Extracellular Mg2+ Modulates Slow Gating Transitions and the Opening of Drosophila Ether-à-Go-Go Potassium Channels
Open Access
- 28 February 2000
- journal article
- Published by Rockefeller University Press in The Journal of general physiology
- Vol. 115 (3) , 319-338
- https://doi.org/10.1085/jgp.115.3.319
Abstract
We have characterized the effects of prepulse hyperpolarization and extracellular Mg2+ on the ionic and gating currents of the Drosophila ether-à-go-go K+ channel (eag). Hyperpolarizing prepulses significantly slowed channel opening elicited by a subsequent depolarization, revealing rate-limiting transitions for activation of the ionic currents. Extracellular Mg2+ dramatically slowed activation of eag ionic currents evoked with or without prepulse hyperpolarization and regulated the kinetics of channel opening from a nearby closed state(s). These results suggest that Mg2+ modulates voltage-dependent gating and pore opening in eag channels. To investigate the mechanism of this modulation, eag gating currents were recorded using the cut-open oocyte voltage clamp. Prepulse hyperpolarization and extracellular Mg2+ slowed the time course of ON gating currents. These kinetic changes resembled the results at the ionic current level, but were much smaller in magnitude, suggesting that prepulse hyperpolarization and Mg2+ modulate gating transitions that occur slowly and/or move relatively little gating charge. To determine whether quantitatively different effects on ionic and gating currents could be obtained from a sequential activation pathway, computer simulations were performed. Simulations using a sequential model for activation reproduced the key features of eag ionic and gating currents and their modulation by prepulse hyperpolarization and extracellular Mg2+. We have also identified mutations in the S3–S4 loop that modify or eliminate the regulation of eag gating by prepulse hyperpolarization and Mg2+, indicating an important role for this region in the voltage-dependent activation of eag.Keywords
This publication has 48 references indexed in Scilit:
- Potassium Currents Expressed from Drosophila and Mouse eag cDNAs in Xenopus OocytesNeuropharmacology, 1996
- Transfer of twelve charges is needed to open skeletal muscle Na+ channels.The Journal of general physiology, 1995
- Evidence for voltage-dependent S4 movement in sodium channelsNeuron, 1995
- Shaker potassium channel gating. III: Evaluation of kinetic models for activation.The Journal of general physiology, 1994
- Shaker potassium channel gating. II: Transitions in the activation pathway.The Journal of general physiology, 1994
- Ether-à-go-go encodes a voltage-gated channel permeable to K+ and Ca2+ and modulated by cAMPNature, 1993
- Voltage-sensing residues in the S4 region of a mammalian K+ channelNature, 1991
- Determination of the subunit stoichiometry of a voltage-activated potassium channelNature, 1991
- Expression of functional potassium channels from Shaker cDNA in Xenopus oocytesNature, 1988
- Currents Related to Movement of the Gating Particles of the Sodium ChannelsNature, 1973