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PMID: 8389006 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Functional expression of a rapidly inactivating neuronal calcium channel.

Nature ·Vol. 363 ·No. 6428 ·1993-06-03 ·Pages 455-8

Ellinor PT, Zhang JF, Randall AD, Zhou M, Schwarz TL, Tsien RW, Horne WA

Abstract

Diverse types of calcium channels in vertebrate neurons are important in linking electrical activity to transmitter release, gene expression and modulation of membrane excitability. Four classes of Ca2+ channels (T, N, L and P-type) have been distinguished on the basis of their electrophysiological and pharmacological properties. Most of the recently cloned Ca2+ channels fit within this functional classification. But one major branch of the Ca2+ channel gene family, including BII (ref. 15) and doe-1 (ref. 16), has not been functionally characterized. We report here the expression of doe-1 and show that it is a high-voltage-activated (HVA) Ca2+ channel that inactivates more rapidly than previously expressed calcium channels. Unlike L-type or P-type channels, doe-1 is not blocked by dihydropyridine antagonists or the peptide toxin omega-Aga-IVA, respectively. In contrast to a previously cloned N-type channel, doe-1 block by omega-CTx-GVIA requires micromolar toxin and is readily reversible. Unlike most HVA channels, doe-1 also shows unusual sensitivity to block by Ni2+. Thus, doe-1 is an HVA Ca2+ channel with novel functional properties. We have identified a Ca2+ channel current in rat cerebellar granule neurons that resembles doe-1 in many kinetic and pharmacological features.

MeSH Terms
Animals Calcium Channels/drug effects,genetics,metabolism Cerebral Cortex/cytology Cloning, Molecular Dihydropyridines/antagonists & inhibitors In Vitro Techniques Membrane Potentials Mollusk Venoms/pharmacology Neurons/metabolism Nickel/pharmacology Oocytes Peptides/pharmacology Peptides, Cyclic/pharmacology Rabbits Rats Skates, Fish Spider Venoms/pharmacology Xenopus omega-Agatoxin IVA omega-Conotoxin GVIA omega-Conotoxins
Chemicals
Calcium Channels Dihydropyridines Mollusk Venoms Peptides Peptides, Cyclic Spider Venoms omega-Agatoxin IVA omega-Conotoxins omega-conotoxin-MVIIC 1,4-dihydropyridine Nickel omega-Conotoxin GVIA
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Ellinor P T
Department of Molecular and Cellular Physiology, Stanford University Medical Center, California 94305.
Zhang J F
Randall A D
Zhou M
Schwarz T L
Tsien R W
Horne W A
Article Info
Journal
Nature
Abbr.
Nature
ISSN
0028-0836
Published
1993-06-03
Pages
455-8
Language
English
Region
England
NLM ID
0410462
Subset
IM
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