Circadian pacemaker neurons display co-phasic rhythms in basal calcium level and in fast calcium fluctuations
Liang, X.; Holy, T. E.; Taghert, P. H.
Show abstract
Circadian pacemaker neurons in the Drosophila brain display daily rhythms in the levels of intracellular calcium. These calcium rhythms are driven by molecular clocks and are required for normal circadian behavior. To study their biological basis, we employed genetic manipulations in conjunction with in vivo light-sheet microscopy to measure calcium dynamics in individual pacemaker neurons over complete 24-hour periods. We found co-phasic daily rhythms in basal calcium levels and in high frequency calcium fluctuations. Further we found that the rhythms of basal calcium levels require the activity of the IP3R, a channel that mediates calcium fluxes from internal endoplasmic reticulum (ER) calcium stores. Independently, the rhythms of fast calcium fluctuations required the T-type voltage-gated calcium channel, a conductance that mediates extracellular calcium influx. These results suggest that Drosophila molecular clocks regulate IP3R and T-type channels to generate coupled rhythms in basal calcium and in fast calcium fluctuations, respectively. We propose that both internal and external calcium fluxes are essential for circadian pacemaker neurons to provide rhythmic outputs, and thereby regulate the activities of downstream brain centers.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Activity and stress during a critical period regulate olfactory sensory neuron differentiation 94%
- Upstream open reading frames dynamically modulate CLOCK protein translation to regulate circadian rhythm and sleep 94%
- DAF-16/FoxO and DAF-12/VDR control cellular plasticity both cell-autonomously and via interorgan signaling 94%
Similar papers in this journal
Similar papers in this journal
- Developmental mitochondrial Complex I activity determines lifespan 94%
- Non-apoptotic caspase activation sustains ovarian somatic stem cell functions by modulating Hedgehog-signalling and autophagy. 94%
- Extended synaptotagmin regulates plasma membrane-endoplasmic reticulum contact site structure and lipid transfer function in vivo 94%
Similar papers in this journal
- Timed receptor tyrosine kinase signaling couples the central and a peripheral circadian clock in Drosophila 98%
- Dissecting neuron-specific functions of circadian genes using modified cell-specific CRISPR approaches 97%
- Drosophila clock cells use multiple mechanisms to transmit time-of-day signals in the brain 95%
"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.