TY - JOUR
T1 - Temperature dependence of acetylcholine receptor channels activated by different agonists
AU - Gupta, Shaweta
AU - Auerbach, Anthony
N1 - Funding Information:
This work was supported by National Institutes of Health grant NS-23513.
PY - 2011/2/16
Y1 - 2011/2/16
N2 - The temperature dependence of agonist binding and channel gating were measured for wild-type adult neuromuscular acetylcholine receptors activated by acetylcholine, carbamylcholine, or choline. With acetylcholine, temperature changed the gating rate constants (Q10 ≈ 3.2) but had almost no effect on the equilibrium constant. The enthalpy change associated with gating was agonist-dependent, but for all three ligands it was approximately equal to the corresponding free-energy change. The equilibrium dissociation constant of the resting conformation (Kd), the slope of the rate-equilibrium free-energy relationship (Φ), and the acetylcholine association and dissociation rate constants were approximately temperature-independent. In the mutant αG153S, the choline association and dissociation rate constants were temperature-dependent (Q10 ≈ 7.4) but Kd was not. By combining two independent mutations, we were able to compensate for the catalytic effect of temperature on the decay time constant of a synaptic current. At mouse body temperature, the channel-opening and-closing rate constants are ∼400 and 16 ms∼-1. We hypothesize that the agonist dependence of the gating enthalpy change is associated with differences in ligand binding, specifically to the open-channel conformation of the protein.
AB - The temperature dependence of agonist binding and channel gating were measured for wild-type adult neuromuscular acetylcholine receptors activated by acetylcholine, carbamylcholine, or choline. With acetylcholine, temperature changed the gating rate constants (Q10 ≈ 3.2) but had almost no effect on the equilibrium constant. The enthalpy change associated with gating was agonist-dependent, but for all three ligands it was approximately equal to the corresponding free-energy change. The equilibrium dissociation constant of the resting conformation (Kd), the slope of the rate-equilibrium free-energy relationship (Φ), and the acetylcholine association and dissociation rate constants were approximately temperature-independent. In the mutant αG153S, the choline association and dissociation rate constants were temperature-dependent (Q10 ≈ 7.4) but Kd was not. By combining two independent mutations, we were able to compensate for the catalytic effect of temperature on the decay time constant of a synaptic current. At mouse body temperature, the channel-opening and-closing rate constants are ∼400 and 16 ms∼-1. We hypothesize that the agonist dependence of the gating enthalpy change is associated with differences in ligand binding, specifically to the open-channel conformation of the protein.
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U2 - 10.1016/j.bpj.2010.12.3727
DO - 10.1016/j.bpj.2010.12.3727
M3 - Article
C2 - 21320433
AN - SCOPUS:79951834831
SN - 0006-3495
VL - 100
SP - 895
EP - 903
JO - Biophysical journal
JF - Biophysical journal
IS - 4
ER -