The segregation of the readily releasable pool of synaptic vesicles (RRP) in sub-pools that are differentially poised for exocytosis shapes short-term plasticity. However, the frequency-dependent mobilization of these sub-pools is poorly understood. Using slice recordings and modeling of synaptic activity at cerebellar granule cell to Purkinje cell synapses of mice, we describe two sub-pools in the RRP that can be differentially recruited upon ultrafast changes in the stimulation frequency. We show that at low frequency stimulations, a first sub-pool is gradually silenced, leading to full blockage of synaptic transmission. Conversely, a second pool of synaptic vesicles that cannot be released by a single stimulus is recruited within millise...
Presynaptic short-term plasticity is an important adaptive mechanism regulating synaptic transmitter...
AbstractDuring action potential firing, the rate of synapsin dissociation from synaptic vesicles and...
SummaryShort-term synaptic plasticity influences how presynaptic spike patterns control the firing o...
AbstractDuring intense presynaptic activity, the readily releasable pool (RRP) of synaptic vesicles ...
Vesicles within presynaptic terminals are thought to be segregated into a variety of readily releasa...
Encoding continuous sensory variables requires sustained synaptic signalling. At several sensory syn...
Information processing by cerebellar molecular layer interneurons (MLIs) plays a crucial role in mot...
The connection strength of most chemical synapses changes dynamically during normal use as a functio...
AbstractCerebellar Purkinje neurons maintain high firing rates but their synaptic terminals depress ...
AbstractHippocampal neurons in tissue culture develop functional synapses that exhibit considerable ...
Synaptic plasticity is a cellular model for learning and memory. However, the expression mechanisms ...
Synaptic plasticity is a cellular model for learning and memory. However, the expression mechanisms ...
Animal behavior is remarkably robust despite constant changes in neural activity. Homeostatic plasti...
Advanced imaging techniques have revealed that synapses contain nanomodules in which pre- and post-s...
AbstractPresynaptic short-term plasticity is an important adaptive mechanism regulating synaptic tra...
Presynaptic short-term plasticity is an important adaptive mechanism regulating synaptic transmitter...
AbstractDuring action potential firing, the rate of synapsin dissociation from synaptic vesicles and...
SummaryShort-term synaptic plasticity influences how presynaptic spike patterns control the firing o...
AbstractDuring intense presynaptic activity, the readily releasable pool (RRP) of synaptic vesicles ...
Vesicles within presynaptic terminals are thought to be segregated into a variety of readily releasa...
Encoding continuous sensory variables requires sustained synaptic signalling. At several sensory syn...
Information processing by cerebellar molecular layer interneurons (MLIs) plays a crucial role in mot...
The connection strength of most chemical synapses changes dynamically during normal use as a functio...
AbstractCerebellar Purkinje neurons maintain high firing rates but their synaptic terminals depress ...
AbstractHippocampal neurons in tissue culture develop functional synapses that exhibit considerable ...
Synaptic plasticity is a cellular model for learning and memory. However, the expression mechanisms ...
Synaptic plasticity is a cellular model for learning and memory. However, the expression mechanisms ...
Animal behavior is remarkably robust despite constant changes in neural activity. Homeostatic plasti...
Advanced imaging techniques have revealed that synapses contain nanomodules in which pre- and post-s...
AbstractPresynaptic short-term plasticity is an important adaptive mechanism regulating synaptic tra...
Presynaptic short-term plasticity is an important adaptive mechanism regulating synaptic transmitter...
AbstractDuring action potential firing, the rate of synapsin dissociation from synaptic vesicles and...
SummaryShort-term synaptic plasticity influences how presynaptic spike patterns control the firing o...