Ata Atalay, Somers Hannah M, Lind Noah, Fuqua Jeremy H, Rollins Jarod A
Hannover Medical School, Hannover Biomedical Research School (HBRS), MD/PhD Molecular Medicine, 30625 Hannover, Germany.
Mount Desert Island Biological Laboratory, Davis Center for Regenerative Biology and Medicine, Salisbury Cove, ME 04609, USA.
bioRxiv. 2025 Aug 30:2025.08.29.670302. doi: 10.1101/2025.08.29.670302.
Alzheimer's disease (AD) is a neurodegenerative disease characterized by an early loss of memory formation which requires protein synthesis. Tau is an intrinsically disordered protein and is subject to extensive post-translational modifications (PTMs). Some PTMs have been shown to alter localization of tau and allow tau to disrupt protein translation. Protein interactome studies indicate that tau might interact with ribosomal proteins. Therefore, we hypothesized that tau is causing ribosomal dysfunction as an early event and this interaction is dependent on tau's PTMs. To test this, we used a strain expressing single copy insertion of human tau as well as two of the most frequent modified versions of tau in mechanosensory neurons. With our assay to measure translation, we showed that in our T231 phosphorylation mimetic strain, there was a significant decrease in neuronal translation. This mimetic strain also showed a significant decrease in median lifespan and locomotion. Unexpectedly, in all our Tau-expressing strains, we detected a significant decrease in whole worm translation, suggesting a possible role of tau to influence translation in other tissues in worm. Our , and efforts to demonstrate tau-ribosome association via fluorescent polysome profiling have shown that there is no direct association between tau and the ribosome. Ribosome dysfunction caused by modified tau could be an early event in AD pathology before the pathological hallmarks appear.
阿尔茨海默病(AD)是一种神经退行性疾病,其特征是早期记忆形成丧失,而记忆形成需要蛋白质合成。tau是一种内在无序的蛋白质,会经历广泛的翻译后修饰(PTM)。一些PTM已被证明会改变tau的定位,并使tau破坏蛋白质翻译。蛋白质相互作用组研究表明,tau可能与核糖体蛋白相互作用。因此,我们假设tau作为早期事件导致核糖体功能障碍,并且这种相互作用依赖于tau的PTM。为了验证这一点,我们在机械感觉神经元中使用了一种表达单拷贝插入人tau以及两种最常见修饰形式tau的菌株。通过我们测量翻译的试验,我们表明在我们的T231磷酸化模拟菌株中,神经元翻译显著下降。这种模拟菌株的中位寿命和运动能力也显著下降。出乎意料的是,在我们所有表达tau的菌株中,我们检测到全虫翻译显著下降,这表明tau可能在蠕虫的其他组织中影响翻译。我们通过荧光多核糖体谱分析来证明tau与核糖体关联的努力表明,tau与核糖体之间没有直接关联。修饰后的tau引起的核糖体功能障碍可能是AD病理学中在病理特征出现之前的早期事件。