Literature DB >> 24399634

Physical exercise and epigenetic modulation: elucidating intricate mechanisms.

Helios Pareja-Galeano1, Fabian Sanchis-Gomar, José Luis García-Giménez.   

Abstract

Physical exercise induces several metabolic adaptations to meet increased energy requirements. Promoter DNA methylation, histone post-translational modifications, or microRNA expression are involved in the gene expression changes implicated in metabolic adaptation after exercise. Epigenetic modifications and many epigenetic enzymes are potentially dependent on changes in the levels of metabolites, such as oxygen, tricarboxylic acid cycle intermediates, 2-oxoglutarate, 2-hydroxyglutarate, and β-hydroxybutyrate, and are therefore susceptible to the changes induced by exercise in a tissue-dependent manner. Most of these changes are regulated by important epigenetic modifiers that control DNA methylation (DNA methyl transferases, and ten-eleven-translocation proteins) and post-translational modifications in histone tails controlled by histone acetyltransferases, histone deacetylases, and histone demethylases (jumonji C proteins, lysine-specific histone demethylase, etc.), among others. Developments in mass spectrometry approaches and the comprehension of the interconnections between epigenetics and metabolism further increase our understanding of underlying epigenetic mechanisms, not only of exercise, but also of disease and aging. In this article, we describe several of these substrates and signaling molecules regulated by exercise that affect some of the most important epigenetic mechanisms, which, in turn, control the gene expression involved in metabolism.

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Year:  2014        PMID: 24399634     DOI: 10.1007/s40279-013-0138-6

Source DB:  PubMed          Journal:  Sports Med        ISSN: 0112-1642            Impact factor:   11.136


  65 in total

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4.  Histone demethylation by a family of JmjC domain-containing proteins.

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Review 5.  Adaptations of skeletal muscle to endurance exercise and their metabolic consequences.

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Journal:  Proc Natl Acad Sci U S A       Date:  2009-01-28       Impact factor: 11.205

7.  Suppression of oxidative stress by β-hydroxybutyrate, an endogenous histone deacetylase inhibitor.

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Review 3.  Physical Exercise and Epigenetic Modifications in Skeletal Muscle.

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Review 4.  Exercise and the control of muscle mass in human.

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Review 5.  Impact of nutrition on pollutant toxicity: an update with new insights into epigenetic regulation.

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Review 6.  'Adipaging': ageing and obesity share biological hallmarks related to a dysfunctional adipose tissue.

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7.  High responders and low responders: factors associated with individual variation in response to standardized training.

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8.  Treadmill exercise alters histone acetyltransferases and histone deacetylases activities in frontal cortices from wistar rats.

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Review 9.  Exercise-induced oxidative stress: past, present and future.

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Review 10.  Influence of maternal obesity, diet and exercise on epigenetic regulation of adipocytes.

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