The effect of exercise and physical activity on skeletal muscle epigenetics and metabolic adaptations.

IF 2.8 3区 医学 Q2 PHYSIOLOGY European Journal of Applied Physiology Pub Date : 2025-01-08 DOI:10.1007/s00421-025-05704-6
Gregg Mallett
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Abstract

Physical activity (PA) and exercise elicit adaptations and physiological responses in skeletal muscle, which are advantageous for preserving health and minimizing chronic illnesses. The complicated atmosphere of the exercise response can be attributed to hereditary and environmental variables. The primary cause of these adaptations and physiological responses is the transcriptional reactions that follow exercise, whether endurance- (ET) or resistance- training (RT). As a result, the essential metabolic and regulatory pathways and myogenic genes associated with skeletal muscle alter in response to acute and chronic exercise. Epigenetics is the study of the relationship between genetics and the environment. Exercise evokes signaling pathways that strongly alter myofiber metabolism and skeletal muscle physiological and contractile properties. Epigenetic modifications have recently come to light as essential regulators of exercise adaptations. Research has shown various epigenetic markers linked to PA and exercise. The most critical epigenetic alterations in gene transcription identified are DNA methylation and histone modifications, which are associated with the transcriptional response of skeletal muscle to exercise and facilitate the modification to exercise. Other changes in the epigenetic markers are starting to emerge as essential processes for gene transcription, including acetylation as a new epigenetic modification, mediated changes by methylation, phosphorylation, and micro-RNA (miRNA). This review briefly introduces PA and exercise and associated benefits, provides a summary of epigenetic modifications, and a fundamental review of skeletal muscle physiology. The objectives of this review are 1) to discuss exercise-induced adaptations related to epigenetics and 2) to examine the interaction between exercise metabolism and epigenetics.

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运动和体力活动对骨骼肌表观遗传学和代谢适应的影响。
体育活动(PA)和运动引起骨骼肌的适应和生理反应,这有利于保持健康和减少慢性疾病。运动反应的复杂气氛可归因于遗传和环境变量。这些适应和生理反应的主要原因是运动后的转录反应,无论是耐力训练(ET)还是阻力训练(RT)。因此,与骨骼肌相关的基本代谢和调控途径以及肌生成基因会随着急性和慢性运动而改变。表观遗传学是研究遗传学和环境之间关系的学科。运动唤起强烈改变肌纤维代谢和骨骼肌生理和收缩特性的信号通路。最近,表观遗传修饰被认为是运动适应的重要调节因素。研究表明,各种表观遗传标记与PA和运动有关。基因转录中最关键的表观遗传改变是DNA甲基化和组蛋白修饰,它们与骨骼肌对运动的转录反应有关,并促进了对运动的修饰。表观遗传标记的其他变化开始成为基因转录的基本过程,包括乙酰化作为一种新的表观遗传修饰,甲基化,磷酸化和微rna (miRNA)介导的变化。本文简要介绍了PA和运动及其相关益处,总结了表观遗传修饰,并对骨骼肌生理学进行了基本综述。本文的目的是:1)讨论运动诱导的适应性与表观遗传学的关系;2)研究运动代谢与表观遗传学之间的相互作用。
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来源期刊
CiteScore
6.00
自引率
6.70%
发文量
227
审稿时长
3 months
期刊介绍: The European Journal of Applied Physiology (EJAP) aims to promote mechanistic advances in human integrative and translational physiology. Physiology is viewed broadly, having overlapping context with related disciplines such as biomechanics, biochemistry, endocrinology, ergonomics, immunology, motor control, and nutrition. EJAP welcomes studies dealing with physical exercise, training and performance. Studies addressing physiological mechanisms are preferred over descriptive studies. Papers dealing with animal models or pathophysiological conditions are not excluded from consideration, but must be clearly relevant to human physiology.
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