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胆固醇决定了 tau 的细胞质内进入和种子聚集。

Cholesterol determines the cytosolic entry and seeded aggregation of tau.

机构信息

UK Dementia Research Institute at the University of Cambridge, Department of Clinical Neurosciences, Hills Road, Cambridge, CB2 0AH, UK.

UK Dementia Research Institute at the University of Cambridge, Department of Clinical Neurosciences, Hills Road, Cambridge, CB2 0AH, UK.

出版信息

Cell Rep. 2022 May 3;39(5):110776. doi: 10.1016/j.celrep.2022.110776.

Abstract

Assemblies of tau can transit between neurons, seeding aggregation in a prion-like manner. To accomplish this, tau must cross cell-limiting membranes, a process that is poorly understood. Here, we establish assays for the study of tau entry into the cytosol as a phenomenon distinct from uptake, in real time, and at physiological concentrations. The entry pathway of tau is cell type specific and, in neurons, highly sensitive to cholesterol. Depletion of the cholesterol transporter Niemann-Pick type C1 or extraction of membrane cholesterol renders neurons highly permissive to tau entry and potentiates seeding even at low levels of exogenous tau assemblies. Conversely, cholesterol supplementation reduces entry and almost completely blocks seeded aggregation. Our findings establish entry as a rate-limiting step to seeded aggregation and demonstrate that dysregulated cholesterol, a feature of several neurodegenerative diseases, potentiates tau aggregation by promoting entry of tau assemblies into the cell interior.

摘要

聚集的 tau 可以在神经元之间转移,以类朊病毒的方式引发聚集。为了实现这一点,tau 必须穿过细胞限制膜,这个过程目前了解甚少。在这里,我们建立了实时、在生理浓度下研究 tau 进入细胞质的方法,这种方法与摄取不同。tau 的进入途径具有细胞类型特异性,在神经元中,对胆固醇高度敏感。Niemann-Pick 型 C1 胆固醇转运蛋白缺失或细胞膜胆固醇提取会使神经元对 tau 进入变得高度允许,即使在低水平的外源性 tau 聚集物的情况下也能增强种子作用。相反,胆固醇补充会减少进入并几乎完全阻止接种聚集。我们的发现将进入确定为引发聚集的限速步骤,并表明失调的胆固醇(几种神经退行性疾病的特征)通过促进 tau 聚集物进入细胞内部来增强 tau 聚集。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fdb9/9108550/78e419c7c101/fx1.jpg

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