Wang_2005_J.Neurosci_25_343

Reference

Title : Activity-dependent presynaptic regulation of quantal size at the mammalian neuromuscular junction in vivo - Wang_2005_J.Neurosci_25_343
Author(s) : Wang X , Li Y , Engisch KL , Nakanishi ST , Dodson SE , Miller GW , Cope TC , Pinter MJ , Rich MM
Ref : Journal of Neuroscience , 25 :343 , 2005
Abstract :

Changes in synaptic activity alter quantal size, but the relative roles of presynaptic and postsynaptic cells in these changes are only beginning to be understood. We examined the mechanism underlying increased quantal size after block of synaptic activity at the mammalian neuromuscular junction in vivo. We found that changes in neither acetylcholinesterase activity nor acetylcholine receptor density could account for the increase. By elimination, it appears likely that the site of increased quantal size after chronic block of activity is presynaptic and involves increased release of acetylcholine. We used mice with muscle hyperexcitability caused by mutation of the ClC-1 muscle chloride channel to examine the role of postsynaptic activity in controlling quantal size. Surprisingly, quantal size was increased in ClC mice before block of synaptic activity. We examined the mechanism underlying increased quantal size in ClC mice and found that it also appeared to be located presynaptically. When presynaptic activity was completely blocked in both control and ClC mice, quantal size was large in both groups despite the higher level of postsynaptic activity in ClC mice. This suggests that postsynaptic activity does not regulate quantal size at the neuromuscular junction. We propose that presynaptic activity modulates quantal size at the neuromuscular junction by modulating the amount of acetylcholine released from vesicles.

PubMedSearch : Wang_2005_J.Neurosci_25_343
PubMedID: 15647477

Related information

Citations formats

Wang X, Li Y, Engisch KL, Nakanishi ST, Dodson SE, Miller GW, Cope TC, Pinter MJ, Rich MM (2005)
Activity-dependent presynaptic regulation of quantal size at the mammalian neuromuscular junction in vivo
Journal of Neuroscience 25 :343

Wang X, Li Y, Engisch KL, Nakanishi ST, Dodson SE, Miller GW, Cope TC, Pinter MJ, Rich MM (2005)
Journal of Neuroscience 25 :343