FB2025_01 , released February 20, 2025
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Citation
Tang, M., Cao, L.H., Yang, T., Ma, S.X., Jing, B.Y., Xiao, N., Xu, S., Leng, K.R., Yang, D., Li, M.T., Luo, D.G. (2022). An extra-clock ultradian brain oscillator sustains circadian timekeeping.  Sci. Adv. 8(35): eabo5506.
FlyBase ID
FBrf0254405
Publication Type
Research paper
Abstract
The master circadian clock generates 24-hour rhythms to orchestrate daily behavior, even running freely under constant conditions. Traditionally, the master clock is considered self-sufficient in sustaining free-running timekeeping via its cell-autonomous molecular clocks and interneuronal communications within the circadian neural network. Here, we find a set of bona fide ultradian oscillators in the Drosophila brain that support free-running timekeeping, despite being located outside the master clock circuit and lacking clock gene expression. These extra-clock electrical oscillators (xCEOs) generate cell-autonomous ultradian bursts, pacing widespread burst firing and promoting rhythmic resting membrane potentials in clock neurons via parallel monosynaptic connections. Silencing xCEOs disrupts daily electrical rhythms in clock neurons and impairs cycling of neuropeptide pigment dispersing factor, leading to the loss of free-running locomotor rhythms. Together, we conclude that the master clock is not self-sufficient to sustain free-running behavior rhythms but requires additional endogenous inputs to the clock from the extra-clock ultradian brain oscillators.
PubMed ID
PubMed Central ID
PMC10848952 (PMC) (EuropePMC)
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Secondary IDs
    Language of Publication
    English
    Additional Languages of Abstract
    Parent Publication
    Publication Type
    Journal
    Abbreviation
    Sci. Adv.
    Title
    Science advances
    ISBN/ISSN
    2375-2548
    Data From Reference
    Alleles (36)
    Genes (15)
    Sequence Features (1)
    Natural transposons (1)
    Insertions (5)
    Experimental Tools (8)
    Transgenic Constructs (26)