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Sleep Deprivation Alters the Pituitary Stress Transcriptome in Male and Female Mice

机译:睡眠剥夺改变雄性和雌性小鼠的垂体应激转录组。

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摘要

Poor sleep hygiene is a growing problem, with detrimental effects on many biological systems. The pituitary gland plays a crucial role in the regulation of sleep and the stress response, and its dysfunction leads to sleep-related disorders. However, the interaction between these critical functions remains unclear. Thus, we performed a comparative, whole-transcriptome, analysis to identify stress-induced genes and relevant pathways that may be affected by sleep deprivation. One day following 12 h of Paradoxical Sleep Deprivation (PSD), mice were restrained for 20 min. Gene expression changes in the pituitary were assessed via RNA-Seq and Gene Ontology in PSD and/or restrained groups compared to controls. We show that restraint triggers transcriptional responses involved in hormone secretion, the glucocorticoid response, and apoptosis in both sexes, with 285 differentially expressed genes in females and 93 in males. When PSD preceded restraint stress, the numbers of differentially expressed genes increased to 613 in females and 580 in males. The pituitary transcriptome of restraint+PSD animals was enriched for microglia and macrophage proliferation, cellular response to corticosteroids, and apoptosis, among others. Finally, we identify sex-specific differences in restraint-induced genes following PSD. These findings provide genetic targets to consider when studying sleep and the response to stress.
机译:睡眠卫生差是一个日益严重的问题,对许多生物系统都有不利影响。垂体在调节睡眠和压力反应中起关键作用,其功能障碍导致与睡眠有关的疾病。但是,这些关键功能之间的相互作用仍然不清楚。因此,我们进行了比较性的全转录组分析,以鉴定压力诱导的基因和可能受到睡眠剥夺影响的相关途径。悖论性睡眠剥夺(PSD)12小时后的第二天,将小鼠约束20分钟。通过RNA-Seq和Gene Ontology评估了PSD和/或受限制组与对照组相比的垂体中的基因表达变化。我们表明,约束会触发涉及雌性激素分泌,糖皮质激素反应和凋亡的转录反应,在女性中有285个差异表达的基因,在男性中有93个。当PSD在约束压力之前出现时,差异表达基因的数量在雌性中增加到613个,在雄性中增加到580个。约束+ PSD动物的垂体转录组富含小胶质细胞和巨噬细胞增殖,对皮质类固醇的细胞反应以及细胞凋亡等。最后,我们确定了PSD后约束诱导基因的性别特异性差异。这些发现为研究睡眠和对压力的反应提供了遗传学目标。

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