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mTOR regulates tau phosphorylation and degradation: implications for Alzheimer's disease and other tauopathies

PI3K/AKT/mTOR通路 自噬 神经科学 生物 磷酸化 陶氏病 失智症 τ蛋白 细胞生物学 雷帕霉素的作用靶点 痴呆 疾病 Tau病理学 信号转导 癌症研究 阿尔茨海默病 神经退行性变 遗传学 内科学 医学 细胞凋亡
作者
Antonella Caccamo,Andrea Magrí,David X. Medina,Elena V. Wisely,Manuel F. López‐Aranda,Alcino J. Silva,Salvatore Oddo
出处
期刊:Aging Cell [Wiley]
卷期号:12 (3): 370-380 被引量:297
标识
DOI:10.1111/acel.12057
摘要

Accumulation of tau is a critical event in several neurodegenerative disorders, collectively known as tauopathies, which include Alzheimer's disease and frontotemporal dementia. Pathological tau is hyperphosphorylated and aggregates to form neurofibrillary tangles. The molecular mechanisms leading to tau accumulation remain unclear and more needs to be done to elucidate them. Age is a major risk factor for all tauopathies, suggesting that molecular changes contributing to the aging process may facilitate tau accumulation and represent common mechanisms across different tauopathies. Here, we use multiple animal models and complementary genetic and pharmacological approaches to show that the mammalian target of rapamycin (mTOR) regulates tau phosphorylation and degradation. Specifically, we show that genetically increasing mTOR activity elevates endogenous mouse tau levels and phosphorylation. Complementary to it, we further demonstrate that pharmacologically reducing mTOR signaling with rapamycin ameliorates tau pathology and the associated behavioral deficits in a mouse model overexpressing mutant human tau. Mechanistically, we provide compelling evidence that the association between mTOR and tau is linked to GSK3β and autophagy function. In summary, we show that increasing mTOR signaling facilitates tau pathology, while reducing mTOR signaling ameliorates tau pathology. Given the overwhelming evidence that reducing mTOR signaling increases lifespan and healthspan, the data presented here have profound clinical implications for aging and tauopathies and provide the molecular basis for how aging may contribute to tau pathology. Additionally, these results provide preclinical data indicating that reducing mTOR signaling may be a valid therapeutic approach for tauopathies.
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