Temporally and spatially partitioned neuropeptide release from individual clock neurons.
basic_science · Level V
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- Record sourced from PubMed, PMID 33875606.
- Also identified by DOI 10.1073/pnas.2101818118 and PMC identifier 8092580.
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Abstract
Neuropeptides control rhythmic behaviors, but the timing and location of their release within circuits is unknown. Here, imaging in the brain shows that synaptic neuropeptide release by <i>Drosophila</i> clock neurons is diurnal, peaking at times of day that were not anticipated by prior electrical and Ca<sup>2+</sup> data. Furthermore, hours before peak synaptic neuropeptide release, neuropeptide release occurs at the soma, a neuronal compartment that has not been implicated in peptidergic transmission. The timing disparity between release at the soma and terminals results from independent and compartmentalized mechanisms for daily rhythmic release: consistent with conventional electrical activity-triggered synaptic transmission, terminals require Ca<sup>2+</sup> influx, while somatic neuropeptide release is triggered by the biochemical signal IP<sub>3</sub> Upon disrupting the somatic mechanism, the rhythm of terminal release and locomotor activity period are unaffected, but the number of flies with rhythmic behavior and sleep-wake balance are reduced. These results support the conclusion that somatic neuropeptide release controls specific features of clock neuron-dependent behaviors. Thus, compartment-specific mechanisms within individual clock neurons produce temporally and spatially partitioned neuropeptide release to expand the peptidergic connectome underlying daily rhythmic behaviors.
Medical subject headings
- Circadian Clocks
- Circadian Rhythm
- Neurons
- Neuropeptides
- Presynaptic Terminals