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Genome-wide sperm DNA methylation changes after 3 months of exercise training in humans

机译:基因组 - 宽的精子DNA甲基化在人类运动训练3个月后变化

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Aim: DNA methylation programs gene expression and is involved in numerous biological processes. Accumulating evidence supports transgenerational inheritance of DNA methylation changes in mammals via germ cells. Our aim was to determine the effect of exercise on sperm DNA methylation. Materials & methods: Twenty-four men were recruited and assigned to an exercise intervention or control group. Clinical parameters were measured and sperm samples were donated by subjects before and after the 3-month time-period. Mature sperm global and genome-wide DNA methylation was assessed using an ELISA assay and the 450K BeadChip (Illumina). Results: Global and genome-wide sperm DNA methylation was altered after 3 months of exercise training. DNA methylation changes occurred in genes related to numerous diseases such as schizophrenia and Parkinson's disease. Conclusions: Our study provides the first evidence showing exercise training reprograms the sperm methylome. Whether these DNA methylation changes are inherited to future generations warrants attention.
机译:目的:DNA甲基化程序基因表达并参与许多生物过程。累积证据支持通过生殖细胞转基因DNA甲基化变化的转基因遗传。我们的目标是确定运动对精子DNA甲基化的影响。材料和方法:招募二十四名男子并分配给运动干预或对照组。测量临床参数,并在3个月的时间段之前和之后通过受试者捐赠精子样品。使用ELISA测定和450K珠芯片(Illumina)评估成熟的精子全局和基因组DNA甲基化。结果:在3个月的运动训练后,全局和基因组精子DNA甲基化被改变。与诸如精神分裂症和帕金森病等众多疾病有关的基因中发生DNA甲基化变化。结论:我们的研究提供了第一个显示运动培训的证据重新编程精子甲膜。这些DNA甲基化变化是否遗传到后代认股权证。

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