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Epigenetic rewiring of skeletal muscle enhancers after exercise training supports a role in whole-body function and human health

OBJECTIVES: Regular physical exercise improves health by reducing the risk of a plethora of chronic disorders. We hypothesized that endurance exercise training remodels the activity of gene enhancers in skeletal muscle and that this remodeling contributes to the beneficial effects of exercise on hum...

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Autores principales: Williams, Kristine, Carrasquilla, Germán D., Ingerslev, Lars Roed, Hochreuter, Mette Yde, Hansson, Svenja, Pillon, Nicolas J., Donkin, Ida, Versteyhe, Soetkin, Zierath, Juleen R., Kilpeläinen, Tuomas O., Barrès, Romain
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8355925/
https://www.ncbi.nlm.nih.gov/pubmed/34252634
http://dx.doi.org/10.1016/j.molmet.2021.101290
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author Williams, Kristine
Carrasquilla, Germán D.
Ingerslev, Lars Roed
Hochreuter, Mette Yde
Hansson, Svenja
Pillon, Nicolas J.
Donkin, Ida
Versteyhe, Soetkin
Zierath, Juleen R.
Kilpeläinen, Tuomas O.
Barrès, Romain
author_facet Williams, Kristine
Carrasquilla, Germán D.
Ingerslev, Lars Roed
Hochreuter, Mette Yde
Hansson, Svenja
Pillon, Nicolas J.
Donkin, Ida
Versteyhe, Soetkin
Zierath, Juleen R.
Kilpeläinen, Tuomas O.
Barrès, Romain
author_sort Williams, Kristine
collection PubMed
description OBJECTIVES: Regular physical exercise improves health by reducing the risk of a plethora of chronic disorders. We hypothesized that endurance exercise training remodels the activity of gene enhancers in skeletal muscle and that this remodeling contributes to the beneficial effects of exercise on human health. METHODS AND RESULTS: By studying changes in histone modifications, we mapped the genome-wide positions and activities of enhancers in skeletal muscle biopsies collected from young sedentary men before and after 6 weeks of endurance exercise. We identified extensive remodeling of enhancer activities after exercise training, with a large subset of the remodeled enhancers located in the proximity of genes transcriptionally regulated after exercise. By overlapping the position of enhancers with genetic variants, we identified an enrichment of disease-associated genetic variants within the exercise-remodeled enhancers. CONCLUSION: Our data provide evidence of a functional link between epigenetic rewiring of enhancers to control their activity after exercise training and the modulation of disease risk in humans.
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spelling pubmed-83559252021-08-15 Epigenetic rewiring of skeletal muscle enhancers after exercise training supports a role in whole-body function and human health Williams, Kristine Carrasquilla, Germán D. Ingerslev, Lars Roed Hochreuter, Mette Yde Hansson, Svenja Pillon, Nicolas J. Donkin, Ida Versteyhe, Soetkin Zierath, Juleen R. Kilpeläinen, Tuomas O. Barrès, Romain Mol Metab Original Article OBJECTIVES: Regular physical exercise improves health by reducing the risk of a plethora of chronic disorders. We hypothesized that endurance exercise training remodels the activity of gene enhancers in skeletal muscle and that this remodeling contributes to the beneficial effects of exercise on human health. METHODS AND RESULTS: By studying changes in histone modifications, we mapped the genome-wide positions and activities of enhancers in skeletal muscle biopsies collected from young sedentary men before and after 6 weeks of endurance exercise. We identified extensive remodeling of enhancer activities after exercise training, with a large subset of the remodeled enhancers located in the proximity of genes transcriptionally regulated after exercise. By overlapping the position of enhancers with genetic variants, we identified an enrichment of disease-associated genetic variants within the exercise-remodeled enhancers. CONCLUSION: Our data provide evidence of a functional link between epigenetic rewiring of enhancers to control their activity after exercise training and the modulation of disease risk in humans. Elsevier 2021-07-10 /pmc/articles/PMC8355925/ /pubmed/34252634 http://dx.doi.org/10.1016/j.molmet.2021.101290 Text en © 2021 The Author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Original Article
Williams, Kristine
Carrasquilla, Germán D.
Ingerslev, Lars Roed
Hochreuter, Mette Yde
Hansson, Svenja
Pillon, Nicolas J.
Donkin, Ida
Versteyhe, Soetkin
Zierath, Juleen R.
Kilpeläinen, Tuomas O.
Barrès, Romain
Epigenetic rewiring of skeletal muscle enhancers after exercise training supports a role in whole-body function and human health
title Epigenetic rewiring of skeletal muscle enhancers after exercise training supports a role in whole-body function and human health
title_full Epigenetic rewiring of skeletal muscle enhancers after exercise training supports a role in whole-body function and human health
title_fullStr Epigenetic rewiring of skeletal muscle enhancers after exercise training supports a role in whole-body function and human health
title_full_unstemmed Epigenetic rewiring of skeletal muscle enhancers after exercise training supports a role in whole-body function and human health
title_short Epigenetic rewiring of skeletal muscle enhancers after exercise training supports a role in whole-body function and human health
title_sort epigenetic rewiring of skeletal muscle enhancers after exercise training supports a role in whole-body function and human health
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8355925/
https://www.ncbi.nlm.nih.gov/pubmed/34252634
http://dx.doi.org/10.1016/j.molmet.2021.101290
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