Synapse-specific vesicle pools have been widely characterized at central terminals. Here, we demonstrate a vesicle pool that is not confined to a synapse but spans multiple terminals. Using fluorescence imaging, correlative electron microscopy, and modeling of vesicle dynamics, we show that some recycling pool vesicles at synapses form part of a larger vesicle superpool. The vesicles within this superpool are highly mobile and are rapidly exchanged between terminals (turnover: not, vert, similar4% of total pool/min), significantly changing vesicular composition at synapses over time. In acute hippocampal slices we show that the mobile vesicle pool is also a feature of native brain tissue. We also demonstrate that superpool vesicles are avai...
Hippocampal synapses display a range of release probabilities. This is partially the result of scali...
During prolonged trains of presynaptic action potentials (APs), synaptic release reaches a stable le...
Synaptic vesicles are recycled locally within presynaptic specializations. We examined how vesicles ...
SummarySynapse-specific vesicle pools have been widely characterized at central terminals. Here, we ...
Presynaptic terminals in hippocampal neurons house functionally distinct vesicle pools, the size, st...
Efficient recycling of synaptic vesicles is thought to be critical for sustained information transfe...
SummaryAt small central synapses, efficient turnover of vesicles is crucial for stimulus-driven tran...
Vesicles within presynaptic terminals are thought to be segregated into a variety of readily releasa...
During the last few decades synaptic vesicles have been assigned to a variety of functional and morp...
SummarySpontaneous synaptic vesicle fusion is a common property of all synapses. To trace the origin...
Fast neuronal signalling relies on highly-regulated vesicle fusion and recycling at specialized pres...
At small central synapses, efficient turnover of vesicles is crucial for stimulus-driven transmissio...
AbstractFunctional presynaptic vesicles have been subdivided into readily releasable (RRP) and reser...
Synapses relay information through the release of neurotransmitters stored in presynaptic vesicles. ...
Synaptic vesicles release neurotransmitter at chemical synapses, thus initiating the flow of informa...
Hippocampal synapses display a range of release probabilities. This is partially the result of scali...
During prolonged trains of presynaptic action potentials (APs), synaptic release reaches a stable le...
Synaptic vesicles are recycled locally within presynaptic specializations. We examined how vesicles ...
SummarySynapse-specific vesicle pools have been widely characterized at central terminals. Here, we ...
Presynaptic terminals in hippocampal neurons house functionally distinct vesicle pools, the size, st...
Efficient recycling of synaptic vesicles is thought to be critical for sustained information transfe...
SummaryAt small central synapses, efficient turnover of vesicles is crucial for stimulus-driven tran...
Vesicles within presynaptic terminals are thought to be segregated into a variety of readily releasa...
During the last few decades synaptic vesicles have been assigned to a variety of functional and morp...
SummarySpontaneous synaptic vesicle fusion is a common property of all synapses. To trace the origin...
Fast neuronal signalling relies on highly-regulated vesicle fusion and recycling at specialized pres...
At small central synapses, efficient turnover of vesicles is crucial for stimulus-driven transmissio...
AbstractFunctional presynaptic vesicles have been subdivided into readily releasable (RRP) and reser...
Synapses relay information through the release of neurotransmitters stored in presynaptic vesicles. ...
Synaptic vesicles release neurotransmitter at chemical synapses, thus initiating the flow of informa...
Hippocampal synapses display a range of release probabilities. This is partially the result of scali...
During prolonged trains of presynaptic action potentials (APs), synaptic release reaches a stable le...
Synaptic vesicles are recycled locally within presynaptic specializations. We examined how vesicles ...