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被半胱天冬酶剪切的 tau 与衰老相关,并通过对轴突运输施加制动来诱导毒性获得功能。

Caspase-cleaved tau is senescence-associated and induces a toxic gain of function by putting a brake on axonal transport.

机构信息

Department of Neurobiology, Osnabrück University, Osnabrück, Germany.

Center for Cellular Nanoanalytics, Osnabrück University, Osnabrück, Germany.

出版信息

Mol Psychiatry. 2022 Jul;27(7):3010-3023. doi: 10.1038/s41380-022-01538-2. Epub 2022 Apr 7.

Abstract

The microtubule-associated protein tau plays a central role in tauopathies such as Alzheimer's disease (AD). The exact molecular mechanisms underlying tau toxicity are unclear, but aging is irrefutably the biggest risk factor. This raises the question of how cellular senescence affects the function of tau as a microtubule regulator. Here we report that the proportion of tau that is proteolytically cleaved at the caspase-3 site (TauC3) doubles in the hippocampus of senescent mice. TauC3 is also elevated in AD patients. Through quantitative live-cell imaging, we show that TauC3 has a drastically reduced dynamics of its microtubule interaction. Single-molecule tracking of tau confirmed that TauC3 has a longer residence time on axonal microtubules. The reduced dynamics of the TauC3-microtubule interaction correlated with a decreased transport of mitochondria, a reduced processivity of APP-vesicle transport and an induction of region-specific dendritic atrophy in CA1 neurons of the hippocampus. The microtubule-targeting drug Epothilone D normalized the interaction of TauC3 with microtubules and modulated the transport of APP-vesicles dependent on the presence of overexpressed human tau. The results indicate a novel toxic gain of function, in which a post-translational modification of tau changes the dynamics of the tau-microtubule interaction and thus leads to axonal transport defects and neuronal degeneration. The data also introduce microtubule-targeting drugs as pharmacological modifiers of the tau-microtubule interaction with the potential to restore the physiological interaction of pathologically altered tau with microtubules.

摘要

微管相关蛋白 tau 在阿尔茨海默病(AD)等tau 病中起着核心作用。tau 毒性的确切分子机制尚不清楚,但衰老无疑是最大的风险因素。这就提出了一个问题,即细胞衰老如何影响 tau 作为微管调节蛋白的功能。在这里,我们报告说,在衰老小鼠的海马体中,tau 被半胱天冬酶-3 位点(TauC3)蛋白水解切割的比例增加了一倍。AD 患者的 TauC3 也升高了。通过定量活细胞成像,我们表明 TauC3 与微管相互作用的动力学大大降低。tau 的单分子跟踪证实,TauC3 在轴突微管上的停留时间更长。TauC3 与微管相互作用的动力学降低与线粒体运输减少、APP 囊泡运输的连续性降低以及海马 CA1 神经元区域特异性树突萎缩有关。微管靶向药物表鬼臼毒素 D 使 TauC3 与微管的相互作用正常化,并调节 APP 囊泡的运输,这依赖于过表达的人 tau 的存在。结果表明,tau 的一种新的毒性获得功能,其中 tau 的翻译后修饰改变了 tau 与微管的相互作用动力学,从而导致轴突运输缺陷和神经元变性。这些数据还介绍了微管靶向药物作为 tau 与微管相互作用的药理学调节剂,具有恢复病理性改变的 tau 与微管的生理相互作用的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3bdf/9205779/8b91cdc9249a/41380_2022_1538_Fig1_HTML.jpg

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