◇ 2025年1月20日(月)加齢研研究員会DATEセミナーのご案内
 加齢医学研究所研究員会では、公開セミナーとして「DATEセミナー ※ 」を開催しています。
 ( ※ Distinguished, Accomplished, Top-notch, and Excellent seminar)

日時: 令和7年1月20日(月)午後5時30分~6時30分
場所: 加齢医学研究所スマート・エイジング研究棟 1階 国際会議室
演題: Deciphering the mysteries of sleep: from basic neuroscience to real-world applications
講師: 柳沢正史
所属: 筑波大学 国際統合睡眠医学研究機構
担当: 加齢医学研究所研究員会事務局 (内線8576)
要旨:

Although sleep is a ubiquitous behavior in animal species with a nervous system, many aspects in the neurobiology of sleep remain mysterious. Our discovery of orexin, a hypothalamic neuropeptide involved in the maintenance of wakefulness, has triggered intensive research examining the exact role of the orexinergic and other neuronal pathways in the regulation of sleep/wakefulness. Orexin receptor antagonists, which specifically block the endogenous waking system, have been approved as a new drug to treat insomnia. Also, since the sleep disorder narcolepsy-cataplexy is caused by orexin deficiency, orexin receptor agonists are expected to provide mechanistic therapy for the disease; they will likely be also useful for treating excessive sleepiness due to other etiologies.
Even though the executive neurocircuitry and neurochemistry for sleep/wake switching, including the orexinergic system, has been increasingly revealed in recent years, the mechanism for homeostatic regulation of sleep, as well as the neural substrate for “sleepiness” (sleep pressure), remains unknown. To crack open this black box, we have initiated a large-scale forward genetic screen of sleep/wake phenotype in mice based on true somnographic (EEG/EMG) measurements. We have so far screened >10,000 heterozygous ENU-mutagenized founders and established several pedigrees exhibiting heritable and specific sleep/wake abnormalities. By combining linkage analysis and the next-generation whole exome sequencing, we have molecularly identified and verified the causal mutation in several of these pedigrees. Since these dominant mutations cause strong phenotypic traits, we expect that the mutated genes will provide new insights into the elusive pathway regulating sleep/wakefulness. Indeed, through a systematic cross-comparison of the SIK3 Sleepy mutants and sleep-deprived mice, we have found that the cumulative phosphorylation state of a specific set of mostly synaptic proteins may represent the molecular substrate of sleep pressure. We have also found that the neuronal molecular pathway LKB1-SIK3-HDAC4/5 may represent the level of sleep pressure, regulating the amount, depth, and timing of sleep by acting in different brain regions, respectively (Kim et al. Nature 612: 512-518, 2022; Zhou et al. Nature 612: 519-527, 2022).

今回は、筑波大学柳沢正史教授をお招きし、招待講演を開催することとなりました。
講演のあとに加齢研実験研究棟7Fにて柳沢先生との交流会を企画しており、軽食が提供されます。

本セミナーは、最新かつ高度な知識の共有、一流の専門家と交流する機会の提供、参加者のスキルアップや視野の拡大、これらを通じた分野全体への貢献、を目的に開催されています。

皆さまのご参加をお待ちしております。