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TDP-43—The key to understanding amyotrophic lateral sclerosis

机译:TDP-43—了解肌萎缩性侧索硬化症的关键

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摘要

Amyotrophic lateral sclerosis (ALS) is a fatal neurodegenerative disease that causes motor neuron degeneration leading to progressive muscle atrophy, weakness, paralysis and death. The majority of ALS (>95%) shows intracellular aggregation of transactive response DNA binding protein (TDP-43) as a prominent pathological feature. TDP-43 is normally a nuclear protein. In ALS, TDP-43 accumulates and aggregates in the cytoplasm (thus forming TDP-43 proteinopathy) and is depleted from the nucleus in CNS cells, including motor neurons and glia. While TDP-43 aggregation can harm cells through a gain of toxicity, it can also cause a loss of TDP-43 function in conjunction with its nuclear depletion. TDP-43 regulates its own expression to maintain itself at a constant level. Perturbation of this level by either increasing or decreasing TDP-43 in animal models leads to neurodegeneration and ALS phenotypes. The evidence supports the hypothesis that TDP-43 dysfunction is a critical driver of neurodegeneration in the vast majority of ALS cases.
机译:肌萎缩性侧索硬化症(ALS)是一种致命的神经退行性疾病,会引起运动神经元变性,从而导致进行性肌肉萎缩,无力,瘫痪和死亡。大部分ALS(> 95%)均显示出细胞内的反应性DNA结合蛋白(TDP-43)聚集是一种突出的病理特征。 TDP-43通常是核蛋白。在ALS中,TDP-43在细胞质中积累和聚集(因此形成TDP-43蛋白病),并从CNS细胞(包括运动神经元和神经胶质细胞)的细胞核中耗尽。尽管TDP-43聚集可以通过增加毒性来伤害细胞,但也会导致TDP-43功能丧失及其核耗竭。 TDP-43调节自己的表达以使其保持恒定水平。在动物模型中,通过增加或减少TDP-43来扰动该水平会导致神经退行性变和ALS表型。证据支持以下假设:在绝大多数ALS病例中,TDP-43功能障碍是神经变性的关键驱动因素。

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