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Mutant superoxide dismutase-1 indistinguishable from wild-type causes ALS

机译:与野生型无法区分的突变型超氧化物歧化酶-1

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A reason for screening amyotrophic lateral sclerosis (ALS) patients for mutations in the superoxide dismutase-1 (SOD1) gene is the opportunity to find novel mutations with properties that can give information on pathogenesis. A novel c.352C>G (L117V) SOD1 mutation was found in two Syrian ALS families living in Europe. The disease showed unusually low penetrance and slow progression. In erythrocytes, the total SOD1 activity, as well as specific activity of the mutant protein, was equal in carriers of the mutation and family controls lacking SOD1 mutations. The structural stabilities of the L117V mutant and wild-type SOD1 under denaturing conditions were likewise equal, but considerably lower than that of murine SOD1. As analyzed with an ELISA specific for misfolded SOD1 species, no differences were found in the content of misfolded SOD1 protein between extracts of fibroblasts from wild-type controls and from an L117V patient. In contrast, elevated levels of misfolded SOD1 protein were found in fibroblasts from ALS patients carrying seven other mutations in the SOD1 gene. We conclude that mutations in SOD1 that result in a fully stable protein are associated with low disease penetrance for ALS and may be found in cases of apparently sporadic ALS. Wild-type human SOD1 is moderately stable, and was found here to be within the stability range of ALS-causing SOD1 variants, lending support to the hypothesis that wild-type SOD1 could be more generally involved in ALS pathogenesis.
机译:筛选肌萎缩性侧索硬化症(ALS)患者的超氧化物歧化酶-1(SOD1)基因突变的原因是寻找具有可提供有关发病机理信息的特性的新型突变的机会。在居住在欧洲的两个叙利亚ALS家庭中发现了一个新的c.352C> G(L117V)SOD1突变。该病表现出异常低的外露性和进展缓慢。在红细胞中,总的SOD1活性以及突变蛋白的比活性在突变载体和缺乏SOD1突变的家族对照中均相等。在变性条件下,L117V突变体和野生型SOD1的结构稳定性同样相等,但远低于鼠类SOD1。用特异性针对错误折叠的SOD1物种的ELISA分析,发现野生型对照和L117V患者的成纤维细胞提取物之间错误折叠的SOD1蛋白含量没有差异。相反,在患有SOD1基因其他七个突变的ALS患者的成纤维细胞中发现了错误折叠的SOD1蛋白水平升高。我们得出的结论是,导致完全稳定的蛋白质的SOD1突变与ALS的疾病渗透率低相关,并且可能在明显零星的ALS病例中发现。野生型人SOD1具有中等程度的稳定性,并在此范围内位于导致ALS的SOD1变体的稳定性范围内,这为以下假设提供了支持:野生型SOD1可能更普遍地参与ALS发病机理。

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