Literature DB >> 28444394

Tissue-Specific Dissociation of Diurnal Transcriptome Rhythms During Sleep Restriction in Mice.

Jana Husse1, Jana-Thabea Kiehn2, Johanna L Barclay3, Nadine Naujokat2, Judit Meyer-Kovac4, Hendrik Lehnert5, Henrik Oster2,4.   

Abstract

Study objectives: Shortened or mistimed sleep affects metabolic homeostasis, which may in part be mediated by dysregulation of endogenous circadian clocks. In this study, we assessed the contribution of sleep disruption to metabolic dysregulation by analysing diurnal transcriptome regulation in metabolic tissues of mice subjected to a sleep restriction (SR) paradigm.
Methods: Male mice were subjected to 2 × 5 days of SR with enforced waking during the first 6 hours of the light phase. SR and control mice were sacrificed at different time points of the day and RNA preparations from the mediobasal hypothalamus (MBH), liver, and epididymal white adipose tissue (eWAT) were subjected to whole-genome microarray hybridization. Transcriptional rhythms were associated with changes in behavioral and physiological parameters such as sleep, body temperature, and food intake. Rhythm detection was performed with CircWave and transcription profiles were compared by 2-way analysis of variance and t-tests with Benjamini-Hochberg corrections.
Results: Clock gene rhythms were blunted in all tissues, while transcriptome regulation was associated with either clock gene expression, sleep patterns, or food intake in a tissue-specific manner. Clock gene expression was associated with apoptosis pathways in the MBH and with tumor necrosis factor alpha signalling in liver. Food intake-associated genes included cilium movement genes in the MBH and lipid metabolism-associated transcripts in liver. Conclusions: In mice, repeated SR profoundly alters behavioral and molecular diurnal rhythms, disrupting essential signalling pathways in MBH, liver, and eWAT, which may underlie the metabolic and cognitive disturbances observed in sleep-restricted humans such as shift workers. © Sleep Research Society 2017. Published by Oxford University Press on behalf of the Sleep Research Society. All rights reserved. For permissions, please e-mail journals.permissions@oup.com.

Entities:  

Keywords:  Sleep restriction; circadian clock; liver; mediobasal hypothalamus; transcriptome; white adipose tissue.

Mesh:

Substances:

Year:  2017        PMID: 28444394     DOI: 10.1093/sleep/zsx068

Source DB:  PubMed          Journal:  Sleep        ISSN: 0161-8105            Impact factor:   5.849


  6 in total

1.  Simulated night shift work induces circadian misalignment of the human peripheral blood mononuclear cell transcriptome.

Authors:  Laura Kervezee; Marc Cuesta; Nicolas Cermakian; Diane B Boivin
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2.  Paclitaxel chemotherapy disrupts behavioral and molecular circadian clocks in mice.

Authors:  Kyle A Sullivan; Corena V Grant; Kelley R Jordan; Karl Obrietan; Leah M Pyter
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Review 5.  Circadian and Sleep Metabolomics Across Species.

Authors:  Dania M Malik; Georgios K Paschos; Amita Sehgal; Aalim M Weljie
Journal:  J Mol Biol       Date:  2020-05-03       Impact factor: 5.469

6.  REM sleep's unique associations with corticosterone regulation, apoptotic pathways, and behavior in chronic stress in mice.

Authors:  Mathieu Nollet; Harriet Hicks; Andrew P McCarthy; Huihai Wu; Carla S Möller-Levet; Emma E Laing; Karim Malki; Nathan Lawless; Keith A Wafford; Derk-Jan Dijk; Raphaelle Winsky-Sommerer
Journal:  Proc Natl Acad Sci U S A       Date:  2019-01-25       Impact factor: 11.205

  6 in total

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