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Caspase-Cleaved Tau 损害阿尔茨海默病中的线粒体动态。

Caspase-Cleaved Tau Impairs Mitochondrial Dynamics in Alzheimer's Disease.

机构信息

Laboratory of Neurodegenerative Diseases, Centro de Investigación Biomédica, Universidad Autónoma de Chile, El Llano Subercaseaux 2801 5to Piso, San Miguel, 8910000, Santiago, Chile.

Centro de Investigación y Estudio del Consumo de Alcohol en Adolescentes (CIAA), Santiago, Chile.

出版信息

Mol Neurobiol. 2018 Feb;55(2):1004-1018. doi: 10.1007/s12035-017-0385-x. Epub 2017 Jan 13.

Abstract

Alzheimer's disease (AD) is characterized by the presence of aggregates of tau protein. Tau truncated by caspase-3 (D421) or tau hyperphosphorylated at Ser396/S404 might play a role in the pathogenesis of AD. Mitochondria are dynamic organelles that modify their size and function through mitochondrial dynamics. Recent studies have shown that alterations of mitochondrial dynamics affect synaptic communication. Therefore, we studied the effects of pathological forms of tau on the regulation of mitochondrial dynamics. We used primary cortical neurons from tau(-/-) knockout mice and immortalized cortical neurons (CN1.4) that were transfected with plasmids containing green fluorescent protein (GFP) or GFP with different tau forms: full-length (GFP-T4), truncated (GFP-T4C3), pseudophosphorylated (GFP-T42EC), or both truncated and pseudophosphorylated modifications of tau (GFP-T4C3-2EC). Cells expressing truncated tau showed fragmented mitochondria compared to cells that expressed full-length tau. These findings were corroborated using primary neurons from tau(-/-) knockout mice that expressed the truncated and both truncated and pseudophosphorylated forms of tau. Interestingly, mitochondrial fragmentation was accompanied by a significant reduction in levels of optic atrophy protein 1 (Opa1) in cells expressing the truncated form of tau. In addition, treatment with low concentrations of amyloid-beta (Aβ) significantly reduced mitochondrial membrane potential, cell viability, and mitochondrial length in cortical cells and primary neurons from tau(-/-) mice that express truncated tau. These results indicate that the presence of tau pathology impairs mitochondrial dynamics by reducing Opa1 levels, an event that could lead to mitochondrial impairment observed in AD.

摘要

阿尔茨海默病(AD)的特征是存在 tau 蛋白聚集体。被半胱天冬酶-3(Caspase-3)截断的 tau(D421)或丝氨酸 396/404 高度磷酸化的 tau 可能在 AD 的发病机制中发挥作用。线粒体是动态细胞器,可以通过线粒体动力学改变其大小和功能。最近的研究表明,线粒体动力学的改变会影响突触通讯。因此,我们研究了病理性 tau 对线粒体动力学调节的影响。我们使用来自 tau(-/-)敲除小鼠的皮质神经元原代培养物和转染含有绿色荧光蛋白(GFP)或不同 tau 形式的 GFP 的永生化皮质神经元(CN1.4):全长(GFP-T4)、截断(GFP-T4C3)、假磷酸化(GFP-T42EC)或 tau 的截断和假磷酸化修饰(GFP-T4C3-2EC)。与表达全长 tau 的细胞相比,表达截断 tau 的细胞显示出碎片化的线粒体。这些发现得到了来自表达截断和截断和假磷酸化 tau 形式的 tau(-/-)敲除小鼠的原代神经元的证实。有趣的是,线粒体碎片化伴随着表达截断 tau 的细胞中视神经萎缩蛋白 1(Opa1)水平的显著降低。此外,用低浓度的淀粉样蛋白-β(Aβ)处理会显著降低皮质细胞和表达截断 tau 的 tau(-/-)小鼠原代神经元的线粒体膜电位、细胞活力和线粒体长度。这些结果表明,tau 病理学的存在通过降低 Opa1 水平来损害线粒体动力学,这一事件可能导致 AD 中观察到的线粒体损伤。

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