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首页> 外文期刊>Molecular biology of the cell >A Highlights from MBoC Selection: FUS is sequestered in nuclear aggregates in ALS patient fibroblasts
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A Highlights from MBoC Selection: FUS is sequestered in nuclear aggregates in ALS patient fibroblasts

机译:MBoC选择的亮点:FUS被隔离在ALS患者成纤维细胞的核聚集体中

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摘要

Mutations in the RNA-binding protein FUS have been shown to cause the neurodegenerative disease amyotrophic lateral sclerosis (ALS). We investigate whether mutant FUS protein in ALS patient–derived fibroblasts affects normal FUS functions in the nucleus. We investigated fibroblasts from two ALS patients possessing different FUS mutations and a normal control. Fibroblasts from these patients have their nuclear FUS protein trapped in SDS-resistant aggregates. Genome-wide analysis reveals an inappropriate accumulation of Ser-2 phosphorylation on RNA polymerase II (RNA Pol II) near the transcription start sites of 625 genes for ALS patient cells and after small interfering RNA (siRNA) knockdown of FUS in normal fibroblasts. Furthermore, both the presence of mutant FUS protein and siRNA knockdown of wild-type FUS correlate with altered distribution of RNA Pol II within fibroblast nuclei. A loss of FUS function in orchestrating Ser-2 phosphorylation of the CTD of RNA Pol II is detectable in ALS patient–derived fibroblasts expressing mutant FUS protein, even when the FUS protein remains largely nuclear. A likely explanation for this loss of function is the aggregation of FUS protein in nuclei. Thus our results suggest a specific mechanism by which mutant FUS can have biological consequences other than by the formation of cytoplasmic aggregates.
机译:RNA结合蛋白FUS中的突变已显示会引起神经退行性疾病肌萎缩性侧索硬化症(ALS)。我们调查了ALS患者来源的成纤维细胞中的突变FUS蛋白是否影响细胞核中正常的FUS功能。我们调查了两名具有不同FUS突变和正常对照的ALS患者的成纤维细胞。这些患者的成纤维细胞的FUS核蛋白陷于抗SDS的聚集物中。全基因组分析显示,在ALS患者细胞的625个基因的转录起始位点附近以及正常成纤维细胞中FUS的小干扰RNA(siRNA)敲低后,RNA聚合酶II(RNA Pol II)上Ser-2磷酸化的不适当积累。此外,突变型FUS蛋白的存在和野生型FUS的siRNA敲低都与成纤维细胞核内RNA Pol II分布的改变有关。即使在FUS蛋白仍具有大部分核表达的情况下,也可以在表达突变FUS蛋白的ALS患者衍生成纤维细胞中检测到在协调RNA Pol II CTD的Ser-2磷酸化过程中FUS功能的丧失。这种功能丧失的可能解释是FUS蛋白在细胞核中聚集。因此,我们的结果表明,突变的FUS可以通过形成细胞质聚集体而具有生物学后果的特定机制。

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