Related Experiment Video
Updated: Aug 8, 2026

Exploring Arterial Smooth Muscle Kv7 Potassium Channel Function using Patch Clamp Electrophysiology and Pressure Myography
Published on: September 14, 2012
Structural and functional features of noxiustoxin: a K+ channel blocker
1Department of Molecular Recognition and Structural Biology, Universidad Nacional Autónoma de México, Avenida Universidad, Cuernavaca, Mexico.
Abstract:
Binding of [125I]-Noxiustoxin to rat brain synaptosome membranes and displacement with synthetic peptides corresponding to the amino acid sequence of Noxiustoxin, show that the N-terminal segment of this toxin is implicated in the recognition of brain K(+)-channels. Cleavage of NTX with cyanogen bromide, endopeptidase V8 from Staphylococcus aureus and endopeptidase Lys-C support these findings. On the contrary, a synthetic C-terminal tetradecapeptide of charybodotoxin (ChTX), shows that in this K(+)-channel blocker, the C-terminal region, rather than the N-terminal is capable of displacing 125[I]-NTX binding to brain membranes.
Related Concept Videos
Ligand-Gated Ion Channel Receptor: Gating Mechanism
Cholinergic Receptors: Nicotinic
There are two types of nicotinic receptors: neuromuscular (NM/NM/N1) and neuronal (NN/NN/N2). The two families differ based on their location and selectivity to...
Cholinergic Antagonists: Chemistry and Structure-Activity Relationship
Nondepolarizing (Competitive) Neuromuscular Blockers: Mechanism of Action
Competitive antagonists prevent acetylcholine from binding to its receptor, inhibiting membrane depolarization. Without conformational changes or intrinsic...
Depolarizing Blockers: Mechanism of Action
Succinylcholine is the most commonly used depolarizing blocker. Chemically, it constitutes two molecules of acetylcholine joined together by an acetate methyl group. They act on the receptors in the same way as acetylcholine. Because succinylcholine...
Antihypertensive Drugs: Action of Calcium Channel Blockers

