Abstract
Dendrotoxin, a small single-chain protein from the venom of Dendroaspis angusticeps, is highly toxic following intracerebroventricular injection into rats. Voltage-clamp analysis of CA1 neurons in hippocampal slices, treated with tetrodotoxin, revealed that nanomolar concentrations of dendrotoxin reduce selectively a transient, voltage-dependent K conductance. Epileptiform activity known to be induced by dendrotoxin can be attributed to such an action. Membrane currents not affected directly by the toxin include (i) Ca-activated K conductance; (ii) noninactivating voltage-dependent K conductance; (iii) inactivating and noninactivating Ca conductances; (iv) persistent inward (anomalous) rectifier current. Persistence of the effects of the toxin when Cd was included to suppress spontaneous transmitter release indicates a direct action on the neuronal membrane. Using biologically active, 125I-labeled dendrotoxin, protein acceptor sites of high affinity were detected on cerebrocortical synaptosomal membranes and sections of rat brain. In hippocampus, toxin binding was shown autoradiographically to reside in synapse-rich and white matter regions, with lower levels in cell body layers. This acceptor is implicated in the action of toxin because its affinities for dendrotoxin congeners are proportional to their central neurotoxicities and potencies in reducing the transient, voltage-dependent K conductance.
MeSH Terms
Animals
Autoradiography
Cell Membrane/drug effects
Elapid Venoms/metabolism,pharmacology
Electric Conductivity
Guinea Pigs
Hippocampus/drug effects,physiology
In Vitro Techniques
Ion Channels/drug effects,metabolism
Membrane Potentials
Membrane Proteins/metabolism
Rats
Receptors, Drug/metabolism
Chemicals
Elapid Venoms
Ion Channels
Membrane Proteins
Receptors, Drug
dendrotoxin
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Halliwell J V
Othman I B
Pelchen-Matthews A
Dolly J O
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