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tau 蛋白的特定位点磷酸化会影响线粒体功能和对应激源的反应。

Site-specific phosphorylation of tau impacts mitochondrial function and response to stressors.

机构信息

Department of Anesthesiology & Perioperative Medicine, University of Rochester, Rochester, New York, USA.

Department of Medicine, Nephrology Division, University of Rochester, Rochester, New York, USA.

出版信息

J Neurochem. 2024 Jun;168(6):1019-1029. doi: 10.1111/jnc.15975. Epub 2023 Oct 3.

Abstract

Phosphorylation of tau at sites associated with Alzheimer's disease (AD) likely plays a role in the disease progression. Mitochondrial impairment, correlating with increased presence of phosphorylated tau, has been identified as a contributing factor to neurodegenerative processes in AD. However, how tau phosphorylated at specific sites impacts mitochondrial function has not been fully defined. We examined how AD-relevant phosphomimetics of tau impact selected aspects of mitochondrial biology. To mimic phosphorylation at AD-associated sites, the serine/threonine (Ser/Thr) sites in wild-type green fluorescent protein (GFP)-tagged tau (T4) were converted to glutamic acid (E) to make pseudo-phosphorylated GFP-tagged Ser-396/404 (2EC) and GFP-tagged Thr-231/Ser-235 (2EM) constructs. These constructs were expressed in immortalized mouse hippocampal neuronal cell lines, and their impact on specific mitochondrial functions and responses to stressors were measured. Phosphomimetic tau altered mitochondrial distribution. Specifically, mitochondria accumulated in the soma of cells expressing either 2EC or 2EM and neurite-like extensions in 2EC cells were shorter. Additionally, adenosine triphosphate levels were reduced in both 2EC- and 2EM-expressing cells, and reactive oxygen species (ROS) production increased in 2EC cells during oxidation of succinate when compared to T4-expressing cells. Thapsigargin reduced mitochondrial membrane potential and increased ROS production in both 2EC and 2EM cells relative to T4 cells, with no significant difference in the effects of rotenone. These results show that tau phosphorylation at specific AD-relevant epitopes negatively affects mitochondria, with the extent of dysfunction and stress response varying according to the sites of phosphorylation. Altogether, these findings show that phosphorylated tau increases mitochondrial susceptibility to stressors and extend our understanding of potential mechanisms whereby phosphorylated tau promotes mitochondria dysfunction in tauopathies, including AD.

摘要

tau 蛋白在与阿尔茨海默病(AD)相关的位点上发生磷酸化可能在疾病进展中发挥作用。与磷酸化 tau 蛋白增加相关的线粒体损伤已被确定为 AD 中神经退行性过程的一个促成因素。然而,特定部位磷酸化的 tau 如何影响线粒体功能尚未完全定义。我们研究了 AD 相关 tau 磷酸模拟物如何影响线粒体生物学的某些方面。为了模拟 AD 相关位点的磷酸化,将野生型绿色荧光蛋白(GFP)标记的 tau(T4)中的丝氨酸/苏氨酸(Ser/Thr)位点转化为谷氨酸(E),以产生拟磷酸化的 GFP 标记的 Ser-396/404(2EC)和 GFP 标记的 Thr-231/Ser-235(2EM)构建体。这些构建体在永生化的小鼠海马神经元细胞系中表达,并测量它们对特定线粒体功能和应激反应的影响。磷酸化 tau 改变了线粒体的分布。具体来说,在表达 2EC 或 2EM 的细胞中,线粒体聚集在细胞体中,而 2EC 细胞中的神经突样延伸变短。此外,与 T4 表达细胞相比,在氧化琥珀酸时,2EC 和 2EM 表达细胞中的三磷酸腺苷(ATP)水平降低,而 2EC 细胞中的活性氧(ROS)产生增加。与 T4 细胞相比,在 thapsigargin 降低线粒体膜电位和增加 ROS 产生方面,2EC 和 2EM 细胞没有显著差异,但在鱼藤酮的作用方面没有显著差异。这些结果表明,tau 蛋白在特定的 AD 相关表位上的磷酸化负性影响线粒体,功能障碍和应激反应的程度根据磷酸化部位的不同而有所不同。总之,这些发现表明磷酸化 tau 增加了线粒体对应激原的敏感性,并扩展了我们对磷酸化 tau 在包括 AD 在内的 tau 病中线粒体功能障碍的潜在机制的理解。

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