PDF neuron firing phase-shifts key circadian activity neurons in Drosophila.
basic_science · Level V
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- Record sourced from PubMed, PMID 24939987.
- Also identified by DOI 10.7554/eLife.02780 and PMC identifier 4092873.
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Abstract
Our experiments address two long-standing models for the function of the Drosophila brain circadian network: a dual oscillator model, which emphasizes the primacy of PDF-containing neurons, and a cell-autonomous model for circadian phase adjustment. We identify five different circadian (E) neurons that are a major source of rhythmicity and locomotor activity. Brief firing of PDF cells at different times of day generates a phase response curve (PRC), which mimics a light-mediated PRC and requires PDF receptor expression in the five E neurons. Firing also resembles light by causing TIM degradation in downstream neurons. Unlike light however, firing-mediated phase-shifting is CRY-independent and exploits the E3 ligase component CUL-3 in the early night to degrade TIM. Our results suggest that PDF neurons integrate light information and then modulate the phase of E cell oscillations and behavioral rhythms. The results also explain how fly brain rhythms persist in constant darkness and without CRY.
Medical subject headings
- Circadian Rhythm
- Drosophila melanogaster
- Gene Expression Regulation
- Locomotion
- Motor Neurons