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TDP43 nuclear export and neurodegeneration in models of amyotrophic lateral sclerosis and frontotemporal dementia

机译:TDP43在肌萎缩性侧索硬化和额颞痴呆模型中的核输出和神经变性

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Amyotrophic lateral sclerosis (ALS) and frontotemporal dementia (FTD) are progressive neurodegenerative disorders marked in most cases by the nuclear exclusion and cytoplasmic deposition of the RNA binding protein TDP43. We previously demonstrated that ALS–associated mutant TDP43 accumulates within the cytoplasm, and that TDP43 mislocalization predicts neurodegeneration. Here, we sought to prevent neurodegeneration in ALS/FTD models using selective inhibitor of nuclear export (SINE) compounds that target exportin-1 (XPO1). SINE compounds modestly extend cellular survival in neuronal ALS/FTD models and mitigate motor symptoms in an in vivo rat ALS model. At high doses, SINE compounds block nuclear egress of an XPO1 cargo reporter, but not at lower concentrations that were associated with neuroprotection. Neither SINE compounds nor leptomycin B, a separate XPO1 inhibitor, enhanced nuclear TDP43 levels, while depletion of XPO1 or other exportins had little effect on TDP43 localization, suggesting that no single exporter is necessary for TDP43 export. Supporting this hypothesis, we find overexpression of XPO1, XPO7 and NXF1 are each sufficient to promote nuclear TDP43 egress. Taken together, our results indicate that redundant pathways regulate TDP43 nuclear export, and that therapeutic prevention of cytoplasmic TDP43 accumulation in ALS/FTD may be enhanced by targeting several overlapping mechanisms.
机译:肌萎缩性侧索硬化症(ALS)和额颞叶痴呆(FTD)是进行性神经退行性疾病,在大多数情况下,RNA结合蛋白TDP43的核排斥和胞质沉积标志着。我们先前证明,与ALS相关的突变型TDP43会在细胞质内积聚,而TDP43的错误定位会预测神经变性。在这里,我们试图使用针对出口蛋白-1(XPO1)的选择性核出口抑制剂(SINE)化合物预防ALS / FTD模型中的神经变性。 SINE化合物适度地延长了神经元ALS / FTD模型中的细胞存活,并减轻了体内大鼠ALS模型中的运动症状。高剂量时,SINE化合物可阻止XPO1货物报告分子的核外出,但在与神经保护有关的较低浓度下则不会。 SINE化合物和单独的XPO1抑制剂瘦霉素B都不会提高核TDP43的水平,而XPO1或其他输出蛋白的消耗对TDP43的定位几乎没有影响,这表明TDP43的出口无需单个出口商。支持该假设,我们发现XPO1,XPO7和NXF1的过表达均足以促进TDP43核的释放。两者合计,我们的结果表明,冗余的途径调节TDP43核出口,并通过针对几种重叠的机制,可以增强对ALS / FTD中胞质TDP43积累的治疗性预防。

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