首页> 美国卫生研究院文献>The Journal of Neuroscience >Selenomethionine Mitigates Cognitive Decline by Targeting Both Tau Hyperphosphorylation and Autophagic Clearance in an Alzheimers Disease Mouse Model
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Selenomethionine Mitigates Cognitive Decline by Targeting Both Tau Hyperphosphorylation and Autophagic Clearance in an Alzheimers Disease Mouse Model

机译:硒代蛋氨酸通过针对阿尔茨海默氏病小鼠模型中的Tau过度磷酸化和自噬清除来缓解认知能力下降

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Tau pathology was recently identified as a key driver of disease progression and an attractive therapeutic target in Alzheimer's disease (AD). Selenomethionine (Se-Met), a major bioactive form of selenium (Se) in organisms with significant antioxidant capacity, reduced the levels of total tau and hyperphosphorylated tau and ameliorated cognitive deficits in younger triple transgenic AD (3xTg-AD) mice. Whether Se-Met has a similar effect on tau pathology and the specific mechanism of action in older 3xTg-AD mice remains unknown. Autophagy is a major self-degradative process to maintain cellular homeostasis and function. Autophagic dysfunction has been implicated in the pathogenesis of multiple age-dependent diseases, including AD. Modulation of autophagy has been shown to retard the accumulation of misfolded and aggregated proteins and to delay the progression of AD. Here, we found that 3xTg-AD mice showed significant improvement in cognitive ability after a 3-month treatment with Se-Met beginning at 8 months of age. In addition to attenuating the hyperphosphorylation of tau by modulating the activity of Akt/glycogen synthase kinase-3β and protein phosphatase 2A, Se-Met-induced reduction of tau was also mediated by an autophagy-based pathway. Specifically, Se-Met improved the initiation of autophagy via the AMP-activated protein kinase–mTOR (mammalian target of rapamycin) signaling pathway and enhanced autophagic flux to promote the clearance of tau in 3xTg-AD mice and primary 3xTg neurons. Thus, our results demonstrate for the first time that Se-Met mitigates cognitive decline by targeting both the hyperphosphorylation of tau and the autophagic clearance of tau in AD mice. These data strongly support Se-Met as a potent nutraceutical for AD therapy.>SIGNIFICANCE STATEMENT Selenium has been widely recognized as a vital trace element abundant in the brain with effects of antioxidant, anticancer, and anti-inflammation. In this study, we report that selenomethionine rescues spatial learning and memory impairments in aged 3xTg-AD mice via decreasing the level of tau protein and tau hyperphosphorylation. We find that selenomethionine promotes the initiation of autophagy via the AMPK–mTOR pathway and enhances autophagic flux, thereby facilitating tau clearance in vivo and in vitro. We have now identified an additional, novel mechanism by which selenomethionine improves the cognitive function of AD mice. Specifically, our data suggest the effect of selenium/selenomethionine on an autophagic pathway in Alzheimer's disease.
机译:Tau病理学最近被确定为疾病进展的关键驱动力,并且是阿尔茨海默病(AD)的有吸引力的治疗靶标。硒蛋氨酸(Se-Met)是具有重要抗氧化能力的有机体中硒(Se)的主要生物活性形式,可降低年轻的三联转基因AD(3xTg-AD)小鼠的总tau和磷酸化tau含量,并改善其认知功能障碍。 Se-Met是否对tau病理具有类似的作用,以及在较老的3xTg-AD小鼠中的特定作用机制仍不清楚。自噬是维持细胞稳态和功能的主要自降解过程。自噬功能障碍与多种年龄相关疾病(包括AD)的发病机理有关。已经表明,自噬的调节可延迟错误折叠和聚集的蛋白质的积累,并延迟AD的发展。在这里,我们发现3xTg-AD小鼠从8个月大开始用Se-Met治疗3个月后,认知能力显着改善。除了通过调节Akt /糖原合酶激酶3β和蛋白磷酸酶2A的活性来减轻tau的过度磷酸化外,Se-Met诱导的tau的减少还通过基于自噬的途径介导。具体而言,Se-Met通过AMP激活的蛋白激酶-mTOR(雷帕霉素的哺乳动物靶标)信号转导途径改善了自噬的启动,并增强了自噬通量以促进tx在3xTg-AD小鼠和3xTg神经元中的清除。因此,我们的结果首次证明了Se-Met通过针对AD小鼠中tau的过度磷酸化和tau自噬清除,减轻了认知功能下降。这些数据强烈支持Se-Met作为AD治疗的有效营养素。>意义声明硒被广泛认为是大脑中丰富的重要微量元素,具有抗氧化,抗癌和抗炎作用。在这项研究中,我们报告硒代蛋氨酸通过降低tau蛋白的水平和tau蛋白的过度磷酸化来挽救3xTg-AD老年小鼠的空间学习和记忆障碍。我们发现硒代蛋氨酸通过AMPK-mTOR途径促进自噬的启动并增强自噬通量,从而在体内和体外促进tau清除。现在,我们已经确定了硒代蛋氨酸改善AD小鼠认知功能的其他新颖机制。具体而言,我们的数据表明硒/硒蛋氨酸对阿尔茨海默氏病自噬途径的影响。

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