Protein kinase Mζ enhances excitatory synaptic transmission by increasing the number of active postsynaptic AMPA receptors
- 6 February 2006
- journal article
- research article
- Published by Wiley in Hippocampus
- Vol. 16 (5) , 443-452
- https://doi.org/10.1002/hipo.20171
Abstract
Protein kinase Mζ (PKMζ), a constitutively active, atypical PKC isoform, enhances synaptic strength during the maintenance of long-term potentiation (LTP). Here we examine the mechanism by which PKMζ increases synaptic transmission. Postsynaptic perfusion of PKMζ during whole-cell recordings of CA1 pyramidal cells strongly potentiated the amplitude of AMPA receptor (AMPAR)-mediated miniature EPSCs (mEPSCs). Nonstationary fluctuation analysis of events recorded before and after PKMζ enhancement showed that the kinase doubled the number of functional postsynaptic AMPAR channels. After sustained potentiation, application of a PKMζ inhibitor reversed the increase in functional channel number to basal levels, suggesting that persistent increase of PKMζ is required to maintain the postsynaptic localization of a mobile subpopulation of receptors. The kinase did not affect other sites of LTP expression, including presynaptic transmitter release, silent synapse conversion, or AMPAR unit conductance. Thus PKMζ functions specifically to establish and maintain long-term increases in active postsynaptic AMPAR number.Keywords
This publication has 69 references indexed in Scilit:
- Changes in AMPA receptor currents following LTP induction on rat CA1 pyramidal neuronesThe Journal of Physiology, 2004
- Postfusional regulation of cleft glutamate concentration during LTP at ‘silent synapses’Nature Neuroscience, 2000
- Control of GluR1 AMPA Receptor Function by cAMP-Dependent Protein KinaseJournal of Neuroscience, 2000
- Effects of PKA and PKC on Miniature Excitatory Postsynaptic Currents in CA1 Pyramidal CellsJournal of Neurophysiology, 1998
- Modulation of AMPA receptor unitary conductance by synaptic activityNature, 1998
- Recruitment of New Sites of Synaptic Transmission During the cAMP-Dependent Late Phase of LTP at CA3–CA1 Synapses in the HippocampusNeuron, 1997
- Genetic Demonstration of a Role for PKA in the Late Phase of LTP and in Hippocampus-Based Long-Term MemoryCell, 1997
- Regulation of Hippocampal Transmitter Release During Development and Long-Term PotentiationScience, 1995
- NMDA receptor-mediated components of miniature excitatory synaptic currents in developing rat neocortexJournal of Neurophysiology, 1993
- Waveform analysis suggests that LTP alters the kinetics of synaptic receptor channelsBrain Research, 1993