To sleep and dream: Unraveling narcolepsy

In an extraordinary convergence, Emmanuel Mignot and Masashi Yanagisawa employed two entirely different approaches to establish the pathogenesis of narcolepsy, a devastating sleep disorder associated with overwhelming sleep attacks, cataplexy, episodes with sudden loss of muscle tone, and hallucinations resulting from dreaming while awake. Yanagisawa purified brain ligands for orphan G protein-coupled receptors identifying a peptide, orexin, and then used reverse genetics to show that a knockout of the neuropeptide caused narcolepsy in mice. Mignot used forward genetics to identify genetic defects in the orexin receptor 2 in a hereditable form of canine narcolepsy. Together, they showed that orexin signaling in the brain maintains wakefulness and that orexin deficiency causes narcolepsy. This has led to new, effective treatments to induce sleep or maintain wakefulness. Their discoveries have elucidated a novel neural and molecular mechanism that maintains arousal, suppresses sleep, and controls the onset of our dreams.

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Publication Details

Journal
Proceedings of the National Academy of Sciences
Published
2026-09-09
DOI
https://doi.org/10.1073/pnas.2622458123
Primary Topic
Sleep and Wakefulness Research
Type
article
Field-Weighted Citation Impact
0.00
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article

To sleep and dream: Unraveling narcolepsy

Jeffrey M. Friedman
Proceedings of the National Academy of Sciences
Sleep and Wakefulness Research
article

To sleep and dream: Unraveling narcolepsy

Jeffrey M. Friedman
article en

Abstract

In an extraordinary convergence, Emmanuel Mignot and Masashi Yanagisawa employed two entirely different approaches to establish the pathogenesis of narcolepsy, a devastating sleep disorder associated with overwhelming sleep attacks, cataplexy, episodes with sudden loss of muscle tone, and hallucinations resulting from dreaming while awake. Yanagisawa purified brain ligands for orphan G protein-coupled receptors identifying a peptide, orexin, and then used reverse genetics to show that a knockout of the neuropeptide caused narcolepsy in mice. Mignot used forward genetics to identify genetic defects in the orexin receptor 2 in a hereditable form of canine narcolepsy. Together, they showed that orexin signaling in the brain maintains wakefulness and that orexin deficiency causes narcolepsy. This has led to new, effective treatments to induce sleep or maintain wakefulness. Their discoveries have elucidated a novel neural and molecular mechanism that maintains arousal, suppresses sleep, and controls the onset of our dreams.

Proceedings of the National Academy of SciencesVol. 123(37)
Rockefeller University (US)
Openalex Percentile: Top 9%
Sleep and Wakefulness Research
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To sleep and dream: Unraveling narcolepsy — Jeffrey M. Friedman · Proceedings of the National Academy of Sciences (2026) | TGRS Research Map | TGRS