Kinetic properties of a voltage-dependent junctional conductance.
Open Access
- 1 January 1981
- journal article
- research article
- Published by Rockefeller University Press in The Journal of general physiology
- Vol. 77 (1) , 95-117
- https://doi.org/10.1085/jgp.77.1.95
Abstract
We have proposed that the gap junctions between amphibian blastomeres are comprised of voltage-sensitive channels. The kinetic properties of the junctional conductance are here studied under voltage clamp. When the transjunctional voltage is stepped to a new voltage of the same polarity, the junctional conductance changes as a single exponential to a steady-state level. The time constant of the conductance change is determined by the existing transjunctional voltage and is independent of the previous voltage. For each voltage polarity, the relations between voltage, time constant, and steady-state conductance are well modeled by a reversible two-state reaction scheme in which the calculated rate constants for the transitions between the states are exponential functions of voltage. The calculated rate constant for the transition to the low-conductance state is approximately twice as voltage dependent as that for the transition to the high-conductance state. When the transjunctional voltage polarity is reversed, the junctional conductance undergoes a transient recovery. The polarity reversal data are well modeled by a reaction scheme in which the junctional channel has two gates, each with opposite voltage sensitivity, and in which an open gate may close only if the gate in series with it is open. A simple explanation for this contingent gating is a mechanism in which each gate senses only the local voltage drop within the channel.This publication has 19 references indexed in Scilit:
- Voltage Dependence of Junctional Conductance in Early Amphibian EmbryosScience, 1979
- Gap junctions, electrotonic coupling, and intercellular communication.1978
- Matrix protein from Escherichia coli outer membranes forms voltage-controlled channels in lipid bilayers.Proceedings of the National Academy of Sciences, 1978
- Reconstitution in planar lipid bilayers of a voltage-dependent anion-selective channel obtained from paramecium mitochondriaThe Journal of Membrane Biology, 1976
- The nature of the voltage-dependent conductance of the hemocyanin channelThe Journal of Membrane Biology, 1975
- Kinetics of the Opening and Closing of Individual Excitability-Inducing Material Channels in a Lipid BilayerThe Journal of general physiology, 1974
- Slow changes in membrane permeability and long‐lasting action potentials in axons perfused with fluoride solutionsThe Journal of Physiology, 1970
- A quantitative description of membrane current and its application to conduction and excitation in nerveThe Journal of Physiology, 1952
- The components of membrane conductance in the giant axon of LoligoThe Journal of Physiology, 1952
- Currents carried by sodium and potassium ions through the membrane of the giant axon of LoligoThe Journal of Physiology, 1952