A Mutation in S6 of Shaker Potassium Channels Decreases the K+ Affinity of an Ion Binding Site Revealing Ion–Ion Interactions in the Pore
Open Access
- 1 August 1998
- journal article
- Published by Rockefeller University Press in The Journal of general physiology
- Vol. 112 (2) , 243-257
- https://doi.org/10.1085/jgp.112.2.243
Abstract
Under physiological conditions, potassium channels are extraordinarily selective for potassium over other ions. However, in the absence of potassium, certain potassium channels can conduct sodium. Sodium flux is blocked by the addition of low concentrations of potassium. Potassium affinity, and therefore the ability to block sodium current, varies among potassium channel subtypes (Korn, S.J., and S.R. Ikeda. 1995. Science. 269:410–412; Starkus, J.G., L. Kuschel, M.D. Rayner, and S.H. Heinemann. 1997. J. Gen. Physiol. 110:539–550). The Shaker potassium channel conducts sodium poorly in the presence of very low (micromolar) potassium due to its high potassium affinity (Starkus, J.G., L. Kuschel, M.D. Rayner, and S.H. Heinemann. 1997. J. Gen. Physiol. 110:539–550; Ogielska, E.M., and R.W. Aldrich. 1997. Biophys. J. 72:A233 [Abstr.]). We show that changing a single residue in S6, A463C, decreases the apparent internal potassium affinity of the Shaker channel pore from the micromolar to the millimolar range, as determined from the ability of potassium to block the sodium currents. Independent evidence that A463C decreases the apparent affinity of a binding site in the pore comes from a study of barium block of potassium currents. The A463C mutation decreases the internal barium affinity of the channel, as expected if barium blocks current by binding to a potassium site in the pore. The decrease in the apparent potassium affinity in A463C channels allows further study of possible ion interactions in the pore. Our results indicate that sodium and potassium can occupy the pore simultaneously and that multiple occupancy results in interactions between ions in the channel pore.Keywords
This publication has 54 references indexed in Scilit:
- The Structure of the Potassium Channel: Molecular Basis of K + Conduction and SelectivityScience, 1998
- The charybdotoxin family of K+ channel-blocking peptidesNeuron, 1995
- Pore loops: An emerging theme in ion channel structureNeuron, 1995
- Shaker potassium channel gating. II: Transitions in the activation pathway.The Journal of general physiology, 1994
- Evidence that the S6 segment of the Shaker voltage-gated K+ channel comprises part of the poreNature, 1994
- Determination of the subunit stoichiometry of a voltage-activated potassium channelNature, 1991
- Potassium blocks barium permeation through a calcium-activated potassium channel.The Journal of general physiology, 1988
- K+ channels close more slowly in the presence of external K+ and Rb+Nature, 1981
- Anomalous permeabilities of the egg cell membrane of a starfish in K+-Tl+ mixtures.The Journal of general physiology, 1977
- Negative Conductance Caused by Entry of Sodium and Cesium Ions into the Potassium Channels of Squid AxonsThe Journal of general physiology, 1972