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去除内源性tau蛋白并不能阻止tau蛋白的传播,但能降低其神经毒性。

Removing endogenous tau does not prevent tau propagation yet reduces its neurotoxicity.

作者信息

Wegmann Susanne, Maury Eduardo A, Kirk Molly J, Saqran Lubna, Roe Allyson, DeVos Sarah L, Nicholls Samantha, Fan Zhanyun, Takeda Shuko, Cagsal-Getkin Ozge, William Christopher M, Spires-Jones Tara L, Pitstick Rose, Carlson George A, Pooler Amy M, Hyman Bradley T

机构信息

Department of Neurology, Massachusetts General Hospital, Harvard Medical School, Charlestown, MA, USA.

Centre for Cognitive and Neural Systems and Euan MacDonald Centre, University of Edinburgh, Edinburgh, UK.

出版信息

EMBO J. 2015 Dec 14;34(24):3028-41. doi: 10.15252/embj.201592748. Epub 2015 Nov 4.

Abstract

In Alzheimer's disease and tauopathies, tau protein aggregates into neurofibrillary tangles that progressively spread to synaptically connected brain regions. A prion-like mechanism has been suggested: misfolded tau propagating through the brain seeds neurotoxic aggregation of soluble tau in recipient neurons. We use transgenic mice and viral tau expression to test the hypotheses that trans-synaptic tau propagation, aggregation, and toxicity rely on the presence of endogenous soluble tau. Surprisingly, mice expressing human P301Ltau in the entorhinal cortex showed equivalent tau propagation and accumulation in recipient neurons even in the absence of endogenous tau. We then tested whether the lack of endogenous tau protects against misfolded tau aggregation and toxicity, a second prion model paradigm for tau, using P301Ltau-overexpressing mice with severe tangle pathology and neurodegeneration. Crossed onto tau-null background, these mice had similar tangle numbers but were protected against neurotoxicity. Therefore, misfolded tau can propagate across neural systems without requisite templated misfolding, but the absence of endogenous tau markedly blunts toxicity. These results show that tau does not strictly classify as a prion protein.

摘要

在阿尔茨海默病和tau蛋白病中,tau蛋白聚集成神经原纤维缠结,并逐渐扩散到突触连接的脑区。有人提出了一种朊病毒样机制:错误折叠的tau蛋白在大脑中传播,引发受体神经元中可溶性tau蛋白的神经毒性聚集。我们使用转基因小鼠和病毒介导的tau蛋白表达来检验以下假设:跨突触的tau蛋白传播、聚集和毒性依赖于内源性可溶性tau蛋白的存在。令人惊讶的是,在内嗅皮质中表达人P301L tau蛋白的小鼠,即使在没有内源性tau蛋白的情况下,在受体神经元中也表现出相当的tau蛋白传播和积累。然后,我们使用具有严重缠结病理和神经退行性变的P301L tau蛋白过表达小鼠,测试内源性tau蛋白的缺乏是否能防止错误折叠的tau蛋白聚集和毒性,这是tau蛋白的第二个朊病毒模型范例。与tau基因敲除背景杂交后,这些小鼠的缠结数量相似,但对神经毒性具有抵抗力。因此,错误折叠的tau蛋白可以在神经系统中传播,而无需必要的模板化错误折叠,但内源性tau蛋白的缺乏显著降低了毒性。这些结果表明,tau蛋白并不严格归类为朊病毒蛋白。

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