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本文引用的文献

1
A sleep-inducing gene, , links sleep and immune function in .一种诱导睡眠的基因, 在 中把睡眠和免疫功能联系起来。
Science. 2019 Feb 1;363(6426):509-515. doi: 10.1126/science.aat1650.
2
Endocytosis at the blood-brain barrier as a function for sleep.血脑屏障的内吞作用作为睡眠的一种功能。
Elife. 2018 Nov 26;7:e43326. doi: 10.7554/eLife.43326.
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The Taurine Transporter Eaat2 Functions in Ensheathing Glia to Modulate Sleep and Metabolic Rate.牛磺酸转运体 Eaat2 在包绕胶质细胞中发挥作用,调节睡眠和代谢率。
Curr Biol. 2018 Nov 19;28(22):3700-3708.e4. doi: 10.1016/j.cub.2018.10.039. Epub 2018 Nov 8.
4
Astrocyte expression of the Drosophila TNF-alpha homologue, Eiger, regulates sleep in flies.果蝇 TNF-α 同源物 Eiger 在星形胶质细胞中的表达调控果蝇的睡眠。
PLoS Genet. 2018 Oct 31;14(10):e1007724. doi: 10.1371/journal.pgen.1007724. eCollection 2018 Oct.
5
Wakefulness Is Promoted during Day Time by PDFR Signalling to Dopaminergic Neurons in Drosophila melanogaster.PDFR 信号促进果蝇中多巴胺能神经元在白天保持觉醒。
eNeuro. 2018 Aug 8;5(4). doi: 10.1523/ENEURO.0129-18.2018. eCollection 2018 Jul-Aug.
6
Neuronal and molecular mechanisms of sleep homeostasis.睡眠内稳态的神经元和分子机制。
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7
Genes and neural circuits for sleep of the fruit fly.果蝇睡眠的基因与神经回路。
Neurosci Res. 2017 May;118:82-91. doi: 10.1016/j.neures.2017.04.010. Epub 2017 Apr 21.
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Molecular Mechanisms of Sleep Homeostasis in Flies and Mammals.果蝇和哺乳动物睡眠稳态的分子机制
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10
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一种分泌的 Ig 结构域蛋白,在调节果蝇夜间睡眠中,在星形胶质细胞和神经元中都需要。

A Secreted Ig-Domain Protein Required in Both Astrocytes and Neurons for Regulation of Drosophila Night Sleep.

机构信息

Department of Neuroscience, Sackler School of Biomedical Sciences, Tufts University School of Medicine, Boston, MA 02111, USA.

Department of Neuroscience, Sackler School of Biomedical Sciences, Tufts University School of Medicine, Boston, MA 02111, USA.

出版信息

Curr Biol. 2019 Aug 5;29(15):2547-2554.e2. doi: 10.1016/j.cub.2019.06.055. Epub 2019 Jul 25.

DOI:10.1016/j.cub.2019.06.055
PMID:31353186
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6712560/
Abstract

Endogenous rhythmic behaviors are evolutionarily conserved and essential for life. In mammalian and invertebrate models, well-characterized neuronal circuits and evolutionarily conserved mechanisms regulate circadian behavior and sleep [1-4]. In Drosophila, neuronal populations located in multiple brain regions mediate arousal, sleep drive, and homeostasis (reviewed in [3, 5-7]). Similar to mammals [8], there is also evidence that fly glial cells modulate the neuronal circuits controlling rhythmic behaviors, including sleep [1]. Here, we describe a novel gene (CG14141; aka Nkt) that is required for normal sleep. NKT is a 162-amino-acid protein with a single IgC2 immunoglobulin (Ig) domain and a high-quality signal peptide [9], and we show evidence that it is secreted, similar to its C. elegans ortholog (OIG-4) [10]. We demonstrate that Nkt-null flies or those with selective knockdown in either neurons or glia have decreased and fragmented night sleep, indicative of a non-redundant requirement in both cell types. We show that Nkt is required in fly astrocytes and in a specific set of wake-promoting neurons-the mushroom body (MB) α'β' cells that link sleep to memory consolidation [11]. Importantly, Nkt gene expression is required in the adult nervous system for normal sleep, consistent with a physiological rather than developmental function for the Ig-domain protein.

摘要

内源性节律行为在进化上是保守的,对生命至关重要。在哺乳动物和无脊椎动物模型中,特征明确的神经元回路和进化保守的机制调节昼夜节律行为和睡眠[1-4]。在果蝇中,位于多个脑区的神经元群体介导觉醒、睡眠驱动和稳态(见综述[3,5-7])。与哺乳动物类似[8],也有证据表明果蝇神经胶质细胞调节控制节律行为的神经元回路,包括睡眠[1]。在这里,我们描述了一个新的基因(CG14141;又名 Nkt),它是正常睡眠所必需的。Nkt 是一个 162 个氨基酸的蛋白质,具有一个单 IgC2 免疫球蛋白(Ig)结构域和一个高质量的信号肽[9],我们有证据表明它是分泌的,类似于其线虫同源物(OIG-4)[10]。我们证明,Nkt 缺失的果蝇或选择性敲低神经元或神经胶质细胞的果蝇,夜间睡眠减少且碎片化,表明这两种细胞类型都有非冗余的需求。我们表明,Nkt 在果蝇神经胶质细胞和一组特定的促醒神经元-蘑菇体(MB)α'β'细胞中是必需的,后者将睡眠与记忆巩固联系起来[11]。重要的是,Nkt 基因表达在成年神经系统中是正常睡眠所必需的,这与 Ig 结构域蛋白的生理功能而不是发育功能一致。