Neuronal networks in the brain consist of two main types of neuron, glutamatergic principal neurons and GABAergic interneurons. Although these interneurons only represent 10–20% of the whole population, they mediate feedback and feedforward inhibition and are involved in the generation of high-frequency network oscillations. A hallmark functional property of GABAergic interneurons, especially of the parvalbumin‑expressing (PV+) subtypes, is the speed of signaling at their output synapse across species and brain regions. Several molecular and subcellular factors may underlie the submillisecond signaling at GABAergic synapses. Such as the selective use of P/Q type Ca2+ channels and the tight coupling between Ca2+ channels and Ca2+ sensors of ...
The balance between fast synchronous and delayed asynchronous release of neurotransmitters has a maj...
AbstractAt fast CNS synapses, the role of asynchronous release following initial synchronous release...
Ca2+ concentrations drop rapidly over a distance of a few tens of nanometers from an open voltage-ga...
Neuronal networks in the brain consist of two main types of neuron, glutamatergic principal neurons ...
GABAergic synapses in brain circuits generate inhibitory output signals with submillisecond latency ...
GABAergic synapses in brain circuits generate inhibitory output signals with submillisecond latency ...
Parvalbumin-expressing inhibitory neurons in the mammalian CNS are specialized for fast transmitter ...
Synaptotagmin 7 (Syt7) is thought to be a Ca2+ sensor that mediates asynchronous transmitter release...
Synaptotagmin 7 (Syt7) is thought to be a Ca2+ sensor that mediates asynchronous transmitter release...
GABAergic synapses in brain circuits generate inhibitory output signals with submillisecond latency ...
GABAergic synapses in brain circuits generate inhibitory output signals with submillisecond latency ...
SummaryIn forebrain neurons, knockout of synaptotagmin-1 blocks fast Ca2+-triggered synchronous neur...
SummaryCa2+-evoked transmitter release shows a high dynamic range over spontaneous release. We inves...
AbstractCerebellar Purkinje neurons maintain high firing rates but their synaptic terminals depress ...
SummarySynaptotagmin-1 and -2 are known Ca2+ sensors for fast synchronous neurotransmitter release, ...
The balance between fast synchronous and delayed asynchronous release of neurotransmitters has a maj...
AbstractAt fast CNS synapses, the role of asynchronous release following initial synchronous release...
Ca2+ concentrations drop rapidly over a distance of a few tens of nanometers from an open voltage-ga...
Neuronal networks in the brain consist of two main types of neuron, glutamatergic principal neurons ...
GABAergic synapses in brain circuits generate inhibitory output signals with submillisecond latency ...
GABAergic synapses in brain circuits generate inhibitory output signals with submillisecond latency ...
Parvalbumin-expressing inhibitory neurons in the mammalian CNS are specialized for fast transmitter ...
Synaptotagmin 7 (Syt7) is thought to be a Ca2+ sensor that mediates asynchronous transmitter release...
Synaptotagmin 7 (Syt7) is thought to be a Ca2+ sensor that mediates asynchronous transmitter release...
GABAergic synapses in brain circuits generate inhibitory output signals with submillisecond latency ...
GABAergic synapses in brain circuits generate inhibitory output signals with submillisecond latency ...
SummaryIn forebrain neurons, knockout of synaptotagmin-1 blocks fast Ca2+-triggered synchronous neur...
SummaryCa2+-evoked transmitter release shows a high dynamic range over spontaneous release. We inves...
AbstractCerebellar Purkinje neurons maintain high firing rates but their synaptic terminals depress ...
SummarySynaptotagmin-1 and -2 are known Ca2+ sensors for fast synchronous neurotransmitter release, ...
The balance between fast synchronous and delayed asynchronous release of neurotransmitters has a maj...
AbstractAt fast CNS synapses, the role of asynchronous release following initial synchronous release...
Ca2+ concentrations drop rapidly over a distance of a few tens of nanometers from an open voltage-ga...