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eLife· 2026Q1

Circadian photoreceptor CRYPTOCHROME promotes wakefulness under short winter-like days via a GABAergic circuitry

Li-Xia Chen, Danya Tian, Chang Su, Luoying Zhang

Short summary

The circadian photoreceptor cryptochrome (CRY) promotes wakefulness under short, winter-like days by inhibiting GABAergic neurons, thereby increasing the activity of wake-promoting neurons in fruit flies.

AI-generated from the title and abstract; the full text is not read.

Key points

  • Lack of cryptochrome (CRY) leads to increased sleep under short, winter-like days in Drosophila.
  • CRY functions in GABA-synthesizing neurons, including circadian pacemakers like small ventral lateral neurons.
  • CRY downregulates GABAergic tone, which increases the neural activity of wake-promoting large ventral lateral neurons.
  • CRY protein degradation by light makes its wakefulness-promoting function specific to short-day conditions.

AI-generated from the title and abstract; the full text is not read.

Abstract

A cardinal symptom of seasonal affective disorder (SAD, also known as winter depression) is hypersomnolence, while the cause of this ‘winter sleepiness’ is not known. Here, we found that lack of the circadian photoreceptor cryptochrome ( cry ) leads to increased sleep under short winter-like days in the fruit fly Drosophila , reminiscent of the hypersomnolence in SAD. CRY functions in neurons that synthesize the major inhibitory neurotransmitter GABA, including the small ventral lateral neurons, which are known to be circadian pacemakers, and downregulates the GABAergic tone. This, in turn, leads to increased neural activity of the wake-promoting large ventral lateral neurons, a subset of circadian neurons that are inhibited by GABA-A receptors. CRY protein is known to be degraded by light, thus rendering CRY to be functional within this GABAergic circuitry to enhance wakefulness only under short-day length. Taken together, we demonstrate a mechanism that specifically regulates wakefulness under short winter-like days, which may provide insights regarding the winter sleepiness in SAD.

The authors' abstract, as published at the source. eLife, 2026 · DOI ↗

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Field: Endocrine and Autonomic Systems

Endocrine and Autonomic SystemsNeuroscience