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突变亨廷顿蛋白扰乱果蝇的生物钟基因表达和睡眠模式。

Mutant huntingtin disturbs circadian clock gene expression and sleep patterns in Drosophila.

机构信息

Department of Biochemistry and Molecular Biology, Faculty of Science and Informatics, University of Szeged, 6726, Közép fasor 52, Szeged, Hungary.

Doctoral School in Biology, Faculty of Science and Informatics, University of Szeged, 6726, Szeged, Hungary.

出版信息

Sci Rep. 2019 May 9;9(1):7174. doi: 10.1038/s41598-019-43612-w.

Abstract

Deficiency of the sleep-wake cycle can accelerate the progression of Huntington's disease (HD) and exacerbate symptoms making it a target of investigation to better understand the molecular pathology of the disorder. In this study we analyzed sleep defects in a Drosophila model of HD and investigated whether disturbed sleep coincides with alterations in the molecular mechanism controlling circadian rhythm. To analyze sleep defects we recorded the daily activity of flies in 12:12 hours light:dark entrainment and in regard to the underlying molecular mechanism measured circadian "clock" gene expression. In HD flies we observed reduced amount of sleep, sleep fragmentation and prolonged sleep latency. We found changes in gene expression patterns of both transcriptional feedback loops of circadian regulation. We detected prolonged expression of the core feedback loop components period and timeless, whilst the secondary feedback loop member vrille had lower expression rates in general. Our results show that the Drosophila HD model recapitulates most of the sleep related symptoms reported in patients therefore it can be a potential tool to study the molecular background of sleep defects in HD. Altered expression of circadian "clock" genes suggests that disturbed sleep pattern in HD might be the consequence of disturbed circadian regulation.

摘要

睡眠-觉醒周期的缺乏会加速亨廷顿病 (HD) 的进展,并使症状恶化,因此这是一个研究目标,以更好地了解该疾病的分子病理学。在这项研究中,我们分析了 HD 果蝇模型中的睡眠缺陷,并研究了睡眠紊乱是否与控制昼夜节律的分子机制改变同时发生。为了分析睡眠缺陷,我们记录了 12:12 小时光暗驯化过程中苍蝇的日常活动,并根据潜在的分子机制测量了昼夜“时钟”基因表达。在 HD 苍蝇中,我们观察到睡眠时间减少、睡眠碎片化和睡眠潜伏期延长。我们发现昼夜节律调节的两个转录反馈回路的基因表达模式都发生了变化。我们检测到核心反馈回路组件周期和无时态的表达延长,而二级反馈回路成员 vrille 的表达率普遍较低。我们的结果表明,果蝇 HD 模型再现了大多数在患者中报告的与睡眠相关的症状,因此它可以成为研究 HD 中睡眠缺陷的分子背景的潜在工具。昼夜“时钟”基因表达的改变表明,HD 中的睡眠模式紊乱可能是昼夜节律调节紊乱的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4188/6509128/8d950b982597/41598_2019_43612_Fig1_HTML.jpg

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