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一种针对睡眠和饥饿抵抗的筛选方法确定了辅助通道 unc79 的促醒作用。

A screen for sleep and starvation resistance identifies a wake-promoting role for the auxiliary channel unc79.

机构信息

Department of Biological Sciences, Florida Atlantic University, Jupiter, FL 33458, USA.

Department of Biological Sciences, University of Nevada, Las Vegas, Las Vegas, NV 89154, USA.

出版信息

G3 (Bethesda). 2021 Aug 7;11(8). doi: 10.1093/g3journal/jkab199.

Abstract

The regulation of sleep and metabolism are highly interconnected, and dysregulation of sleep is linked to metabolic diseases that include obesity, diabetes, and heart disease. Furthermore, both acute and long-term changes in diet potently impact sleep duration and quality. To identify novel factors that modulate interactions between sleep and metabolic state, we performed a genetic screen for their roles in regulating sleep duration, starvation resistance, and starvation-dependent modulation of sleep. This screen identified a number of genes with potential roles in regulating sleep, metabolism, or both processes. One such gene encodes the auxiliary ion channel UNC79, which was implicated in both the regulation of sleep and starvation resistance. Genetic knockdown or mutation of unc79 results in flies with increased sleep duration, as well as increased starvation resistance. Previous findings have shown that unc79 is required in pacemaker for 24-hours circadian rhythms. Here, we find that unc79 functions in the mushroom body, but not pacemaker neurons, to regulate sleep duration and starvation resistance. Together, these findings reveal spatially localized separable functions of unc79 in the regulation of circadian behavior, sleep, and metabolic function.

摘要

睡眠和代谢的调节高度相互关联,睡眠失调与代谢疾病有关,包括肥胖、糖尿病和心脏病。此外,饮食的急性和长期变化强烈影响睡眠持续时间和质量。为了确定调节睡眠和代谢状态之间相互作用的新因素,我们进行了遗传筛选,以确定它们在调节睡眠持续时间、抗饥饿和饥饿依赖的睡眠调节中的作用。该筛选鉴定出了一些可能在调节睡眠、代谢或这两个过程中发挥作用的基因。其中一个基因编码辅助离子通道 UNC79,它与睡眠调节和抗饥饿有关。unc79 的基因敲低或突变导致果蝇的睡眠时间延长,同时抗饥饿能力增强。先前的研究结果表明,unc79 在 24 小时昼夜节律的起搏器中是必需的。在这里,我们发现 unc79 在蘑菇体中发挥作用,但不在起搏器神经元中,以调节睡眠持续时间和抗饥饿能力。总之,这些发现揭示了 unc79 在调节昼夜行为、睡眠和代谢功能方面具有空间上分离的功能。

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