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蘑菇体神经元中的神经纤维瘤素 1 通过激活 cAMP-PKA 信号传导来介导昼夜节律唤醒驱动。

Neurofibromin 1 in mushroom body neurons mediates circadian wake drive through activating cAMP-PKA signaling.

机构信息

Department of Genetics and Evolution, Sciences III, University of Geneva, 30 Quai Ernest-Ansermet, Geneva, 4, CH-1211, Switzerland.

University of Rochester School of Medicine and Dentistry, Rochester, NY, USA.

出版信息

Nat Commun. 2021 Oct 1;12(1):5758. doi: 10.1038/s41467-021-26031-2.

Abstract

Various behavioral and cognitive states exhibit circadian variations in animals across phyla including Drosophila melanogaster, in which only ~0.1% of the brain's neurons contain circadian clocks. Clock neurons transmit the timing information to a plethora of non-clock neurons via poorly understood mechanisms. Here, we address the molecular underpinning of this phenomenon by profiling circadian gene expression in non-clock neurons that constitute the mushroom body, the center of associative learning and sleep regulation. We show that circadian clocks drive rhythmic expression of hundreds of genes in mushroom body neurons, including the Neurofibromin 1 (Nf1) tumor suppressor gene and Pka-C1. Circadian clocks also drive calcium rhythms in mushroom body neurons via NF1-cAMP/PKA-C1 signaling, eliciting higher mushroom body activity during the day than at night, thereby promoting daytime wakefulness. These findings reveal the pervasive, non-cell-autonomous circadian regulation of gene expression in the brain and its role in sleep.

摘要

各种行为和认知状态在包括黑腹果蝇在内的门纲动物中都表现出昼夜节律变化,而果蝇大脑中只有约 0.1%的神经元含有昼夜节律钟。生物钟神经元通过尚未完全了解的机制将时间信息传递给大量非生物钟神经元。在这里,我们通过分析构成 学习和睡眠调节中心的蘑菇体中非生物钟神经元的昼夜基因表达来研究这一现象的分子基础。我们发现,昼夜钟驱动着蘑菇体神经元中数百个基因的节律表达,包括神经纤维瘤 1 (NF1)肿瘤抑制基因和 Pka-C1。昼夜钟还通过 NF1-cAMP/PKA-C1 信号传导驱动蘑菇体神经元中的钙节律,白天比夜间引发更高的蘑菇体活动,从而促进白天清醒。这些发现揭示了大脑中基因表达的普遍的、非细胞自主的昼夜节律调节及其在睡眠中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b54b/8486785/30c99fa6ba3a/41467_2021_26031_Fig1_HTML.jpg

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