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The rising phase of the miniature endplate current at the frog neuromuscular junction
Authors:Terry M Dwyer
Institution:Department of Physiology, University of Rochester, Rochester, NY 14627 U.S.A.
Abstract:(1) The rising phase of minature endplate currets was recorded at the frog's neuromuscular junction using both the two electrode voltage clamp and a single external electrode, or Strickholm, voltage clamp. (2) The Q(10) of the miniature endplate current rising phase was 2.3 in a variety of solutions selected to alter presynaptic behavior. (3) Increasing the solution's viscosity by an amount sufficient to slow the diffusion coefficient of acetylcholine by a third has no effect on the duration of the rising or the decay phase. This solution does seem to further slow the miniature endplate current decay phase, but not the rising phase, after inhibition of the acetylcholinesterase. (4) As the membrane potential is made more positive, the miniature endplate current rising phase is prolonged, with an e-fold slowing per 170 mV change. (5) It is concluded that neither presynaptic nor subsynaptic events determine the rising phase of miniature endplate currents at the frog neuromuscular junction. Rather, the limiting step occurs within the membrane and is most likely a change in the binding constant of the receptor for the acetylcholine molecule.
Keywords:Neuromuscular junction  Synapse  Miniature endplate current  Acetylcholine receptor  Neostigmine  (Frog)  α  closing rate of acetylcholine channels  γ  single channel conductance  reversal potential
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