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线粒体动态平衡的改变是人类 tau 病模型中的早期事件。

Alteration of mitochondrial homeostasis is an early event in a model of human tauopathy.

机构信息

Department of Cellular and Molecular Medicine, Center for Healthy Aging, University of Copenhagen, Copenhagen, Denmark.

Department of Physiology, Medical School, National and Kapodistrian University of Athens, Athens, Greece.

出版信息

Aging (Albany NY). 2021 Nov 9;13(21):23876-23894. doi: 10.18632/aging.203683.

Abstract

Tauopathies are a group of progressive neurodegenerative disorders characterized by the presence of insoluble intracellular tau filaments in the brain. Evidence suggests that there is a tight connection between mitochondrial dysfunction and tauopathies, including Alzheimer's disease. However, whether mitochondrial dysfunction occurs prior to the detection of tau aggregates in tauopathies remains elusive. Here, we utilized transgenic nematodes expressing the full length of wild type tau in neuronal cells and monitored mitochondrial morphology alterations over time. Although tau-expressing nematodes did not accumulate detectable levels of tau aggregates during larval stages, they displayed increased mitochondrial damage and locomotion defects compared to the control worms. Chelating calcium restored mitochondrial activity and improved motility in the tau-expressing larvae suggesting a link between mitochondrial damage, calcium homeostasis and neuronal impairment in these animals. Our findings suggest that defective mitochondrial function is an early pathogenic event of tauopathies, taking place before tau aggregation and undermining neuronal homeostasis and organismal fitness. Understanding the molecular mechanisms causing mitochondrial dysfunction early in tauopathy will be of significant clinical and therapeutic value and merits further investigation.

摘要

tau 病是一组以脑内不溶性细胞内 tau 丝为特征的进行性神经退行性疾病。有证据表明,线粒体功能障碍与 tau 病(包括阿尔茨海默病)之间存在紧密联系。然而,线粒体功能障碍是否发生在 tau 病中 tau 聚集物的检测之前仍不清楚。在这里,我们利用在神经元细胞中表达全长野生型 tau 的转基因线虫,并随时间监测线粒体形态的变化。尽管表达 tau 的线虫在幼虫阶段没有积累可检测水平的 tau 聚集物,但与对照线虫相比,它们表现出增加的线粒体损伤和运动缺陷。螯合钙恢复了 tau 表达幼虫中的线粒体活性并改善了运动能力,这表明在这些动物中线粒体损伤、钙稳态和神经元损伤之间存在联系。我们的研究结果表明,线粒体功能缺陷是 tau 病的早期致病事件,发生在 tau 聚集之前,并破坏神经元内稳态和机体适应性。了解 tau 病早期导致线粒体功能障碍的分子机制将具有重要的临床和治疗价值,值得进一步研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b38d/8610126/5d76f33fb7b4/aging-13-203683-g001.jpg

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