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首页> 外文期刊>Neurotoxicity research >Treadmill Exercise Attenuates α-Synuclein Levels by Promoting Mitochondrial Function and Autophagy Possibly via SIRT1 in the Chronic MPTP/P-Induced Mouse Model of Parkinson’s Disease
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Treadmill Exercise Attenuates α-Synuclein Levels by Promoting Mitochondrial Function and Autophagy Possibly via SIRT1 in the Chronic MPTP/P-Induced Mouse Model of Parkinson’s Disease

机译:跑步机通过在慢性MPTP / P诱导的帕金森病的小鼠模型中通过SIRT1促进线粒体函数和自噬衰减α-突触核蛋白水平

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Abstract Accumulation of alpha-synuclein (α-Syn) is significantly correlated with the presence of progressive motor deficits, which is the main symptom of Parkinson’s disease (PD). Although physical exercise reduces α-Syn levels, the molecular mechanisms by which physical exercise decreases α-Syn remain unclear. We hypothesized that treadmill exercise (TE) decreases α-Syn levels by improving mitochondrial function and promoting autophagy via the sirtuin-1 (SIRT1) signaling pathway in the chronic 1-methyl-1,2,3,6-tetrahydropyridine with probenecid (MPTP/P)-induced mouse model of PD. We found that TE reduces α-Syn levels, which subsequently ameliorates dopaminergic (DAergic) neuron loss and α-Syn-mediated apoptotic cell death. Most importantly, TE increases SIRT1 expression, which results in increased mitochondrial biogenesis and decreased oxidative stress by activating peroxisome proliferator-activated receptor gamma coactivator-1α (PGC-1α). SIRT1 activation by TE also promotes autophagic clearance of α-Syn by inducing the activation of microtubule-associated protein 1 light chain 3 (LC3). Collectively, our results demonstrate that TE may reduce α-Syn levels by improving mitochondrial function and increasing autophagic flux, thereby ameliorating chronic MPTP/P-induced motor deficits in PD mice.
机译:摘要α-突触核蛋白(α-SYN)的积累与普通电机缺陷的存在显着相关,这是帕金森病(PD)的主要症状。虽然体育锻炼降低了α-SYN水平,但体育锻炼降低的分子机制仍然不清楚。我们假设通过改善线粒体函数和通过丙烯酸氢吡啶中的慢性1-甲基-1,2,3,6-四氢吡啶中的Sirtuin-1(SIRT1)信号通路促进自噬,通过提高线粒体函数和促进自噬降低α-SYN水平(MPTP / p) - 诱导的PD小鼠模型。我们发现TE降低了α-SYN水平,随后改善了多巴胺能(DAIRIC)神经元损失和α-同步介导的凋亡细胞死亡。最重要的是,TE增加了SIRT1表达,这导致通过激活过氧缺血剂激活的受体γ-1α(PGC-1α)来增加线粒体生物发生和降低氧化应激。 SIRT1通过TE激活还通过诱导微管相关蛋白1轻链3(LC3)的激活来促进α-Syn的自噬清除。统称,我们的结果表明TE可以通过改善线粒体功能和增加的自噬磁通量来降低α-SYN水平,从而改善Pd小鼠中的慢性MPTP / P诱导的电动机缺陷。

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