE FLUCTUATIONS AND IONIC PORES IN MEMBRANESAnnual Review of Biophysics and Bioengineering, 1977
- Sodium-Specific Membrane Channels of Frog Skin Are Pores: Current Fluctuations Reveal High TurnoverScience, 1977
- Potassium-Ion conduction noise in squid axon membraneThe Journal of Membrane Biology, 1975
- Noise measurements in squid axon membraneThe Journal of Membrane Biology, 1975
- Patch voltage clamp of squid axon membraneThe Journal of Membrane Biology, 1975
- Fluctuations and noise in kinetic systems III. Cycling steady-state modelsJournal of Theoretical Biology, 1975
- Interaction of Tetraethylammonium Ion Derivatives with the Potassium Channels of Giant AxonsThe Journal of general physiology, 1971
- Time Course of TEA+-Induced Anomalous Rectification in Squid Giant AxonsThe Journal of general physiology, 1966