Timing Control of Purkinje Cell Outputs by Dual cAMP Actions on Axonal Action Potential and Transmitter Release
Furukawa, K.; Inoshita, T.; Kawaguchi, S.-y.
Show abstract
All-or-none digital signaling based on high-fidelity action potentials (APs) in neuronal axons is pivotal for the temporally precise sending of identical outputs rapidly to widespread multiple target cells. However, technical limitation to directly measure the signaling in small size of intact axonal structures has hindered the evaluation of high-fidelity signal propagation. Here, using direct recordings from axonal trunks and/or terminals of cerebellar Purkinje cells in culture and slice, we demonstrate that the timing of axonal output is delayed by the second messenger cAMP without clear changes of transmission efficacy. Slowed axonal signaling upon cAMP increase was ascribed to negative control of axonal Na+ channels, leading to smaller and hence slower conduction of APs specifically at an axon. On the other hand, a facilitatory effect of cAMP on presynaptic transmitter release, which generally operates at various CNS synapses, was also evident as augmented release probability in Purkinje cell axon terminals, compensating for weakening of release by the reduction of Ca2+ influx upon smaller AP. Taken these results together, our tour-de-force functional dissection of inhibitory axonal signaling unveiled a dynamic control of synaptic output timing by cAMP keeping output strength constant.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Cortical Betz cells analogue in songbirds utilizes Kv3.1 to generate ultranarrow spikes 96%
- Physiological roles of endocytosis and presynaptic scaffold in vesicle replenishment at fast and slow central synapses 96%
- Functional specification of CCK+ interneurons by alternative isoforms of Kv4.3 auxiliary subunits 96%
Similar papers in this journal
- KCNQ channels enable reliable presynaptic spiking and synaptic transmission at high-frequency 96%
- Neuropeptide Y signaling regulates recurrent excitation in the auditory midbrain 95%
- Differential Activity-Dependent Increase in Synaptic Inhibition and Parvalbumin Interneuron Recruitment in Dentate Granule Cells and Semilunar Granule Cells 95%
Similar papers in this journal
- Synaptic communication within the microcircuits of pyramidal neurons and basket cells in the mouse prefrontal cortex 95%
- Selective activation of BK channels in small-headed dendritic spines suppresses excitatory postsynaptic potentials 95%
- Cation-chloride cotransporters and the polarity of GABA signaling in mouse hippocampal parvalbumin interneurons 95%
Similar papers in this journal
- Cell-type specificity of neuronal excitability and morphology in the central amygdala 95%
- Retrograde suppression of post-tetanic potentiation at the mossy fiber-CA3 pyramidal cell synapse 94%
- Functional dynamics and selectivity of two parallel corticocortical pathways from motor cortex to layer 5 circuits in somatosensory cortex 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.