ppGpp存在于果蝇体内,并具有调节果蝇睡眠的功能

hLife Pub Date : 2023-12-01 DOI:10.1016/j.hlife.2023.10.004
Xihuimin Dai , Wei Yang , Xiaohui Zhang , Enxing Zhou , Renbo Mao , Ying Liu , Tao Wang , Wenxia Zhang , Xinxiang Zhang , Yi Rao
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引用次数: 0

摘要

睡眠对动物至关重要,它接受来自昼夜节律、稳态和环境的输入,但睡眠的调节机制仍然难以捉摸。发现生命系统中的分子并证明其功能作用,对于进一步了解生物学的分子基础至关重要。在这里,我们报告了果蝇体内存在鸟苷-5′-二磷酸,3′-二磷酸(ppGpp),并在调节睡眠和饥饿诱导的睡眠损失(SISL)中发挥重要作用。ppGpp 在无胚芽果蝇体内被检测到,并被果蝇体内 mesh1 基因编码的酶水解。在 mesh1 突变体果蝇中,夜间睡眠和 SISL 均有缺陷,而野生型 Mesh1 的表达可挽救夜间睡眠和 SISL,但酶缺陷突变体 Mesh1E66A 却不能。异位表达大肠杆菌中的ppGpp合成酶RelA可使mesh1基因敲除突变体出现表型,而过量表达Mesh1则会导致相反的表型,这证明ppGpp在睡眠调节中既是必要的也是充分的。通过化学连接组学筛选和基因交叉实验,我们发现位于大脑中脑旁(PI)区域的 Dilp2 神经元是 ppGpp 的功能位点。因此,我们的研究结果验证了ppGpp在果蝇中的存在,并首次揭示了ppGpp在睡眠调节中的生理作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

ppGpp is present in, and functions to regulate sleep of, Drosophila

ppGpp is present in, and functions to regulate sleep of, Drosophila

Sleep is essential for animals, and receives inputs from circadian, homeostasis, and environment, yet the mechanisms of sleep regulation remain elusive. Discovery of molecules in living systems and demonstration of their functional roles are pivotal in furthering our understanding of the molecular basis of biology. Here, we report that guanosine-5′-diphosphate, 3′-diphosphate (ppGpp) is present in Drosophila, and plays an important role in regulation of sleep and starvation-induced sleep loss (SISL). ppGpp is detected in germ-free Drosophila and hydrolyzed by an enzyme encoded by the mesh1 gene in Drosophila. Nighttime sleep and SISL were defected in mesh1 mutant flies, and rescued by expression of wildtype Mesh1, but not the enzymatically defective mutant Mesh1E66A. Ectopic expression of RelA, the Escherichia coli synthetase for ppGpp, phenocopied mesh1 knockout mutants, whereas overexpression of Mesh1 resulted in the opposite phenotypes, supporting that ppGpp is both necessary and sufficient in sleep regulation. A chemo connectomic screen followed by genetic intersection experiments implicates the Dilp2 neurons in the pars intercerebralis (PI) brain region as the site of ppGpp function. Our results have thus validated the presence of ppGpp in Drosophila and revealed a physiological role of ppGpp in sleep regulation for the first time.

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