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首页> 外文期刊>American Journal of Pathology: Official Publication of the American Association of Pathologists >Neurodegenerative disorder FTDP-17-related tau intron 10 +16C→T mutation increases tau exon 10 splicing and causes tauopathy in transgenic mice
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Neurodegenerative disorder FTDP-17-related tau intron 10 +16C→T mutation increases tau exon 10 splicing and causes tauopathy in transgenic mice

机译:神经变性障碍FTDP-17相关的TAU Intron 10 + 16C→T突变增加Tau Exon 10剪接并导致转基因小鼠的部落病

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摘要

Frontotemporal dementia and parkinsonism linked to chromosome 17 (FTDP-17) is a neurodegenerative disorder caused by mutations in the tau gene. Many mutations identified in FTDP-17 have been shown to affect tau exon 10 splicing in vitro, which presumably causes pathologic imbalances in exon 10- [3-repeat (3R)] and exon 10+ [4-repeat (4R)] tau expression and leads to intracellular inclusions of hyperphosphorylated tau in patient brains. However, no reports have investigated this theory using model mice with a tau intronic mutation. Herein, we generated new transgenic mice harboring the tau intron 10 +16C→T mutation. We prepared a transgene construct containing intronic sequences required for exon 10 splicing in the longest tau isoform cDNA. Although mice bearing the construct without the intronic mutation showed normal developmental changes of the tau isoform from 3R tau to equal amounts of 3R and 4R tau, mice with the mutation showed much higher levels of 4R tau at the adult stage. 4R tau was selectively recovered in insoluble brain fractions in their old age. Furthermore, these mice displayed abnormal tau phosphorylation, synapse loss and dysfunction, memory impairment, glial activation, tangle formation, and neuronal loss in an age-dependent manner. These findings provide the first evidence in a mouse model that a tau intronic mutation-induced imbalance of 3R and 4R tau could be a cause of tauopathy.
机译:与染色体17(FTDP-17)相关的终身痴呆和帕金森主义是由TAU基因突变引起的神经变性疾病。在FTDP-17中鉴定的许多突变已被证明在体外影响Tau Exon 10剪接,这可能导致外显子10- [3重复(3R)]和外显子10+中的病理失衡[4重复(4R)] Tau表达并导致患者脑中高渗毛的细胞内夹杂物。然而,没有通过具有TAU innoroner突变的模型小鼠研究了该理论的报道。在此,我们产生了遍历Tau Intron 10 + 16C→T突变的新的转基因小鼠。我们制备了含有内外序列所需的内科构建体,以便在最长的TAU同种型cDNA中拼接外显子10。虽然轴承没有内肾突变的构建鼠标表现出从3R tau到等量的3R和4R tau的Tau Isoform的正常发育变化,但具有突变的小鼠在成人阶段显示了更高水平的4R Tau。 4R Tau在晚年中在不溶性脑级分中选择性地回收。此外,这些小鼠显示了Tau磷酸化异常,突触损失和功能障碍,记忆障碍,胶质激活,缠结形成和神经元损失以年龄依赖性方式。这些发现在小鼠模型中提供了第一个证据,即Tau inneton突变诱导的3R和4R Tau的不平衡可能是Tauoxathy的原因。

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    Department of Neuroscience Osaka City University Graduate School of Medicine 1-4-3 Asahimachi;

    Department of Neuroscience Osaka City University Graduate School of Medicine 1-4-3 Asahimachi;

    Department of Aging Neurobiology Center for Development of Advanced Medicine for Dementia;

    Department of Neuroscience Osaka City University Graduate School of Medicine 1-4-3 Asahimachi;

    Department of Neuroscience Osaka City University Graduate School of Medicine 1-4-3 Asahimachi;

    School of Comprehensive Rehabilitation Osaka Prefecture University Sakai Japan;

    Department of Aging Neurobiology Center for Development of Advanced Medicine for Dementia;

    Department of Neuroscience Osaka City University Graduate School of Medicine 1-4-3 Asahimachi;

    Department of Neuroscience Osaka City University Graduate School of Medicine 1-4-3 Asahimachi;

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  • 正文语种 eng
  • 中图分类 病理学;
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