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Analysis of Mutant SOD1 Electrophoretic Mobility by Blue Native Gel Electrophoresis; Evidence for Soluble Multimeric Assemblies

机译:蓝色天然凝胶电泳分析突变型SOD1电泳迁移率;可溶性多聚体组装体的证据

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摘要

Mutations in superoxide dismutase 1 (SOD1) cause familial forms of amyotrophic lateral sclerosis (fALS). Disease causing mutations have diverse consequences on the activity and half-life of the protein, ranging from complete inactivity and short half-life to full activity and long-half-life. Uniformly, disease causing mutations induce the protein to misfold and aggregate and such aggregation tendencies are readily visualized by over-expression of the proteins in cultured cells. In the present study we have investigated the potential of using immunoblotting of proteins separated by Blue-Native gel electrophoresis (BNGE) as a means to identify soluble multimeric forms of mutant protein. We find that over-expressed wild-type human SOD1 (hSOD1) is generally not prone to form soluble high molecular weight entities that can be separated by BNGE. For ALS mutant SOD1, we observe that for all mutants examined (A4V, G37R, G85R, G93A, and L126Z), immunoblots of BN-gels separating protein solubilized by digitonin demonstrated varied amounts of high molecular weight immunoreactive entities. These entities lacked reactivity to ubiquitin and were partially dissociated by reducing agents. With the exception of the G93A mutant, these entities were not reactive to the C4F6 conformational antibody. Collectively, these data demonstrate that BNGE can be used to assess the formation of soluble multimeric assemblies of mutant SOD1.
机译:超氧化物歧化酶1(SOD1)中的突变会导致家族性肌萎缩性侧索硬化症(fALS)。引起疾病的突变对蛋白质的活性和半衰期有多种影响,从完全无活性和半衰期短到完全活性和半衰期不等。一致地,引起疾病的突变诱导蛋白质错误折叠和聚集,并且通过在培养细胞中蛋白质的过表达可以容易地看到这种聚集趋势。在本研究中,我们已经研究了利用通过Blue-Native凝胶电泳(BNGE)分离的蛋白质进行免疫印迹作为鉴定突变蛋白的可溶性多聚体形式的潜力。我们发现,过度表达的野生型人SOD1(hSOD1)通常不易于形成可被BNGE分离的可溶性高分子量实体。对于ALS突变体SOD1,我们观察到对于所检查的所有突变体(A4V,G37R,G85R,G93A和L126Z),BN凝胶的免疫印迹分离了被洋地黄皂苷溶解的蛋白质,显示出不同数量的高分子量免疫反应性实体。这些实体对泛素缺乏反应性,并被还原剂部分解离。除G93A突变体外,这些实体与C4F6构象抗体无反应。总体而言,这些数据表明BNGE可用于评估突变型SOD1的可溶性多聚体装配体的形成。

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