A Model of Exposure to Extreme Environmental Heat Uncovers the Human Transcriptome to Heat Stress

The molecular mechanisms by which individuals subjected to environmental heat stress either recover or develop heat-related complications are not well understood. We analysed the changes in blood mononuclear gene expression patterns in human volunteers exposed to extreme heat in a sauna (temperature...

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Veröffentlicht in:Scientific reports 2017-08, Vol.7 (1), p.9429-14, Article 9429
Hauptverfasser: Bouchama, Abderrezak, Aziz, Mohammad Azhar, Mahri, Saeed Al, Gabere, Musa Nur, Dlamy, Meshan Al, Mohammad, Sameer, Abbad, Mashael Al, Hussein, Mohamed
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container_issue 1
container_start_page 9429
container_title Scientific reports
container_volume 7
creator Bouchama, Abderrezak
Aziz, Mohammad Azhar
Mahri, Saeed Al
Gabere, Musa Nur
Dlamy, Meshan Al
Mohammad, Sameer
Abbad, Mashael Al
Hussein, Mohamed
description The molecular mechanisms by which individuals subjected to environmental heat stress either recover or develop heat-related complications are not well understood. We analysed the changes in blood mononuclear gene expression patterns in human volunteers exposed to extreme heat in a sauna (temperature of 75.7 ± 0.86 °C). Our analysis reveals that expression changes occur rapidly with no significant increase in core temperature and continue to amplify one hour after the end of heat stress. The reprogramed transcriptome was predominantly inhibitory, as more than two-thirds of the expressed genes were suppressed. The differentially expressed genes encoded proteins that function in stress-associated pathways; including proteostasis, energy metabolism, cell growth and proliferation, and cell death, and survival. The transcriptome also included mitochondrial dysfunction, altered protein synthesis, and reduced expression of genes -related to immune function. The findings reveal the human transcriptomic response to heat and highlight changes that might underlie the health outcomes observed during heat waves.
doi_str_mv 10.1038/s41598-017-09819-5
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subjects 38/61
38/77
38/90
631/208/199
631/443/319/1557
Adult
Biomarkers
Cell death
Cell survival
Energy metabolism
Environmental Exposure - adverse effects
Extreme heat
Extreme Heat - adverse effects
Female
Gene expression
Gene Expression Profiling
Heat
Heat stress
Heat tolerance
Heat waves
Heat-Shock Response - genetics
Humanities and Social Sciences
Humans
Immune response
Male
Mitochondria
Molecular modelling
multidisciplinary
Protein biosynthesis
Protein synthesis
Reproducibility of Results
Science
Science (multidisciplinary)
Signal Transduction
Transcriptome
Young Adult
title A Model of Exposure to Extreme Environmental Heat Uncovers the Human Transcriptome to Heat Stress
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