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首页> 外文期刊>Journal of applied physiology >Amount of daily exercise is an essential stimulation to alter the epigenome of skeletal muscle in rats
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Amount of daily exercise is an essential stimulation to alter the epigenome of skeletal muscle in rats

机译:日常运动量是改变大鼠骨骼肌外形肌肉的必要刺激

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Long-term running training causes epigenetic changes in the skeletal muscles. Here we tested the effects of the total amount or duration of running training on the distribution of histones in the rat plantaris muscle. Post-weaned young rats were assigned to 3 different training groups: Run-1, 30 min/day running exercise for 8 wk using an animal treadmill at 24 m/min; Run-2, 15 min/day for 8 wk; and Run-3, 60 min/day for 4 wk. Citrate synthase activity was not significantly changed by running training, although the slight increase was observed in Run-3. Genes that were previously defined as showing the typical responses to running training were targeted to measure the distribution of histones using chromatin immunoprecipitation. The distribution of acetylated histone 3 was elevated in Run-2 and Run-3, but not in Run-1. Incorporation of H3.3 into the nucleosome was stimulated in Run-1, whereas H3.3 distribution was unchanged in Run-2 or downregulated in Run-3. Significant downregulation of H3.3 expression was also detected in Run-3. We further checked the responses of the target genes during acute running. Target genes were transcriptionally activated and histone acetylation was stimulated at the loci in response to acute running. These results suggested that the exchange of the histone component to H3.3 was stimulated by running training, inhibiting the accumulation of acetylated histones in Run-1. Additionally, it was further suggested that the enhanced daily amount of running caused changes in the H3.3 expression, affecting the rate of the histone exchange in Run-3.
机译:长期运行训练会导致骨骼肌中的表观遗传变化。在这里,我们测试了在大鼠Plantaris肌肉中的组织分布的运行培训的总量或持续时间的影响。断奶后的幼鼠分配到3种不同的培训组:使用24米/分钟的动物跑步机运行-1,30分钟运行运动,8个WK;运行2,15分钟/天8周;并运行-3,60分钟/天4周。通过运行训练,柠檬酸盐合酶活性不会显着改变,尽管在运行3中观察到轻微增加。以前定义为显示运行培训的典型反应的基因被靶向测量组蛋白的分布使用染色质免疫沉淀。乙酰化组蛋白3的分布在Run-2和Run-3中升高,但不在Run-1中升高。在Run-1中刺激H3.3在核体中的掺入,而H3.3分布在润滑中不变或在运行-3中下调。在Run-3中也检测到H3.3表达的显着下调。我们进一步检查了急性跑步期间靶基因的反应。靶基因被转录活化,响应于急性运行,在基因座上刺激组蛋白乙酰化。这些结果表明,通过运行训练刺激组蛋白组分对H3.3的交换,抑制在Run-1中的乙酰化组蛋白的积累。此外,还提出了增强的每日运行量导致H3.3表达的变化,影响了运行3中的组蛋白交换的速率。

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