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Enhanced Tau Aggregation in the Presence of Amyloid beta

机译:在淀粉样蛋白β存在下增强Tau聚集

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摘要

Amyloid plaques and neurofibrillary tangles co-occur in Alzheimer disease, but with different topological and temporal patterns. Whether these two Lesions are independent or pathobiologically related is uncertain. For example, amyloid deposition in the neocortex precedes the spread of tau neurofibrillary tangles from the limbic areas to the cortex. We examined the aggregation properties of tau isolated from human cases with early tau pathology (Braak II) with and without plaques. Using a well-established HEK cell biosensor assay, we show that tau from cases with plaques has an enhanced ability to induce tau aggregates compared to tau from cases without plaques. To further explore this effect, we combined mice carrying the APP/PS1 transgene array that develop plaques with rTg4510 mice carrying the P301L mutant human tau transgene that develop extensive tau pathology with age. The resulting APP/PS1-rTg4510 mice had a threefold increase in tau seeding activity over the rTg4510 strain, without change in tau production or extracellular release. Surprisingly, this effect was observed before overt amyloid deposition. The enhancement of tau aggregation was also apparent by an increase in histological measures of tau pathology in young APP/PS1-rTg4510 mice and an increase in high-molecular weight tau. Overall, these data provide evidence that amyloid beta acts to enhance tau pathology by increasing the formation of tau species capable of seeding new aggregates.
机译:淀粉样蛋白斑块和神经纤维斑块在阿尔茨海默病中共发生,但具有不同的拓扑和时间模式。这两个病变是独立的还是病原体相关的是不确定的。例如,Neocortex中的淀粉样蛋白沉积在Tau神经原纤维缠结从肢体区域到皮质的涂抹。我们审查了TAU与早期TAU病理学(Brak II)的人类病例分离的聚集性质(Brak II),没有斑块。使用完善的HEK细胞生物传感器测定,我们表明,与没有斑块的情况的情况下,斑块患者具有增强的诱导TAU骨料的能力。为了进一步探讨这种效果,我们组合携带APP / PS1转基因阵列的小鼠,用RTG4510小鼠开发斑块,携带P301L突变人体TAU转基因,随着年龄的增长而发展广泛的TAU病理。得到的APP / PS1-RTG4510小鼠在RTG4510菌株上进行了Tau播种活性的三倍,而无需改变TAU生产或细胞外释放。令人惊讶的是,在公开淀粉样蛋白沉积之前观察到这种效果。 TAU聚集的增强也是显而易见的,通过年轻APP / PS1-RTG4510小鼠的TAU病理学组织学措施增加以及高分子量TAU的增加。总的来说,这些数据提供了淀粉样蛋白β通过增加能够播种新聚集体的TAU物种的形成来提高TAU病理。

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