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The Cochaperone BAG2 Sweeps Paired Helical Filament-Insoluble Tau from the Microtubule

机译:Cochaperone BAG2从微管清除配对的螺旋状丝不溶性Tau

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摘要

Tau inclusions are a prominent feature of many neurodegenerative diseases including Alzheimer`s disease. Their accumulation in neurons as ubiquitinated filaments suggests a failure in the degradation limb of the Tau pathway. The components of a Tau protein triage system consisting of CHIP/Hsp70 and other chaperones have begun to emerge. However, the site of triage and the master regulatory elements are unknown. Here, we report an elegant mechanism of Tau degradation involving the cochaperone BAG2. The BAG2/Hsp70 complex is tethered to the microtubule and this complex can capture and deliver Tau to the proteasome for ubiquitin-independent degradation. This complex preferentially degrades Sarkosyl insoluble Tau and phosphorylated Tau. BAG2 levels in cells are under the physiological control of the microRNA miR-128a, which can tune paired helical filament Tau levels in neurons. Thus, we propose that ubiquitinated Tau inclusions arise due to shunting of Tau degradation toward a less efficient ubiquitin-dependent pathway.
机译:Tau夹杂物是包括阿尔茨海默氏病在内的许多神经退行性疾病的显着特征。它们作为泛素化的细丝在神经元中的积累表明Tau途径的降解肢体衰竭。由CHIP / Hsp70和其他伴侣组成的Tau蛋白分类系统的组成部分已经开始出现。但是,分诊的地点和主要的监管要素尚不清楚。在这里,我们报告了涉及陪伴蛋白BAG2的Tau降解的一个优雅机制。 BAG2 / Hsp70复合物被束缚在微管上,该复合物可以捕获Tau并将其输送至蛋白酶体,以进行不依赖泛素的降解。该络合物优先降解Sarkosyl不溶的Tau和磷酸化的Tau。细胞中BAG2的水平受microRNA miR-128a的生理控制,它可以调节神经元中成对的螺旋丝Tau的水平。因此,我们提出泛素化的Tau内含物的产生是由于Tau降解向效率较低的泛素依赖性途径的转移。

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