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Stable Expression in Chinese Hamster Ovary Cells of Mutated Tau Genes Causing Frontotemporal Dementia and Parkinsonism Linked to Chromosome 17 (FTDP-17)

机译:稳定的表达在中国仓鼠卵巢细胞中突变的Tau基因引起额颞叶痴呆和帕金森病与17号染色​​体相关(FTDP-17)

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摘要

Extensive neuronal loss and aggregation of tau as cytoplasmic inclusions in neurons and glial cells in selected cortical and subcortical regions is the most striking characteristic of frontotemporal dementia and parkinsonism linked to chromosome 17, which is caused by exonic or intronic mutations in the tau gene. Here, we examined the effects of four exonic mutations in four-repeat tau using stably transfected Chinese hamster ovary cells. The proportion of polymerized tubulin was the largest in the P301L transfectant. G272V and P301L transfectants showed greater instability of microtubules in the presence of Colcemid than wild-type tau, V337M, or R406W transfectants. Thus no distinct phenotypes were shared by the mutant tau transfectants with regard to microtubule assembly and stability. Unexpectedly, R406W showed low and negligible levels of phosphorylation at Thr 231 and Ser 396, respectively, in the transfectant. This presents a sharp contrast to the observation that tau aggregates in R406W-affected brains are heavily phosphorylated at these two sites. This result suggests that hyperphosphorylation at these sites cannot occur in the tau R406W bound to microtubules, and thus that the hyperphosphorylated species of tau may be generated only after disruption of microtubules.
机译:额皮质和皮质下区域神经元和胶质细胞中神经元和神经胶质细胞中大量胞质内包涵体的tau大量神经元丢失和聚集是额颞痴呆的最显着特征和帕金森氏症与17号染色​​体有关,后者是由tau基因的外显子或内含子突变引起的。在这里,我们使用稳定转染的中国仓鼠卵巢细胞研究了四重复 tau中四个外显子突变的作用。聚合微管蛋白的 比例在P301L转染子中最大。型tau,V337M, 或R406W转染子。因此,就微管组装 和稳定性而言,突变tau转染子没有共享 不同的表型。出乎意料的是,R406W在转染子中分别在Thr 231和Ser 396处显示出低的磷酸化水平,而 却微不足道。这与观察到的 形成鲜明对比,该观察结果发现,受R406W影响的大脑中的tau聚集体在这两个位点被严重磷酸化 。该结果表明在这些位点的高磷酸化 不会在与微管结合的tau R406W中发生, ,因此可能会生成 仅在微管破裂后。

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  • 来源
    《American Journal of Pathology》 |1999年第6期|00001649-00001656|共8页
  • 作者单位

    From the Department of Neuropathology,Japan Science and Technology Corporation, Kawaguchi, Japan;

    From the Department of Neuropathology,Japan Science and Technology Corporation, Kawaguchi, Japan;

    From the Department of Neuropathology,Japan Science and Technology Corporation, Kawaguchi, Japan|Faculty of Medicine, University of Tokyo, Tokyo, and Core Research for Evolutional Science and Technology (CREST),Japan Science and Technology Corporation, Kawaguchi, Japan;

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