首页> 外文期刊>Neuroscience Research: The Official Journal of the Japan Neuroscience Society >Overexpression of tau leads to the stimulation of neurite outgrowth, the activation of caspase 3 activity, and accumulation and phosphorylation of tau in neuroblastoma cells on cAMP treatment.
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Overexpression of tau leads to the stimulation of neurite outgrowth, the activation of caspase 3 activity, and accumulation and phosphorylation of tau in neuroblastoma cells on cAMP treatment.

机译:tau蛋白的过度表达可刺激神经突增生,激活caspase 3活性,并在cAMP处理后在神经母细胞瘤细胞中tau蛋白的积累和磷酸化。

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摘要

To explore changes to the tau molecule in Alzheimer's disease, we studied the effect of tau expression in stably transfected neuroblastoma x glioma hybrid NG108-15 cells (tau cells). Tau cells had a similar shape to, but more neurites than, wild type NG108-15 cells (wild type cells). When treated with cAMP, tau cells began to form neurites within 2h. After that, these neurites became longer and thicker than those of wild type cells. An accumulation and increased phosphorylation of tau were observed after 8 h and caspase 3 activity was increased after 4 h in tau cells, but not in wild type cells, upon treatment with cAMP. Caspase 3 activity was activated after the initiation of morphological change, and before the accumulation of tau in tau cells. Under these conditions, apoptotic cell death was not observed and tau was colocalized with tubulin. However, the accumulated tau molecules did not associate with tubulin and were dislocated around and in the nuclei of tau cells. These observations have implications for the cellular causes of Alzheimer's disease where the accumulation and mislocation of tau occur concomitant with neuronal degeneration.
机译:为了探索阿尔茨海默氏病中tau分子的变化,我们研究了tau表达在稳定转染的神经母细胞瘤x胶质瘤杂交NG108-15细胞(tau细胞)中的作用。 Tau细胞的形状与野生型NG108-15细胞(野生型细胞)相似,但神经突更多。用cAMP处理后,tau细胞在2小时内开始形成神经突。此后,这些神经突变得比野生型细胞更长,更厚。用cAMP处理后,在tau细胞中8小时后观察到tau的积累和磷酸化增加,而caspase 3活性在tau细胞中增加,而在野生型细胞中则没有。 Caspase 3活性在形态变化开始之后和tau在tau细胞中积累之前被激活。在这些条件下,未观察到凋亡细胞死亡,tau与微管蛋白共定位。但是,积累的tau分子不与微管蛋白缔合,而是在tau细胞周围和细胞核中脱位。这些发现对阿尔茨海默氏病的细胞原因有影响,其中tau的积累和错位与神经元变性同时发生。

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