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PMID: 2212978 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S. Research Support, U.S. Gov't, P.H.S.

Gating of single non-Shaker A-type potassium channels in larval Drosophila neurons.

The Journal of general physiology ·Vol. 96 ·No. 1 ·1990-07-00 ·Pages 135-65

Solc CK, Aldrich RW

Abstract

The voltage-dependent gating of transient A2-type potassium channels from primary cultures of larval Drosophila central nervous system neurons was studied using whole-cell and single-channel voltage clamp. A2 channels are genetically distinct from the Shaker A1 channels observed in Drosophila muscle, and differ in single-channel conductance, voltage dependence, and gating kinetics. Single A2 channels were recorded and analyzed at -30, -10, +10, and +30 mV. The channels opened in bursts in response to depolarizing steps, with three to four openings per burst and two to three bursts per 480-ms pulse (2.8-ms burst criterion). Mean open durations were in a range of 2-4 ms and mean burst durations in a range of 9-17 ms. With the exception of the first latency distributions, none of the means of the distributions measured showed a consistent trend with voltage. Macroscopic inactivation of both whole-cell A currents and ensemble average currents of single A2 channels was well fitted by a sum of two exponentials. The fast time constants in different cells were in a range of 9-25 ms, and the slow time constants in a range of 60-140 ms. A six-state kinetic model (three closed, one open, two inactivated states) was tested at four command voltages by fitting frequency histograms of open durations, burst durations, burst closed durations, number of openings per burst, and number of bursts per trace. The model provided good fits to these data, as well as to the ensemble averages. With the exception of the rates leading to initial opening, the transitions in the model were largely independent of voltage.

MeSH Terms
Animals Cells, Cultured Drosophila/physiology Electrophysiology In Vitro Techniques Ion Channel Gating/physiology Kinetics Models, Biological Muscles/physiology Neurons/physiology Potassium Channels/physiology
Chemicals
Potassium Channels
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Solc C K
Department of Neurobiology, Stanford University School of Medicine, California 94305-5401.
Aldrich R W
Article Info
Journal
The Journal of general physiology
Abbr.
J Gen Physiol
ISSN
0022-1295
Published
1990-07-00
Pages
135-65
Language
English
Region
United States
NLM ID
2985110R
PMCID
PMC2228982
Subset
IM
Grants
NINDS NIH HHS · NS-23294 · United States
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