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睡眠剥夺对海马 CA1 区转录谱的影响:与衰老和应激的关系。

Hippocampal CA1 transcriptional profile of sleep deprivation: relation to aging and stress.

机构信息

Department of Molecular and Biomedical Pharmacology, University of Kentucky College of Medicine, Lexington, Kentucky, United States of America.

出版信息

PLoS One. 2012;7(7):e40128. doi: 10.1371/journal.pone.0040128. Epub 2012 Jul 5.

Abstract

BACKGROUND

Many aging changes seem similar to those elicited by sleep-deprivation and psychosocial stress. Further, sleep architecture changes with age suggest an age-related loss of sleep. Here, we hypothesized that sleep deprivation in young subjects would elicit both stress and aging-like transcriptional responses.

METHODOLOGY/PRINCIPAL FINDINGS: F344 rats were divided into control and sleep deprivation groups. Body weight, adrenal weight, corticosterone level and hippocampal CA1 transcriptional profiles were measured. A second group of animals was exposed to novel environment stress (NES), and their hippocampal transcriptional profiles measured. A third cohort exposed to control or SD was used to validate transcriptional results with Western blots. Microarray results were statistically contrasted with prior transcriptional studies. Microarray results pointed to sleep pressure signaling and macromolecular synthesis disruptions in the hippocampal CA1 region. Animals exposed to NES recapitulated nearly one third of the SD transcriptional profile. However, the SD-aging relationship was more complex. Compared to aging, SD profiles influenced a significant subset of genes. mRNA associated with neurogenesis and energy pathways showed agreement between aging and SD, while immune, glial, and macromolecular synthesis pathways showed SD profiles that opposed those seen in aging.

CONCLUSIONS/SIGNIFICANCE: We conclude that although NES and SD exert similar transcriptional changes, selective presynaptic release machinery and Homer1 expression changes are seen in SD. Among other changes, the marked decrease in Homer1 expression with age may represent an important divergence between young and aged brain response to SD. Based on this, it seems reasonable to conclude that therapeutic strategies designed to promote sleep in young subjects may have off-target effects in the aged. Finally, this work identifies presynaptic vesicular release and intercellular adhesion molecular signatures as novel therapeutic targets to counter effects of SD in young subjects.

摘要

背景

许多衰老变化似乎与睡眠剥夺和心理社会应激引起的变化相似。此外,随着年龄的增长,睡眠结构的变化表明睡眠有与年龄相关的损失。在这里,我们假设在年轻受试者中进行睡眠剥夺会引起应激和衰老样转录反应。

方法/主要发现:将 F344 大鼠分为对照组和睡眠剥夺组。测量体重、肾上腺重量、皮质酮水平和海马 CA1 转录谱。第二组动物暴露于新环境应激(NES),测量其海马转录谱。第三组暴露于对照或 SD 的动物用于用 Western blot 验证转录结果。统计对比微阵列结果与之前的转录研究。微阵列结果表明,在海马 CA1 区存在睡眠压力信号和大分子合成中断。暴露于 NES 的动物再现了近三分之一的 SD 转录谱。然而,SD-衰老关系更为复杂。与衰老相比,SD 谱影响了显著的基因子集。与神经发生和能量途径相关的 mRNA 在衰老和 SD 之间具有一致性,而免疫、神经胶质和大分子合成途径的 mRNA 则显示出与衰老相反的 SD 谱。

结论/意义:我们得出的结论是,尽管 NES 和 SD 产生相似的转录变化,但选择性的突触前释放机制和 Homer1 表达变化仅在 SD 中可见。除其他变化外,Homer1 表达随年龄的显著下降可能代表年轻和老年大脑对 SD 反应之间的一个重要分歧。基于此,可以合理地得出结论,旨在促进年轻受试者睡眠的治疗策略可能会对老年受试者产生靶向外效应。最后,这项工作确定了突触前囊泡释放和细胞间黏附分子特征作为新的治疗靶点,以对抗年轻受试者 SD 的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0db5/3390348/1b46d1781d86/pone.0040128.g001.jpg

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