AbstractLocal recycling of synaptic vesicle membrane at nerve terminals is necessary to maintain a readily releasable pool of transmitter. To what extent are the dynamics of vesicle recycling subject to modulation? We examined the influence of presynaptic GABAB receptors on vesicle dynamics at single synapses using optical imaging of FM1–43 in cultured rat hippocampal neurons. The kinetics of FM1–43 destaining indicate that synapses from a single neuron have a unimodal distribution of release probabilities, and GABAB-mediated inhibition occurs uniformly at all sites. Electrical and optical recordings from single cells show that the inhibition of excitatory transmission is entirely accounted for by a rapidly reversible reduction of exocytosi...
Neurotransmitter release from presynaptic terminals is under the tight control of various metabotrop...
SummarySustained synaptic transmission requires vesicle recycling and refilling with transmitter, tw...
GABAA receptors mediate the majority of fast synaptic inhibition in the brain. The accumulation of t...
AbstractLocal recycling of synaptic vesicle membrane at nerve terminals is necessary to maintain a r...
Accumulating evidence indicate that GABA regulates activity-dependent development of inhibitory syna...
The consequence of reduced uptake of neurotransmitters into synaptic vesicles on synaptic transmissi...
Mammalian central synapses commonly specialize in one fast neurotransmitter, matching the content of...
SummaryPresynaptic GABAB receptor (GABABR) heterodimers are composed of GB1a/GB2 subunits and critic...
The efficacy of synaptic transmission depends on the availability of ionotropic and metabotropic neu...
Synaptic efficacy plays crucial roles in neuronal circuit operation and synaptic plasticity. Presyna...
The functional consequence of \u3b3-aminobutyric acid (GABA) release at mossy fiber terminals is sti...
SummaryGABA transporters play an important but poorly understood role in neuronal inhibition. They c...
First we found that applying substances that change intracellular presynaptic GABA concentration al...
SummaryHere, we uncover a mechanism for regulating the number of active presynaptic GABAB receptors ...
Neural activity regulates the number and properties of GABAergic synapses in the brain, but the mech...
Neurotransmitter release from presynaptic terminals is under the tight control of various metabotrop...
SummarySustained synaptic transmission requires vesicle recycling and refilling with transmitter, tw...
GABAA receptors mediate the majority of fast synaptic inhibition in the brain. The accumulation of t...
AbstractLocal recycling of synaptic vesicle membrane at nerve terminals is necessary to maintain a r...
Accumulating evidence indicate that GABA regulates activity-dependent development of inhibitory syna...
The consequence of reduced uptake of neurotransmitters into synaptic vesicles on synaptic transmissi...
Mammalian central synapses commonly specialize in one fast neurotransmitter, matching the content of...
SummaryPresynaptic GABAB receptor (GABABR) heterodimers are composed of GB1a/GB2 subunits and critic...
The efficacy of synaptic transmission depends on the availability of ionotropic and metabotropic neu...
Synaptic efficacy plays crucial roles in neuronal circuit operation and synaptic plasticity. Presyna...
The functional consequence of \u3b3-aminobutyric acid (GABA) release at mossy fiber terminals is sti...
SummaryGABA transporters play an important but poorly understood role in neuronal inhibition. They c...
First we found that applying substances that change intracellular presynaptic GABA concentration al...
SummaryHere, we uncover a mechanism for regulating the number of active presynaptic GABAB receptors ...
Neural activity regulates the number and properties of GABAergic synapses in the brain, but the mech...
Neurotransmitter release from presynaptic terminals is under the tight control of various metabotrop...
SummarySustained synaptic transmission requires vesicle recycling and refilling with transmitter, tw...
GABAA receptors mediate the majority of fast synaptic inhibition in the brain. The accumulation of t...