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轮班工作打乱了医院护士的转录组的昼夜节律调节。

Shift Work Disrupts Circadian Regulation of the Transcriptome in Hospital Nurses.

机构信息

Department of Cellular, Integrative & Developmental Biology.

Division of Human Genetics and Immunobiology, Center for Chronobiology, Department of Pediatrics, Cincinnati Children's Hospital Medical Center, Cincinnati, OH, USA.

出版信息

J Biol Rhythms. 2019 Apr;34(2):167-177. doi: 10.1177/0748730419826694. Epub 2019 Feb 4.

Abstract

Circadian misalignment between sleep and behavioral/feeding rhythms is thought to lead to various health impairments in shift workers. Therefore, we investigated how shift work leads to genome-wide circadian dysregulation in hospital nurses. Female nurses from the University of Alabama at Birmingham (UAB) Hospital working night shift ( n = 9; 29.6 ± 11.4 y) and day shift ( n = 8; 34.9 ± 9.4 y) participated in a 9-day study measuring locomotor activity and core body temperature (CBT) continuously. Additionally, cortisol and melatonin were assayed and peripheral blood mononuclear cells (PBMCs) were harvested for RNA extraction every 3 h on a day off from work. We saw phase desynchrony of core body temperature, peak cortisol, and dim light melatonin onset in individual night-shift subjects compared with day-shift subjects. This variability was evident even though day- and night-shift nurses had similar sleep timing and scheduled meal times on days off. Surprisingly, the phase and rhythmicity of the expression of the clock gene, PER1, in PBMCs were similar for day-shift and night-shift subjects. Genome-wide microarray analysis of PBMCs from a subset of nurses revealed distinct gene expression patterns between night-shift and day-shift subjects. Enrichment analysis showed that day-shift subjects expressed pathways involved in generic transcription and regulation of signal transduction, whereas night-shift subjects expressed pathways such as RNA polymerase I promoter opening, the matrisome, and endocytosis. In addition, there was large variability in the number of rhythmic transcripts among subjects, regardless of shift type. Interestingly, the amplitude of the CBT rhythm appeared to be more consistent with the number of cycling transcripts for each of the 6 subjects than was melatonin rhythm. In summary, we show that shift-work patterns affect circadian alignment and gene expression in PBMCs.

摘要

昼夜节律与睡眠和行为/喂养节律的不匹配被认为会导致轮班工人的各种健康损害。因此,我们研究了轮班工作如何导致医院护士的全基因组昼夜节律失调。阿拉巴马大学伯明翰分校 (UAB) 医院的女性护士上夜班(n = 9;29.6 ± 11.4 岁)和白班(n = 8;34.9 ± 9.4 岁)参加了一项为期 9 天的研究,连续测量运动活动和核心体温(CBT)。此外,还测定了皮质醇和褪黑素,并在休息日每 3 小时采集外周血单核细胞(PBMC)进行 RNA 提取。我们发现,与白班受试者相比,个体夜班受试者的核心体温、皮质醇峰值和暗光褪黑素起始的相位不同步。即使白班和夜班护士在休息日的睡眠时间和预定用餐时间相似,这种可变性仍然明显。令人惊讶的是,PBMC 中时钟基因 PER1 的表达相位和节律性在白班和夜班受试者中相似。对一部分护士的 PBMC 进行全基因组微阵列分析显示,夜班和白班受试者之间存在明显不同的基因表达模式。富集分析显示,白班受试者表达参与通用转录和信号转导调节的途径,而夜班受试者表达 RNA 聚合酶 I 启动子开放、基质组和内吞作用等途径。此外,无论轮班类型如何,受试者之间的节律转录本数量都存在很大的可变性。有趣的是,CBT 节律的幅度似乎比褪黑素节律更与每个 6 名受试者的循环转录本数量一致。总之,我们表明,轮班模式会影响 PBMC 的昼夜节律对齐和基因表达。

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