SK channels regulate excitatory synaptic transmission and plasticity in the lateral amygdala


Autoria(s): Faber, E. S.; Delaney, A. J.; Sah, P.
Contribuinte(s)

Sandra Aamadt

Data(s)

01/01/2005

Resumo

At glutamatergic synapses, calcium influx through NMDA receptors (NMDARs) is required for long-term potentiation (LTP); this is a proposed cellular mechanism underlying memory and learning. Here we show that in lateral amygdala pyramidal neurons, SK channels are also activated by calcium influx through synaptically activated NMDARs, resulting in depression of the synaptic potential. Thus, blockade of SK channels by apamin potentiates fast glutamatergic synaptic potentials. This potentiation is blocked by the NMDAR antagonist AP5 (D(-)-2-amino-5-phosphono-valeric acid) or by buffering cytosolic calcium with BAPTA. Blockade of SK channels greatly enhances LTP of cortical inputs to lateral amygdala pyramidal neurons. These results show that NMDARs and SK channels are colocalized at glutamatergic synapses in the lateral amygdala. Calcium influx through NMDARs activates SK channels and shunts the resultant excitatory postsynaptic potential. These results demonstrate a new role for SK channels as postsynaptic regulators of synaptic efficacy.

Identificador

http://espace.library.uq.edu.au/view/UQ:77412

Idioma(s)

eng

Publicador

Nature Publishing Group

Palavras-Chave #Ca2+-activated K+ Channels #Hippocampal Pyramidal Neurons #Long-term Potentiation #Activated Potassium Currents #Nmda-receptor Activation #Dendritic Spines #Lesioned Mice #Hair-cells #In-vitro #Calcium #Neurosciences #C1 #320702 Central Nervous System #730104 Nervous system and disorders
Tipo

Journal Article