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Dendritic function of tau mediates amyloid-β toxicity in alzheimer's disease mouse models

机译:tau的树突功能介导阿尔茨海默氏病小鼠模型的β-淀粉样蛋白毒性

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Alzheimer's disease (AD) is characterized by amyloid-β (Aβ) and tau deposition in brain. It has emerged that Aβ toxicity is tau dependent, although mechanistically this link remains unclear. Here, we show that tau, known as axonal protein, has a dendritic function in postsynaptic targeting of the Src kinase Fyn, a substrate of which is the NMDA receptor (NR). Missorting of tau in transgenic mice expressing truncated tau (Δtau) and absence of tau in tau~(-/-) mice both disrupt postsynaptic targeting of Fyn. This uncouples NR-mediated excitotoxicity and hence mitigates Aβ toxicity. Δtau expression and tau deficiency prevent memory deficits and improve survival in Aβ-forming APP23 mice, a model of AD. These deficits are also fully rescued with a peptide that uncouples the Fyn-mediated interaction of NR and PSD-95 in vivo. Our findings suggest that this dendritic role of tau confers Aβ toxicity at the postsynapse with direct implications for pathogenesis and treatment of AD.
机译:阿尔茨海默氏病(AD)的特征是淀粉样蛋白β(Aβ)和tau在大脑中沉积。已经发现Aβ毒性是tau依赖性的,尽管从机理上来说,这一联系仍不清楚。在这里,我们显示tau,称为轴突蛋白,在Src激酶Fyn的突触后靶向中具有树突功能,其底物是NMDA受体(NR)。表达截短tau(Δtau)的转基因小鼠中tau的缺失和tau〜(-/-)小鼠中tau的缺失都破坏了Fyn的突触后靶向。这使NR介导的兴奋性毒性解偶联,因此减轻了Aβ毒性。 Δtau表达和tau缺乏可预防记忆缺陷并改善形成Aβ的APP23小鼠(AD模型)的存活率。这些缺陷也可以用一种肽来完全挽救,该肽可以使Fyn介导的NR和PSD-95在体内的相互作用脱钩。我们的发现表明,tau的这种树突状作用赋予突触后Aβ毒性,直接影响AD的发病机理和治疗。

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