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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >The tau N279K exon 10 splicing mutation recapitulates frontotemporal dementia and parkinsonism linked to chromosome 17 tauopathy in a mouse model.
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The tau N279K exon 10 splicing mutation recapitulates frontotemporal dementia and parkinsonism linked to chromosome 17 tauopathy in a mouse model.

机译:tau N279K外显子10剪接突变概括了与小鼠模型中17号染色​​体tauopathy相关的额颞痴呆和帕金森氏症。

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Intracellular tau deposits are characteristic of several neurodegenerative disorders called tauopathies. The tau protein regulates the stability and assembly of microtubules by binding to microtubules through three or four microtubule-binding repeats (3R and 4R). The number of microtubule-binding repeats is determined by the inclusion or exclusion of the second microtubule-binding repeat encoded by exon 10 of the TAU gene. TAU gene mutations that alter the inclusion of exon 10, and hence the 4R:3R ratio, are causal in the tauopathy frontotemporal dementia and parkinsonism linked to chromosome 17 (FTDP-17). A mutation located in exon 10 has been identified in several FTDP-17 families that present with increased exon 10 inclusion in both mRNA and protein, parkinsonism, movement disorders, and dementia. We have engineered a human tau minigene construct that was designed to allow alternative splicing of the tau exon 10. Here we demonstrate that transgenic mice expressing human tau protein with this mutation develop neurodegeneration as result of aberrant splicing. The mice recapitulate many of the disease hallmarks that are seen in patients with this mutation, including increased tau exon 10 inclusion in both mRNA and protein, motor and behavioral deficits, and tau protein accumulation in neurons and tufted astrocytes. Furthermore, these mice present with degeneration of the nigrostriatal dopaminergic pathway, suggesting a possible mechanism for parkinsonism in FTDP-17. Additionally, activated caspase-3 immunoreactivity in both neurons and astrocytes implicates the involvement of the apoptotic pathway in the pathology of these mice.
机译:细胞内tau沉积物是几种称为tauopathies的神经退行性疾病的特征。 tau蛋白通过三个或四个微管结合重复序列(3R和4R)与微管结合,从而调节微管的稳定性和组装。通过结合或排除由TAU基因的外显子10编码的第二个微管结合重复序列来确定微管结合重复序列的数目。 TAU基因突变会改变外显子10的内含物,从而改变4R:3R的比例,是与17号染色​​体(FTDP-17)相关的tauopathy额颞痴呆和帕金森病的原因。已经在几个FTDP-17家族中鉴定到位于第10外显子的突变,这些突变在mRNA和蛋白质,帕金森病,运动障碍和痴呆症中都增加了第10外显子。我们设计了一个人类tau小基因构建体,该构建体旨在允许tau外显子10的可变剪接。在这里,我们证明了表达人tau蛋白具有这种突变的转基因小鼠由于异常剪接而发生了神经变性。小鼠概括了这种突变患者的许多疾病特征,包括增加了tau外显子10在mRNA和蛋白质中的包容性,运动和行为缺陷,以及tau蛋白在神经元和簇状星形胶质细胞中的积累。此外,这些小鼠表现出黑质纹状体多巴胺能途径的变性,提示FTDP-17中帕金森氏症的可能机制。此外,神经元和星形胶质细胞中活化的caspase-3免疫反应性都提示凋亡通路参与了这些小鼠的病理。

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