首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Mapping superoxide dismutase 1 domains of non-native interaction: roles of intra- and intermolecular disulfide bonding in aggregation.
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Mapping superoxide dismutase 1 domains of non-native interaction: roles of intra- and intermolecular disulfide bonding in aggregation.

机译:映射非天然相互作用的超氧化物歧化酶1域:分子内和分子间二硫键在聚集中的作用。

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摘要

Superoxide dismutase 1 (SOD1) proteins harboring mutations linked to familial amyotrophic lateral sclerosis (FALS) uniformly show heightened potential to form high molecular weight structures. Here, we examine the domains of SOD1 that are involved in forming these structures (aggregates) and study the role of intra- and intermolecular disulfide bonds. An analysis of disease mutations identified to date reveals a non-random distribution with predominant occurrence at residues within highly conserved beta-strands or at highly conserved residues in loop domains. Using a cell transfection assay for aggregation, we determined that no single domain in SOD1 is indispensable in the formation of sedimentable aggregates, suggesting multiple potential motifs in the protein mediate non-native interactions. By a cell-free aggregation assay, analysis of transgenic mouse tissues, and mutagenesis approaches, we found evidence that redox conditions may modulate SOD1 aggregation; reduction of the native intramolecular disulfide bonds may predispose SOD1 to unfolding and aggregation, whereas non-native intermolecular disulfide linkages may help stabilize aggregates in vivo. The results suggest a possible mechanism for diversity in the structures formed by different SOD1 mutants, and define a potential contribution of redox conditions to SOD1 aggregation.
机译:具有与家族性肌萎缩性侧索硬化症(FALS)相关的突变的超氧化物歧化酶1(SOD1)蛋白始终显示出形成高分子量结构的潜力。在这里,我们检查了涉及形成这些结构(聚集体)的SOD1域,并研究了分子内和分子间二硫键的作用。迄今对疾病突变的分析表明,存在一个非随机分布,主要分布在高度保守的β链内的残基或环结构域的高度保守的残基上。使用细胞转染法进行聚集,我们确定SOD1中没有单个域在可沉淀聚集体的形成中必不可少,这表明蛋白质中的多个潜在基序介导了非天然相互作用。通过无细胞聚集测定,转基因小鼠组织分析和诱变方法,我们发现了氧化还原条件可能调节SOD1聚集的证据。天然分子内二硫键的减少可能使SOD1易于展开和聚集,而非天然分子间二硫键可能有助于稳定体内聚集体。结果表明由不同的SOD1突变体形成的结构中的多样性的可能机制,并定义了氧化还原条件对SOD1聚集的潜在贡献。

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