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AMPA receptor subunits define properties of state-dependent synaptic plasticity.

J Physiol.. 2010-06;  588(11):1929 - 1946
Michelle R. Emond, Johanna M. Montgomery, Matthew L. Huggins, Jesse E. Hanson, Lifang Mao, Richard L. Huganir, and Daniel V. Madison. Department of Molecular and Cellular Physiology, Stanford University School of Medicine, Stanford, CA 94305, USA.
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Abstract

Many synapses undergo immediate and persistent activity-dependent changes in strength via processes that fall under the umbrella of synaptic plasticity. It is known that this type of synaptic plasticity exhibits an underlying state dependence; that is, as synapses change in strength they move into distinct 'states' that are defined by the mechanism and ability to undergo future plasticity. In this study, we have investigated the molecular mechanisms that underlie state-dependent synaptic plasticity. Using intracellular application of peptides that mimic the C-terminal tail sequences of GluR1 and GluR2 AMPA receptor subtypes, combined with paired recordings of minimal synaptic connections, we have show... More

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