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PMID: 2437657 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.

Single-channel and genetic analyses reveal two distinct A-type potassium channels in Drosophila.

Science (New York, N.Y.) ·Vol. 236 ·No. 4805 ·1987-05-29 ·Pages 1094-8

Solc CK, Zagotta WN, Aldrich RW

Abstract

Whole-cell and single-channel voltage-clamp techniques were used to identify and characterize the channels underlying the fast transient potassium current (A current) in cultured myotubes and neurons of Drosophila. The myotube (A1) and neuronal (A2) channels are distinct, differing in conductance, voltage dependence, and gating kinetics. The myotube currents have a faster and more voltage-dependent macroscopic inactivation rate, a larger steady-state component, and a less negative steady-state inactivation curve than the neuronal currents. The myotube channels have a conductance of 12 to 16 picosiemens, whereas the neuronal channels have a conductance of 5 to 8 picosiemens. In addition, the myotube channel is affected by Shaker mutations, whereas the neuronal channel is not. Together, these data suggest that the two channels are separate molecular structures, the expression of which is controlled, at least in part, by different genes.

MeSH Terms
Drosophila/genetics,metabolism Electrophysiology Ion Channels/metabolism Muscles/metabolism Mutation Neurons/metabolism Potassium/metabolism
Chemicals
Ion Channels Potassium
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Solc C K
Zagotta W N
Aldrich R W
Article Info
Journal
Science (New York, N.Y.)
Abbr.
Science
ISSN
0036-8075
Published
1987-05-29
Pages
1094-8
Language
English
Region
United States
NLM ID
0404511
Subset
IM
Grants
NINDS NIH HHS · NS 07158-07 · United States
NINDS NIH HHS · NS23294 · United States
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