首页> 美国卫生研究院文献>The Journal of Neuroscience >Reducing Ribosomal Protein S6 Kinase 1 Expression Improves Spatial Memory and Synaptic Plasticity in a Mouse Model of Alzheimers Disease
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Reducing Ribosomal Protein S6 Kinase 1 Expression Improves Spatial Memory and Synaptic Plasticity in a Mouse Model of Alzheimers Disease

机译:减少核糖体蛋白S6激酶1表达改善阿尔茨海默氏病小鼠模型中的空间记忆和突触可塑性

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摘要

Aging is the most important risk factor associated with Alzheimer's disease (AD); however, the molecular mechanisms linking aging to AD remain unclear. Suppression of the ribosomal protein S6 kinase 1 (S6K1) increases healthspan and lifespan in several organisms, from nematodes to mammals. Here we show that S6K1 expression is upregulated in the brains of AD patients. Using a mouse model of AD, we found that genetic reduction of S6K1 improved synaptic plasticity and spatial memory deficits, and reduced the accumulation of amyloid-β and tau, the two neuropathological hallmarks of AD. Mechanistically, these changes were linked to reduced translation of tau and the β-site amyloid precursor protein cleaving enzyme 1, a key enzyme in the generation of amyloid-β. Our results implicate S6K1 dysregulation as a previously unidentified molecular mechanism underlying synaptic and memory deficits in AD. These findings further suggest that therapeutic manipulation of S6K1 could be a valid approach to mitigate AD pathology.>SIGNIFICANCE STATEMENT Aging is the most important risk factor for Alzheimer's disease (AD). However, little is known about how it contributes to AD pathogenesis. S6 kinase 1 (S6K1) is a protein kinase involved in regulation of protein translation. Reducing S6K1 activity increases lifespan and healthspan. We report the novel finding that reducing S6K1 activity in 3xTg-AD mice ameliorates synaptic and cognitive deficits. These improvement were associated with a reduction in amyloid-β and tau pathology. Mechanistically, lowering S6K1 levels reduced translation of β-site amyloid precursor protein cleaving enzyme 1 and tau, two key proteins involved in AD pathogenesis. These data suggest that S6K1 may represent a molecular link between aging and AD. Given that aging is the most important risk factor for most neurodegenerative diseases, our results may have far-reaching implications into other diseases.
机译:衰老是与阿尔茨海默氏病(AD)相关的最重要的危险因素;但是,尚不清楚将衰老与AD联系起来的分子机制。从线虫到哺乳动物,抑制核糖体蛋白S6激酶1(S6K1)可以提高健康度和寿命。在这里,我们显示在AD患者的大脑中S6K1表达上调。使用AD的小鼠模型,我们发现S6K1的遗传减少改善了突触可塑性和空间记忆缺陷,并减少了AD的两个神经病理学特征-淀粉样β和tau的积累。从机械上讲,这些变化与tau的翻译减少和β位淀粉样蛋白前体蛋白裂解酶1(淀粉样β生成中的关键酶)减少有关。我们的研究结果暗示S6K1失调是AD中突触和记忆缺陷的潜在分子机制。这些发现进一步表明,对S6K1的治疗性操纵可能是减轻AD病理的有效方法。>意义声明衰老是阿尔茨海默氏病(AD)最重要的危险因素。然而,关于它如何促进AD发病机理的了解很少。 S6激酶1(S6K1)是一种参与蛋白翻译调控的蛋白激酶。减少S6K1活性可延长寿命和健康寿命。我们报告了一个新颖的发现,即减少3xTg-AD小鼠的S6K1活性可改善突触和认知缺陷。这些改善与β-淀粉样蛋白的减少和tau病理有关。从机制上讲,降低S6K1水平会降低β位淀粉样蛋白前体蛋白裂解酶1和tau(AD发病机理中的两个关键蛋白)的翻译。这些数据表明S6K1可能代表衰老和AD之间的分子联系。考虑到衰老是大多数神经退行性疾病最重要的危险因素,我们的结果可能对其他疾病具有深远的影响。

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