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PMID: 2324990 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

A K+ channel in Xenopus nerve fibres selectively blocked by bee and snake toxins: binding and voltage-clamp experiments.

The Journal of physiology ·Vol. 420 ·1990-01-00 ·Pages 365-85

Bräu ME, Dreyer F, Jonas P, Repp H, Vogel W

Abstract

1. The effects of mast cell degranulating peptide (MCDP), a toxin from the honey bee, and of dendrotoxin (DTX), a toxin from the green mamba snake, were studied in voltage-clamp experiments with myelinated nerve fibres of Xenopus. 2. MCDP and DTX blocked part of the K+ current. About 20% of the K+ current, however, was resistant to the toxins even in high concentrations. In Ringer solution half-maximal block was reached with concentrations of 33 nM-MCDP and 11 nM-DTX. In high-K+ solution the potency of both toxins was lower. beta-Bungarotoxin (beta-BuTX), another snake toxin, also blocked part of the K+ current, but was less potent than MCDP and DTX. 3. Tail currents in high-K+ solution were analysed and three K+ current components were separated according to Dubois (1981 b). Both MCDP and DTX selectively blocked a fast deactivating, slowly inactivating K+ current component which steeply activates between E = -60 mV and E = -40 mV (component f1). In concentrations around 100 nM, MCDP and DTX blocked neither the slow K+ current (component s) nor the fast deactivating, rapidly inactivating K+ current which activates between E = -40 mV and E = 20 mV (component f2). Similar results could be derived from K+ outward currents in Ringer solution. In high-K+, IC50 of MCDP for component f1 was 99 nM, whereas it was 7.6 microM for f2. Corresponding values for DTX are 68 nM and 1.8 microM. 4. Binding studies with nerve fibre membranes of Xenopus reveal high-affinity binding sites for 125I-labelled DTX (KD = 22 pM in Ringer solution and 81 pM in high-K+ solution). 125I-labelled DTX can be displaced from its sites completely by unlabelled DTX, toxin I (black mamba toxin), MCDP, and partially by beta-BuTX. 5. Immunocytochemical staining demonstrates that binding sites for DTX are present in nodal and paranodal regions of the axonal membrane. 6. The axonal membrane of motor and sensory nerve fibres is equipped with three types of well-characterized K+ channels and constitutes so far the best preparation to study MCDP- and DTX-sensitive K+ channels with electrophysiological and biochemical methods.

MeSH Terms
Animals Bee Venoms/pharmacology Binding Sites Bungarotoxins/pharmacology Dose-Response Relationship, Drug Elapid Venoms/pharmacology In Vitro Techniques Membrane Potentials/drug effects Nerve Fibers, Myelinated/drug effects Neurotoxins/pharmacology Peptides/pharmacology Potassium Channels/drug effects Xenopus laevis
Chemicals
Bee Venoms Bungarotoxins Elapid Venoms Neurotoxins Peptides Potassium Channels mast cell degranulating peptide dendrotoxin
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Bräu M E
Physiologisches Institut, Universität Giessen, FRG.
Dreyer F
Jonas P
Repp H
Vogel W
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Article Info
Journal
The Journal of physiology
Abbr.
J Physiol
ISSN
0022-3751
Published
1990-01-00
Pages
365-85
Language
English
Region
England
NLM ID
0266262
PMCID
PMC1190055
Subset
IM
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