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From the Cover: Feature Article: Initiation and elongation in fibrillation of ALS-linked superoxide dismutase

机译:从封面开始:专题文章:ALS连接的超氧化物歧化酶的原纤维形成和伸长

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摘要

Familial amyotrophic lateral sclerosis (fALS) caused by mutations in copper–zinc superoxide dismutase (SOD1) is characterized by the presence of SOD1-rich inclusions in spinal cords. Similar inclusions observed in fALS transgenic mice have a fibrillar appearance suggestive of amyloid structure. Metal-free apo-SOD1 is a relatively stable protein and has been shown to form amyloid fibers in vitro only when it has been subjected to severely destabilizing conditions, such as low pH or reduction of its disulfide bonds. Here, by contrast, we show that a small amount of disulfide-reduced apo-SOD1 can rapidly initiate fibrillation of this exceptionally stable and highly structured protein under mild, physiologically accessible conditions, thus providing an unusual demonstration of a specific, physiologically relevant form of a protein acting as an initiating agent for the fibrillation of another form of the same protein. We also show that, once initiated, elongation can proceed via recruitment of either apo- or partially metallated disulfide-intact SOD1 and that the presence of copper, but not zinc, ions inhibits fibrillation. Our findings provide a rare glimpse into the specific changes in a protein that can lead to nucleation and into the ability of amyloid nuclei to recruit diverse forms of the same protein into fibrils.
机译:由铜-锌超氧化物歧化酶(SOD1)突变引起的家族性肌萎缩性侧索硬化症(fALS)的特征是脊髓中存在富含SOD1的内含物。在fALS转基因小鼠中观察到的相似内含物具有纤维状外观,提示淀粉样蛋白结构。不含金属的apo-SOD1是一种相对稳定的蛋白质,并且仅在经受了严重的不稳定条件(例如低pH或二硫键的还原)时,才能在体外形成淀粉样蛋白纤维。相比之下,在这里,我们表明少量的二硫化物还原的apo-SOD1可以在温和的,生理上容易接近的条件下,迅速启动这种异常稳定和高度结构化的蛋白的原纤维形成,从而提供了特定,生理上相关形式的一种蛋白质,可作为另一种形式的相同蛋白质的原纤化的起因。我们还表明,一旦开始,伸长就可以通过募集脱辅基或部分金属化的二硫键完整的SOD1进行,并且铜而不是锌离子的存在会抑制原纤维形成。我们的发现提供了对蛋白质特定变化的罕见了解,该变化可能导致成核,并且使淀粉样蛋白核将多种形式的同一蛋白质募集到原纤维中。

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