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Physical activity a modulator of aging through effects on telomere biology

机译:体育活动通过对端粒生物学的效果的调节剂

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摘要

Aging is a complex process that is not well understood but involves finite changes at the genetic and epigenetic level. Physical activity is a well-documented modulator of the physiological process of aging. It has been suggested that the beneficial health effects of regular exercise are at least partly mediated through its effects on telomeres and associated regulatory pathways. Telomeres, the region of repetitive nucleotide sequences functioning as a “cap” at the chromosomal ends, play an important role to protect genomic DNA from degradation. Telomeres of dividing cells progressively shorten with age. Leucocyte telomere length (TL) has been associated with age-related diseases. Epidemiologic evidence indicates a strong relationship between physical activity and TL. In addition, TL has also been shown to predict all-cause and cardiovascular mortality. Experimental studies support a functional link between aerobic exercise and telomere preservation through activation of telomerase, an enzyme that adds nucleotides to the telomeric ends. However, unresolved questions regarding exercise modalities, pathomechanistic aspects and analytical issues limit the interpretability of available data. This review provides an overview about the current knowledge in the area of telomere biology, aging and physical activity. Finally, the capabilities and limitations of available analytical methods are addressed.
机译:老化是一种复杂的过程,不太了解,但涉及遗传和表观遗传水平的有限变化。体育活动是一种记录的衰老生理过程的调节剂。已经提出,常规运动的有益健康影响至少部分通过其对端粒和相关的调节途径的影响介导。端粒,在染色体末端发挥作用作为“帽”的重复核苷酸序列的区域起到保护基因组DNA免于降解的重要作用。分裂细胞的端粒随着年龄的增长而逐渐缩短。白细胞端粒长度(TL)已与年龄相关的疾病有关。流行病学证据表明身体活动与TL之间的强大关系。此外,TL还被证明预测全部原因和心血管死亡率。实验研究支持通过激活端粒酶的有氧运动和端粒保存之间的功能性联系,一种将核苷酸添加到端粒端的酶。但是,关于行使方式,公路机制方面和分析问题的未解决问题限制了可用数据的可解释性。本次审查概述了关于端粒体生物,老龄化和身体活动领域的当前知识的概述。最后,解决了可用分析方法的能力和限制。

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