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tau 蛋白的扩散不依赖于聚集倾向。

Spreading of Tau Protein Does Not Depend on Aggregation Propensity.

机构信息

DZNE, German Ctr. for Neurodegenerative Diseases, Venusberg-Campus 1/99, 53127, Bonn, Germany.

CAESAR Research Center, Ludwig-Erhard-Allee 2, 53175, Bonn, Germany.

出版信息

J Mol Neurosci. 2023 Oct;73(9-10):693-712. doi: 10.1007/s12031-023-02143-w. Epub 2023 Aug 22.

Abstract

The stereotypical progression of Tau pathology during Alzheimer disease has been attributed to trans-neuronal spreading of misfolded Tau proteins, followed by prion-like templated aggregation of Tau. The nature of Tau and the cellular mechanisms of Tau spreading are still under debate. We hypothesized that Tau's propensity for aggregation would correlate with its ability to spread across synapses and propagate pathology. To study the progressive propagation of Tau proteins in brain regions relevant for Alzheimer disease, we used mice expressing near-physiological levels of full-length human Tau protein carrying pro-aggregant (TauΔK280, Tau) or anti-aggregant (TauΔK280-PP, Tau) mutations in the entorhinal cortex (EC). To enhance Tau expression in the EC, we performed EC injections of adeno-associated virus (AAV) particles encoding Tau or Tau. The brains of injected and non-injected EC/Tau and EC/Tau mice were studied by immunohistological and biochemical techniques to detect Tau propagation to dentate gyrus (DG) neurons and Tau-induced pathological changes. Pro- and anti-aggregant mice had comparable low transgene expression (~0.2 times endogenous mouse Tau). They accumulated human Tau at similar rates and only in expressing EC neurons, including their axonal projections of the perforant path and presynaptic terminals in the molecular layer of the DG. Pro-aggregant EC/Tau mice showed misfolded Tau and synaptic protein alterations in EC neurons, not observed in anti-aggregant EC/Tau mice. Additional AAV-mediated expression of Tau or Tau in EC/Tau or EC/Tau mice, respectively, increased the human Tau expression to ~0.65 times endogenous mouse Tau, with comparable spreading of Tau and Tau throughout the EC. There was a low level of transcellular propagation of Tau protein, without pathological phosphorylation or misfolding, as judged by diagnostic antibodies. Additionally, Tau but not Tau expression induced hippocampal astrogliosis. Low levels of pro- or anti-aggregant full-length Tau show equivalent distributions in EC neurons, independent of their aggregation propensity. Increasing the expression via AAV induce local Tau misfolding in the EC neurons, synaptotoxicity, and astrogliosis and lead to a low level of detectable trans-neuronal spreading of Tau. This depends on its concentration in the EC, but, contrary to expectations, does not depend on Tau's aggregation propensity/misfolding and does not lead to templated misfolding in recipient neurons.

摘要

阿尔茨海默病患者 Tau 病理学的典型进展归因于错误折叠的 Tau 蛋白的跨神经元传播,随后 Tau 发生类朊病毒样模板聚合。Tau 的性质和 Tau 传播的细胞机制仍存在争议。我们假设 Tau 的聚集倾向与其在突触间传播和传播病理学的能力相关。为了研究 Tau 蛋白在与阿尔茨海默病相关的脑区中的渐进性传播,我们使用了在大脑内嗅皮层(entorhinal cortex,EC)中表达接近生理水平全长人 Tau 蛋白的小鼠,该蛋白带有致聚集(TauΔK280,Tau)或抗聚集(TauΔK280-PP,Tau)突变。为了增强 EC 中的 Tau 表达,我们通过腺相关病毒(adeno-associated virus,AAV)粒子注射将 Tau 或 Tau 转染到 EC 中。通过免疫组织化学和生化技术研究注射和未注射的携带 Tau 或 Tau 的 EC/Tau 和 EC/Tau 小鼠的大脑,以检测 Tau 向齿状回(dentate gyrus,DG)神经元的传播和 Tau 诱导的病理变化。致聚集和抗聚集的小鼠具有相似的低转基因表达(0.2 倍内源性小鼠 Tau)。它们以相似的速度积累人 Tau,仅在表达 EC 神经元中积累,包括其穿通纤维的轴突投射和 DG 分子层中的突触前末梢。致聚集的 EC/Tau 小鼠在 EC 神经元中表现出错误折叠的 Tau 和突触蛋白改变,而在抗聚集的 EC/Tau 小鼠中未观察到。在分别携带 Tau 或 Tau 的 EC/Tau 或 EC/Tau 小鼠中,通过额外的 AAV 介导的 Tau 表达,将人 Tau 的表达增加到0.65 倍内源性小鼠 Tau,Tau 和 Tau 在整个 EC 中的传播相似。通过诊断抗体判断,Tau 蛋白具有低水平的细胞间传播,没有病理性磷酸化或错误折叠。此外,Tau 表达而非 Tau 表达诱导海马星形胶质细胞增生。低水平的致聚集或抗聚集全长 Tau 在 EC 神经元中表现出相似的分布,与它们的聚集倾向无关。通过 AAV 表达增加会导致 EC 神经元中局部 Tau 错误折叠、突触毒性和星形胶质细胞增生,并导致 Tau 低水平的可检测到的跨神经元传播。这取决于 Tau 在 EC 中的浓度,但与预期相反,不依赖于 Tau 的聚集倾向/错误折叠,也不会导致受者神经元模板错误折叠。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d6d/10694122/e5971631c409/12031_2023_2143_Fig1_HTML.jpg

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