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A role for the molecular chaperone protein BiP/GRP78 in Drosophila sleep homeostasis.

机译:分子伴侣蛋白BiP / GRP78在果蝇睡眠稳态中的作用。

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STUDY OBJECTIVES: Microarray studies have identified numerous genes that change in response to prolonged wakefulness. The challenge is to determine which transcriptional changes translate into protein changes that are critical for recovery following sleep loss. BiP is a protein indicator of endoplasmic reticulum (ER) stress, and BiP mRNA increases in mouse and rat cerebral cortex and in Drosophila heads in response to sleep loss. We first sought to determine whether the expression of BiP protein parallels sleep homeostatic drive and dissipates with recovery sleep. We then sought to establish a key role for BiP in the homeostatic process of sleep by contrasting recovery sleep in models of over- and under-expression of BiP. SUBJECTS AND INTERVENTIONS: Drosophila melanogaster were used to take advantage of the UAS-Gal4 system to both over express wild-type BiP and express a dominant negative form of BiP. RESULTS: BiP protein rises two and a half fold across sleep loss and falls in recovery sleep, in parallel with gene changes. BiP over expression in the flies leads to an increase in recovery sleep in response to sleep loss, in parallel with a delay in the unfolded protein response. Flies with the dominant negative mutation and reduced functional BiP show the opposite effect. CONCLUSIONS: We show directly that BiP protein, a key indicator of ER stress is instrumental in determining the amount of recovery sleep following enforced wakefulness. We have thus identified a novel window into regulation of sleep homeostasis.
机译:研究目的:芯片研究已经鉴定出许多基因,这些基因会随着长时间的清醒而变化。面临的挑战是确定哪些转录变化转化为对睡眠丧失后的恢复至关重要的蛋白质变化。 BiP是内质网(ER)应激的一种蛋白质指示剂,BiP mRNA在小鼠和大鼠大脑皮层以及果蝇头部中会因睡眠不足而增加。我们首先试图确定BiP蛋白的表达是否与睡眠稳态驱动平行,并与恢复睡眠消散。然后,我们试图通过在BiP过表达和过表达模型中对比恢复性睡眠来确立BiP在睡眠稳态过程中的关键作用。受试者和干预措施:果蝇用于利用UAS-Gal4系统来过度表达野生型BiP和表达显性的BiP阴性形式。结果:BiP蛋白在睡眠丧失中上升了两倍半,而在恢复睡眠时下降,与基因改变同时发生。苍蝇中的BiP过表达会导致因睡眠不足而导致的恢复睡眠增加,同时延迟未折叠的蛋白质反应。具有显性负突变和功能性BiP降低的果蝇显示相反的效果。结论:我们直接表明,BiP蛋白是内质网应激的关键指标,在确定强迫性清醒后恢复睡眠的数量中起重要作用。因此,我们确定了调节睡眠稳态的新窗口。

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