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收缩活动对年轻和衰老骨骼肌中 PGC-1α 转录的影响。

Effect of contractile activity on PGC-1α transcription in young and aged skeletal muscle.

机构信息

Muscle Health Research Centre, School of Kinesiology and Health Science, York University , Toronto, Ontario , Canada.

出版信息

J Appl Physiol (1985). 2018 Jun 1;124(6):1605-1615. doi: 10.1152/japplphysiol.01110.2017. Epub 2018 Mar 15.

Abstract

Mitochondrial impairments are often noted in aged skeletal muscle. The transcriptional coactivator peroxisome proliferator-activated receptor-γ coactivator-1α (PGC-1α) is integral to maintaining mitochondria, and its expression declines in aged muscle. It remains unknown whether this is due to a transcriptional deficit during aging. Our study examined PGC-1α transcription in muscle from young and old F344BN rats. Using a rat PGC-1α promoter-reporter construct, we found that PGC-1α transcription was reduced by ∼65% in aged TA muscle, accompanied by decreases in PGC-1α mRNA and transcript stability. Altered expression patterns in PGC-1α transcription regulatory factors, including nuclear respiratory factor 2, upstream transcription factor 1, activating transcription factor 2, and yin yang 1, were noted in aged muscle. Acute contractile activity (CA) followed by recovery was employed to examine whether PGC-1α transcription could be activated in aged muscle similar to that observed in young muscle. AMPK and p38 signaling was attenuated in aged muscle. CA evoked an upregulation of PGC-1α transcription in both young and aged groups, whereas mRNAs encoding PGC-1α and cytochrome oxidase subunit IV were induced during the recovery period. Global DNA methylation, an inhibitory event for transcription, was enhanced in aged muscle, likely a result of elevated methyltransferase enzyme Dnmt3b in aged muscle. Successive bouts of CA for 7 days to evaluate longer-term consequences resulted in a rescue of PGC-1α and downstream mRNAs in aged muscle. Our data indicate that diminished mitochondria in aged muscle is due partly to a deficit in PGC-1α transcription, a result of attenuated upstream signaling. Contractile activity is an appropriate countermeasure to restore PGC-1α expression and mitochondrial content in aged muscle. NEW & NOTEWORTHY PGC-1α is a regulator of mitochondrial biogenesis in muscle. We demonstrate that PGC-1α expression is reduced in aging muscle due to decreases in transcriptional and posttranscriptional mechanisms. The transcriptional deficit is due to alterations in transcription factor expression, reduced signaling, and DNA methylation. Acute exercise can initiate signaling to reverse the transcriptional defect, restoring PGC-1α expression toward young values, suggesting a mechanism whereby aged muscle can respond to exercise for the promotion of mitochondrial biogenesis.

摘要

线粒体功能障碍在老年骨骼肌中经常被发现。转录共激活因子过氧化物酶体增殖物激活受体-γ 共激活因子-1α(PGC-1α)是维持线粒体的关键,其在老年肌肉中的表达下降。目前尚不清楚这是否是由于衰老过程中的转录缺陷所致。我们的研究检查了来自年轻和老年 F344BN 大鼠的肌肉中的 PGC-1α 转录。使用大鼠 PGC-1α 启动子报告构建体,我们发现 TA 肌肉中 PGC-1α 的转录减少了约 65%,同时 PGC-1α mRNA 和转录稳定性降低。在老年肌肉中观察到 PGC-1α 转录调节因子的表达模式发生改变,包括核呼吸因子 2、上游转录因子 1、激活转录因子 2 和阴阳 1。急性收缩活动(CA)后恢复用于检查 PGC-1α 转录是否可以在老年肌肉中被激活,类似于在年轻肌肉中观察到的情况。AMPK 和 p38 信号在老年肌肉中减弱。CA 在年轻和老年组中均上调了 PGC-1α 的转录,而在恢复期间诱导了 PGC-1α 和细胞色素氧化酶亚基 IV 的 mRNA。整体 DNA 甲基化是一种抑制转录的事件,在老年肌肉中增强,可能是由于老年肌肉中甲基转移酶酶 Dnmt3b 的升高所致。连续 7 天进行 CA 以评估长期后果,导致老年肌肉中 PGC-1α 和下游 mRNA 的恢复。我们的数据表明,老年肌肉中线粒体减少部分是由于 PGC-1α 转录减少所致,这是由于上游信号减弱所致。收缩活动是恢复老年肌肉中 PGC-1α 表达和线粒体含量的适当对策。新的和值得注意的是,PGC-1α 是肌肉中线粒体生物发生的调节剂。我们证明,由于转录和转录后机制的减少,PGC-1α 的表达在衰老肌肉中减少。转录缺陷是由于转录因子表达的改变、信号转导的减少和 DNA 甲基化所致。急性运动可以启动信号转导来逆转转录缺陷,使 PGC-1α 的表达恢复到年轻值,这表明了一种机制,即老年肌肉可以对运动做出反应,促进线粒体生物发生。

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