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Endolysosomal degradation of Tau and its role in glucocorticoid‐driven hippocampal malfunction

机译:Endolysosomalτ退化及其作用糖皮质激素所致海马故障

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摘要

Emerging studies implicate Tau as an essential mediator of neuronal atrophy and cognitive impairment in Alzheimer's disease (AD), yet the factors that precipitate Tau dysfunction in AD are poorly understood. Chronic environmental stress and elevated glucocorticoids (GC), the major stress hormones, are associated with increased risk of AD and have been shown to trigger intracellular Tau accumulation and downstream Tau‐dependent neuronal dysfunction. However, the mechanisms through which stress and GC disrupt Tau clearance and degradation in neurons remain unclear. Here, we demonstrate that Tau undergoes degradation via endolysosomal sorting in a pathway requiring the small GTPase Rab35 and the endosomal sorting complex required for transport (ESCRT) machinery. Furthermore, we find that GC impair Tau degradation by decreasing Rab35 levels, and that AAV‐mediated expression of Rab35 in the hippocampus rescues GC‐induced Tau accumulation and related neurostructural deficits. These studies indicate that the Rab35/ESCRT pathway is essential for Tau clearance and part of the mechanism through which GC precipitate brain pathology.
机译:新兴研究表明τ是必不可少的神经萎缩和认知的中介障碍在阿尔茨海默病(AD),然而沉淀τ的因素在广告功能障碍也不太清楚。压力和高糖皮质激素(GC)主要的压力荷尔蒙,是相关的增加广告和已被证明的风险触发细胞内τ积累和下游τ量相关的神经功能障碍。然而,压力和机制GC中断τ间隙和退化神经元仍不清楚。通过endolysosomalτ发生退化途径要求小GTPase排序Rab35和endosomal排序复杂的要求运输(ESCRT)机械。发现GC损害τ降解减少Rab35水平,AAV介导的表达海马的Rab35救助GC诱导τ积累和相关neurostructural赤字。Rab35 / ESCRT通路对τ至关重要间隙和机制的一部分GC沉淀大脑病理学。

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