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Suppression of Autophagy and Activation of Glycogen Synthase Kinase 3beta Facilitate the Aggregate Formation of Tau

机译:自噬的抑制和糖原合酶激酶3beta的激活促进Tau的聚集形成。

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摘要

Neurofibrillary tangle (NFT) is a characteristic hallmark of Alzheimer's disease. GSK3β has been reported to play a major role in the NFT formation of tau. Dysfunction of autophagy might facilitate the aggregate formation of tau. The present study examined the role of GSK3β-mediated phosphorylation of tau species on their autophagic degradation. We transfected wild type tau (T4), caspase-3-cleaved tau at Asp421 (T4C3), or pseudophosphorylated tau at Ser396/Ser404 (T4-2EC) in the presence of active or enzyme-inactive GSK3β. Trehalose and 3-methyladenine (3-MA) were used to enhance or inhibit autophagic activity, respectively. All tau species showed increased accumulation with 3-MA treatment whereas reduced with trehalose, indicating that tau undergoes autophagic degradation. However, T4C3 and T4-2EC showed abundant formation of oligomers than T4. Active GSK3β in the presence of 3-MA resulted in significantly increased formation of insoluble tau aggregates. These results indicate that GSK3β-mediated phosphorylation and compromised autophagic activity significantly contribute to tau aggregation.
机译:神经原纤维缠结(NFT)是阿尔茨海默氏病的特征标志。据报道,GSK3β在tau的NFT形成中起主要作用。自噬功能障碍可能促进tau的聚集形成。本研究检查了GSK3β介导的tau物种自噬降解的磷酸化作用。我们在存在活性或非酶活性GSK3β的情况下转染了野生型tau(T4),在Asp421处被caspase-3切割的tau(T4C3)或在Ser396 / Ser404(T4-2EC)处的伪磷酸化tau。海藻糖和3-甲基腺嘌呤(3-MA)分别用于增强或抑制自噬活性。所有的tau物种在3-MA处理下均显示出增加的积累,而在海藻糖中则下降,这表明tau经历了自噬降解。然而,T4C3和T4-2EC显示出比T4丰富的低聚物形成。在存在3-MA的情况下,活性GSK3β导致不溶性tau聚集体的形成显着增加。这些结果表明,GSK3β介导的磷酸化和受损的自噬活性显着促进tau聚集。

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