Key result
Muscarine and oxotremorine are significant agonists of muscle-type nicotinic acetylcholine receptor channels, considering both receptor affinity and agonist efficacy.
Muscarine and oxotremorine act as significant agonists of muscle-type nicotinic acetylcholine receptors, providing insights into structure-function relationships at the transmitter binding site.
These agonist kinetics at recombinant nAChR extend basic models; leaves open clinical translation to neuromuscular blockade.
The dose-response parameters of recombinant mouse adult neuromuscular acetylcholine receptor channels (nAChR) activated by carbamylcholine, nicotine, muscarine and oxotremorine were measured. Rate constants for agonist association and dissociation, and channel opening and closing, were estimated from single-channel kinetic analysis. 2. The dissociation equilibrium constants were (mM): ACh (0. 16) carbamylcholine (5.1)>oxotremorine M (0.6)>nicotine (0. 5)>muscarine (0.15). 4. Rat neuronal alpha4beta2 nAChR can be activated by all of the agonists. However, detailed kinetic analysis was impossible because the recordings lacked clusters representing the activity of a single receptor complex. Thus, the number of channels in the patch was unknown and the activation rate constants could not be determined. 5. Considering both receptor affinity and agonist efficacy, muscarine and oxotremorine are significant agonists of muscle-type nAChR. The results are discussed in terms of structure-function relationships at the nAChR transmitter binding site.
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Akk et al. (1999) studied this question. Carbamylcholine, nicotine, muscarine and oxotremorine was evaluated on Dose-response parameters and dissociation equilibrium constants. Muscarine and oxotremorine are significant agonists of muscle-type nicotinic acetylcholine receptor channels, considering both receptor affinity and agonist efficacy.
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