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Developmental Expression of 4-Repeat-Tau Induces Neuronal Aneuploidy in Drosophila Tauopathy Models

机译:4-重复-Tau的发育表达诱导果蝇Tauopathy模型中的神经元非整倍性。

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摘要

Tau-mediated neurodegeneration in Alzheimer’s disease and tauopathies is generally assumed to start in a normally developed brain. However, several lines of evidence suggest that impaired Tau isoform expression during development could affect mitosis and ploidy in post-mitotic differentiated tissue. Interestingly, the relative expression levels of Tau isoforms containing either 3 (3R-Tau) or 4 repeats (4R-Tau) play an important role both during brain development and neurodegeneration. Here, we used genetic and cellular tools to study the link between 3R and 4R-Tau isoform expression, mitotic progression in neuronal progenitors and post-mitotic neuronal survival. Our results illustrated that the severity of Tau-induced adult phenotypes depends on 4R-Tau isoform expression during development. As recently described, we observed a mitotic delay in 4R-Tau expressing cells of larval eye discs and brains. Live imaging revealed that the spindle undergoes a cycle of collapse and recovery before proceeding to anaphase. Furthermore, we found a high level of aneuploidy in post-mitotic differentiated tissue. Finally, we showed that overexpression of wild type and mutant 4R-Tau isoform in neuroblastoma SH-SY5Y cell lines is sufficient to induce monopolar spindles. Taken together, our results suggested that neurodegeneration could be in part linked to neuronal aneuploidy caused by 4R-Tau expression during brain development.
机译:一般认为,由Tau介导的阿尔茨海默氏病和颅脑疾病的神经变性始于正常发育的大脑。但是,一些证据表明,在发育过程中受损的Tau亚型表达可能影响有丝分裂后分化组织中的有丝分裂和倍性。有趣的是,含有3个(3R-Tau)或4个重复序列(4R-Tau)的Tau同工型的相对表达水平在脑发育和神经退行性变中都起着重要作用。在这里,我们使用遗传和细胞工具研究了3R和4R-Tau亚型表达,神经元祖细胞的有丝分裂进展以及有丝分裂后神经元存活之间的联系。我们的结果表明,Tau诱导的成人表型的严重性取决于发育过程中4R-Tau亚型的表达。如最近所述,我们在幼虫眼盘和大脑的4R-Tau表达细胞中观察到有丝分裂延迟。实时成像显示主轴在进入后期之前经历了坍塌和恢复的循环。此外,我们在有丝分裂后的分化组织中发现了高水平的非整倍性。最后,我们表明在神经母细胞瘤SH-SY5Y细胞系中野生型和突变型4R-Tau亚型的过表达足以诱导单极纺锤体。两者合计,我们的结果表明,神经变性可能与4R-Tau在大脑发育过程中表达引起的神经元非整倍性有关。

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