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首页> 外文期刊>Journal of Experimental Neuroscience >Skeletal Muscle Modulates Huntington’s Disease Pathogenesis in Mice: Role of Physical Exercise:
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Skeletal Muscle Modulates Huntington’s Disease Pathogenesis in Mice: Role of Physical Exercise:

机译:骨骼肌调节小鼠亨廷顿舞蹈病的发病机制:体育锻炼的作用:

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Huntington’s disease (HD) is a monogenic fatal neurodegenerative disorder. However, there is increasing evidence that HD is a pleiotropic systemic disorder. In particular, skeletal muscle metabolism is greatly affected in HD, which in turn can have a major impact on whole-body metabolism and energetic balance. Throughout an unbiased mutagenesis approach in HD mice, we have found that Scn4a, a skeletal muscle–specific sodium channel gene, is a modifier of the disease. Mutations in Scn4a enhance HD disease progression and weight loss by accelerating muscle waste and cachexia, increasing skeletal muscle activity and energy demands. At the molecular level, Scn4a mutations activate AMP-activated protein kinase (AMPK), leading to a fibre switch towards more oxidative types. These adaptations seen in HD; Scn4a double mutant muscles are similar to those observed in healthy individuals after endurance exercise training regimes. This prompted us to assess the effects of an endurance exercise regime in HD mice, independently showing that skeletal muscle adaptations leading to the activation of AMPK are detrimental for HD pathogenesis. Although it is undeniable that physical exercise can lead to many health benefits, our work shows that, at least under certain situations such as in HD, an endurance exercise routine could be a detrimental therapeutic option.
机译:亨廷顿舞蹈病(HD)是一种单基因致命性神经退行性疾病。但是,越来越多的证据表明HD是一种多效性全身性疾病。特别是,骨骼肌的新陈代谢在高清中受到很大影响,而继而又会对全身新陈代谢和能量平衡产生重大影响。在HD小鼠的无偏见诱变方法中,我们发现Scn4a是骨骼肌特异性钠通道基因,是该疾病的调节剂。 Scn4a中的突变通过加速肌肉浪费和恶病质,增加骨骼肌活动和能量需求来增强HD疾病的进展和体重减轻。在分子水平上,Scn4a突变激活AMP激活的蛋白激酶(AMPK),从而导致纤维向更多氧化类型的转换。这些改编自高清影片;在耐力运动训练方案之后,Scn4a双突变型肌肉类似于在健康个体中观察到的肌肉。这促使我们评估了耐力运动方案对HD小鼠的影响,独立显示导致AMPK激活的骨骼肌适应对HD发病机理有害。尽管不可否认的是,体育锻炼可以带来许多健康益处,但我们的工作表明,至少在某些情况下(例如HD),耐力锻炼可能是有害的治疗选择。

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