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Mutant FUS proteins that cause amyotrophic lateral sclerosis incorporate into stress granules

机译:导致肌萎缩性侧索硬化的突变FUS蛋白并入应激颗粒

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摘要

Mutations in the RNA-binding protein FUS (fused in sarcoma) are linked to amyotrophic lateral sclerosis (ALS), but the mechanism by which these mutants cause motor neuron degeneration is not known. We report a novel ALS truncation mutant (R495X) that leads to a relatively severe ALS clinical phenotype compared with FUS missense mutations. Expression of R495X FUS, which abrogates a putative nuclear localization signal at the C-terminus of FUS, in HEK-293 cells and in the zebrafish spinal cord caused a striking cytoplasmic accumulation of the protein to a greater extent than that observed for recessive (H517Q) and dominant (R521G) missense mutants. Furthermore, in response to oxidative stress or heat shock conditions in cultures and in vivo, the ALS-linked FUS mutants, but not wild-type FUS, assembled into perinuclear stress granules in proportion to their cytoplasmic expression levels. These findings demonstrate a potential link between FUS mutations and cellular pathways involved in stress responses that may be relevant to altered motor neuron homeostasis in ALS.
机译:RNA结合蛋白FUS(融合在肉瘤中)的突变与肌萎缩性侧索硬化症(ALS)相关,但这些突变体引起运动神经元变性的机制尚不清楚。我们报告了一种新型的ALS截断突变体(R495X),与FUS错义突变相比,该突变体导致相对较严重的ALS临床表型。在HEK-293细胞和斑马鱼脊髓中,R495X FUS的表达消除了FUS C端的推定核定位信号,导致该蛋白在细胞质中的聚集程度大大超过了隐性(H517Q )和显性(R521G)错义突变体。此外,响应于培养物中和体内的氧化应激或热休克条件,与ALS相关的FUS突变体而非野生型FUS突变体按其胞质表达水平成比例组装成核周应激颗粒。这些发现表明,FUS突变与应激反应中涉及的细胞途径之间可能存在联系,这可能与ALS中运动神经元稳态的改变有关。

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