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tau 蛋白水解过程对神经元和线粒体功能的病理影响:在阿尔茨海默病中的关键作用。

Pathological Impact of Tau Proteolytical Process on Neuronal and Mitochondrial Function: a Crucial Role in Alzheimer's Disease.

机构信息

Laboratory of Neurodegenerative Diseases, Facultad de Ciencias de La Salud, Instituto de Ciencias Biomédicas, Universidad Autónoma de Chile, El Llano Subercaseaux 2801, 5to Piso, San Miguel, 8910060, Santiago, Chile.

出版信息

Mol Neurobiol. 2023 Oct;60(10):5691-5707. doi: 10.1007/s12035-023-03434-4. Epub 2023 Jun 19.

Abstract

Tau protein plays a pivotal role in the central nervous system (CNS), participating in microtubule stability, axonal transport, and synaptic communication. Research interest has focused on studying the role of post-translational tau modifications in mitochondrial failure, oxidative damage, and synaptic impairment in Alzheimer's disease (AD). Soluble tau forms produced by its pathological cleaved induced by caspases could lead to neuronal injury contributing to oxidative damage and cognitive decline in AD. For example, the presence of tau cleaved by caspase-3 has been suggested as a relevant factor in AD and is considered a previous event before neurofibrillary tangles (NFTs) formation.Interestingly, we and others have shown that caspase-cleaved tau in N- or C- terminal sites induce mitochondrial bioenergetics defects, axonal transport impairment, neuronal injury, and cognitive decline in neuronal cells and murine models. All these abnormalities are considered relevant in the early neurodegenerative manifestations such as memory and cognitive failure reported in AD. Therefore, in this review, we will discuss for the first time the importance of truncated tau by caspases activation in the pathogenesis of AD and how its negative actions could impact neuronal function.

摘要

tau 蛋白在中枢神经系统(CNS)中发挥着关键作用,参与微管稳定性、轴突运输和突触通讯。研究重点集中在研究翻译后 tau 修饰在阿尔茨海默病(AD)中线粒体衰竭、氧化损伤和突触损伤中的作用。由半胱天冬酶诱导的病理性切割产生的可溶性 tau 形式可能导致神经元损伤,导致 AD 中的氧化损伤和认知能力下降。例如,已经提出 caspase-3 切割的 tau 的存在是 AD 的一个相关因素,并且被认为是神经原纤维缠结(NFTs)形成之前的一个事件。有趣的是,我们和其他人已经表明,N 或 C 末端位点的 caspase 切割的 tau 诱导线粒体生物能缺陷、轴突运输损伤、神经元损伤和认知能力下降在神经元细胞和鼠模型中。所有这些异常都被认为与 AD 中报道的记忆和认知失败等早期神经退行性表现有关。因此,在这篇综述中,我们将首次讨论 caspase 激活的截断 tau 在 AD 发病机制中的重要性,以及其负面作用如何影响神经元功能。

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