首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Amyotrophic Lateral Sclerosis-linked Mutant SOD1 Sequesters Hu Antigen R (HuR) and TIA-1-related Protein (TIAR)
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Amyotrophic Lateral Sclerosis-linked Mutant SOD1 Sequesters Hu Antigen R (HuR) and TIA-1-related Protein (TIAR)

机译:肌萎缩侧索硬化症相关突变体SOD1螯合剂Hu抗原R(HuR)和TIA-1相关蛋白(TIAR)

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摘要

Down-regulation of vascular endothelial growth factor (VEGF) in the mouse leads to progressive and selective degeneration of motor neurons similar to amyotrophic lateral sclerosis (ALS). In mice expressing ALS-associated mutant superoxide dismutase 1 (SOD1), VEGF mRNA expression in the spinal cord declines significantly prior to the onset of clinical manifestations. In vitro models suggest that dysregulation of VEGF mRNA stability contributes to that decline. Here, we show that the major RNA stabilizer, Hu Antigen R (HuR), and TIA-1-related protein (TIAR) colocalize with mutant SOD1 in mouse spinal cord extracts and cultured glioma cells. The colocalization was markedly reduced or abolished by RNase treatment. Immunoanalysis of transfected cells indicated that colocalization occurred in insoluble aggregates and inclusions. RNA immunoprecipitation showed a significant loss of VEGF mRNA binding to HuR and TIAR in mutant SOD1 cells, and there was marked depletion of HuR from polysomes. Ectopic expression of HuR in mutant SOD1 cells more than doubled the mRNA half-life of VEGF and significantly increased expression to that of wild-type SOD1 control. Cellular effects produced by mutant SOD1, including impaired mitochondrial function and oxidative stress-induced apoptosis, were reversed by HuR in a gene dose-dependent pattern. In summary, our findings indicate that mutant SOD1 impairs post-transcriptional regulation by sequestering key regulatory RNA-binding proteins. The rescue effect of HuR suggests that this impairment, whether related to VEGF or other potential mRNA targets, contributes to cytotoxicity in ALS.
机译:小鼠中血管内皮生长因子(VEGF)的下调会导致运动神经元进行性和选择性变性,类似于肌萎缩性侧索硬化症(ALS)。在表达ALS相关突变超氧化物歧化酶1(SOD1)的小鼠中,在临床表现发作之前,脊髓中的VEGF mRNA表达显着下降。体外模型表明,VEGF mRNA稳定性的失调导致了这种下降。在这里,我们显示了主要的RNA稳定剂,Hu抗原R(HuR)和TIA-1相关蛋白(TIAR)与突变型SOD1在小鼠脊髓提取物和培养的神经胶质瘤细胞中共定位。通过RNase处理,共定位显着降低或消除。对转染细胞的免疫分析表明,共定位发生在不溶性聚集体和包裹体中。 RNA免疫沉淀显示突变的SOD1细胞中VEGF mRNA与HuR和TIAR的结合显着丧失,并且多核糖体中HuR的消耗明显。 HuR在突变型SOD1细胞中的异位表达使VEGF的mRNA半衰期增加了一倍以上,并且与野生型SOD1对照相比,表达明显增加。 HuR以基因剂量依赖性模式逆转了突变型SOD1产生的细胞效应,包括线粒体功能受损和氧化应激诱导的细胞凋亡。总而言之,我们的发现表明,突变体SOD1通过隔离关键的调控RNA结合蛋白来损害转录后调控。 HuR的挽救作用表明,这种损伤,无论与VEGF还是其他潜在的mRNA靶标有关,都有助于ALS中的细胞毒性。

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