Mechanisms underlying the rapid induction and sustained expression of synaptic homeostasis.

Abstract:

:Homeostatic signaling systems are thought to interface with the mechanisms of neural plasticity to achieve stable yet flexible neural circuitry. However, the time course, molecular design, and implementation of homeostatic signaling remain poorly defined. Here we demonstrate that a homeostatic increase in presynaptic neurotransmitter release can be induced within minutes following postsynaptic glutamate receptor blockade. The rapid induction of synaptic homeostasis is independent of new protein synthesis and does not require evoked neurotransmission, indicating that a change in the efficacy of spontaneous quantal release events is sufficient to trigger the induction of synaptic homeostasis. Finally, both the rapid induction and the sustained expression of synaptic homeostasis are blocked by mutations that disrupt the pore-forming subunit of the presynaptic Ca(V)2.1 calcium channel encoded by cacophony. These data confirm the presynaptic expression of synaptic homeostasis and implicate presynaptic Ca(V)2.1 in a homeostatic retrograde signaling system.

journal_name

Neuron

journal_title

Neuron

authors

Frank CA,Kennedy MJ,Goold CP,Marek KW,Davis GW

doi

10.1016/j.neuron.2006.09.029

subject

Has Abstract

pub_date

2006-11-22 00:00:00

pages

663-77

issue

4

eissn

0896-6273

issn

1097-4199

pii

S0896-6273(06)00736-7

journal_volume

52

pub_type

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