Electrophysiological and neurobiochemical evidence for the blockade of a potassium channel by dendrotoxin
- 1 August 1985
- journal article
- research article
- Published by Springer Nature in Naunyn-Schmiedebergs Archiv für experimentelle Pathologie und Pharmakologie
- Vol. 330 (2) , 77-83
- https://doi.org/10.1007/bf00499898
Abstract
The effects of dendrotoxin (DTX), a toxic peptide from Dendroaspis angusticeps venom, were studied electrophysiologically on peripheral frog nerve fibres, and biochemically on large synaptosomes from rat brain. On nerve fibres, DTX reduced the amplitude and prolonged the duration of the action potential; even at 0.1 nmol/l DTX produced significant effects. Maximum block of potassium currents occurred at about 30 nmol/l. Turning on of the remaining current was slowed. Reversibility was incomplete. The reduction of potassium currents was between 31% and 85% at 85 nmol/l DTX (n=8). The remainder appeared to be resistant to DTX. Sodium channels were not affected. On large synaptosomes DTX (above 1 nmol/l) produced a slight depolarization, indicated by an outward shift of the lipophilic cation tetraphenylphosphonium, and promoted the release of radioactivity after preloading with [3H] GABA. DTX had similar potency but lower efficacy in this respect than sea anemone toxin II (ATX II). In contrast to the effects of ATX II, those due to DTX were only partially inhibited by tetrodotoxin. The actions of 4-aminopyridine resembled those of DTX, but the latter was about 500 times more potent. The electrophysiological data provide direct evidence for blockade of a potassium channel by DTX. This action is sufficient to explain the biochemical observations, although additional effects on synaptosomes cannot be excluded.This publication has 24 references indexed in Scilit:
- Preparation of Neurotoxic 3H-β-Bungarotoxin: Demonstration of Saturable Binding to Brain Synapses and Its Inhibition by Toxin IEuropean Journal of Biochemistry, 2005
- Polypeptide neurotoxins from mamba venoms that facilitate transmitter releaseTrends in Pharmacological Sciences, 1984
- Ionophore A23187, Verapamil, Protonophores, and Veratridine Influence the Release of γ‐Aminobutyric Acid from Synaptosomes by Modulation of the Plasma Membrane Potential Rather than the Cytosolic CalciumJournal of Neurochemistry, 1984
- Identification by cross‐linking of a neuronal acceptor protein for dendrotoxin, a convulsant polypeptideFEBS Letters, 1984
- ApaminPharmacology & Therapeutics, 1984
- Tetanus toxin inhibits the evoked outflow of an inhibitory (GABA) and an excitatory (d-aspartate) amino acid from particulate brain cortexToxicon, 1983
- Selective blockage of voltage-dependent K+ channels by a novel scorpion toxinNature, 1982
- Tetanus toxin and botulinum a toxin inhibit acetylcholine release from but not calcium uptake into brain tissueNaunyn-Schmiedebergs Archiv für experimentelle Pathologie und Pharmakologie, 1981
- Effects and Mechanisms of Polypeptide Neurotoxins that Act PresynapticallyAnnual Review of Pharmacology and Toxicology, 1980
- Distribution and mobility of lectin receptors on synaptic membranes of identified neurons in the central nervous system.The Journal of cell biology, 1976