Short-term plasticity of AMPAR currents during high-frequency stimulation depends not only on presynaptic transmitter release and postsynaptic AMPAR recovery from desensitization, but also on fast AMPAR diffusion. How AMPAR diffusion within the synapse regulates synaptic transmission on the millisecond scale remains mysterious. Using single-molecule tracking, we found that, upon glutamate binding, synaptic AMPAR diffuse faster. Using AMPAR stabilized in different conformational states by point mutations and pharmacology, we show that desensitized receptors bind less stargazin and are less stabilized at the synapse than receptors in opened or closed-resting states. AMPAR mobility-mediated regulation of short-term plasticity is abrogated when...
Plasticity models invoke the synaptic delivery of AMPARs, yet we know little about how receptors mov...
The decay of excitatory postsynaptic currents in central neurons mediated by alpha-amino-3-hydroxy-5...
SummaryFast excitatory synaptic signaling in the mammalian brain is mediated by AMPA-type ionotropic...
Short-term plasticity of AMPAR currents during high-frequency stimulation depends not only on presyn...
SummaryShort-term plasticity of AMPAR currents during high-frequency stimulation depends not only on...
AMPA glutamate receptors (AMPARs) mediate fast excitatory synaptic transmission. Upon fast consecuti...
AMPARs mediate the briefest synaptic currents in the brain by virtue of their rapid gating kinetics....
SummaryNeuronal AMPA receptors autoinactivate at high concentrations of glutamate, i.e., the current...
SummaryAccumulation of AMPA receptors at synapses is a fundamental feature of glutamatergic synaptic...
Calcium dynamics in presynaptic terminals regulate the response dynamics of most central excitatory ...
The AMPA-type glutamate receptors mediate the majority of the fast excitatory synaptic transmission ...
Abstract The speed and reliability of computation in neural circuits depends on fast chemical transm...
SummarySynaptic activity regulates the postsynaptic accumulation of AMPA receptors over timescales r...
Trafficking of AMPA receptors in and out of synapses is crucial for synaptic plasticity. Previous st...
AbstractExcitatory synapses in the CNS release glutamate, which acts primarily on two types of ionot...
Plasticity models invoke the synaptic delivery of AMPARs, yet we know little about how receptors mov...
The decay of excitatory postsynaptic currents in central neurons mediated by alpha-amino-3-hydroxy-5...
SummaryFast excitatory synaptic signaling in the mammalian brain is mediated by AMPA-type ionotropic...
Short-term plasticity of AMPAR currents during high-frequency stimulation depends not only on presyn...
SummaryShort-term plasticity of AMPAR currents during high-frequency stimulation depends not only on...
AMPA glutamate receptors (AMPARs) mediate fast excitatory synaptic transmission. Upon fast consecuti...
AMPARs mediate the briefest synaptic currents in the brain by virtue of their rapid gating kinetics....
SummaryNeuronal AMPA receptors autoinactivate at high concentrations of glutamate, i.e., the current...
SummaryAccumulation of AMPA receptors at synapses is a fundamental feature of glutamatergic synaptic...
Calcium dynamics in presynaptic terminals regulate the response dynamics of most central excitatory ...
The AMPA-type glutamate receptors mediate the majority of the fast excitatory synaptic transmission ...
Abstract The speed and reliability of computation in neural circuits depends on fast chemical transm...
SummarySynaptic activity regulates the postsynaptic accumulation of AMPA receptors over timescales r...
Trafficking of AMPA receptors in and out of synapses is crucial for synaptic plasticity. Previous st...
AbstractExcitatory synapses in the CNS release glutamate, which acts primarily on two types of ionot...
Plasticity models invoke the synaptic delivery of AMPARs, yet we know little about how receptors mov...
The decay of excitatory postsynaptic currents in central neurons mediated by alpha-amino-3-hydroxy-5...
SummaryFast excitatory synaptic signaling in the mammalian brain is mediated by AMPA-type ionotropic...