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Transient structural distortion of metal-free Cu/Zn superoxide dismutase triggers aberrant oligomerization

机译:无金属铜/锌超氧化物歧化酶的瞬时结构变形触发异常低聚

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摘要

Amyotrophic lateral sclerosis (ALS) is a neurodegenerative disease linked to the misfolding of Cu/Zn superoxide dismutase (SOD1). ALS-related defects in SOD1 result in a gain of toxic function that coincides with aberrant oligomerization. The structural events triggering oligomerization have remained enigmatic, however, as is the case in other protein-misfolding diseases. Here, we target the critical conformational change that defines the earliest step toward aggregation. Using nuclear spin relaxation dispersion experiments, we identified a short-lived (0.4 ms) and weakly populated (0.7%) conformation of metal-depleted SOD1 that triggers aberrant oligomerization. This excited state emanates from the folded ground state and is suppressed by metal binding, but is present in both the disulfide-oxidized and disulfide-reduced forms of the protein. Our results pinpoint a perturbed region of the excited-state structure that forms intermolecular contacts in the earliest nonnative dimer/oligomer. The conformational transition that triggers oligomerization is a common feature of WT SOD1 and ALS-associated mutants that have widely different physicochemical properties. But compared with WT SOD1, the mutants have enhanced structural distortions in their excited states, and in some cases slightly higher excited-state populations and lower kinetic barriers, implying increased susceptibility to oligomerization. Our results provide a unified picture that highlights both (i) a common denominator among different SOD1 variants that may explain why diverse mutations cause the same disease, and (ii) a structural basis that may aid in understanding how different mutations affect disease propensity and progression.
机译:肌萎缩性侧索硬化症(ALS)是一种神经退行性疾病,与Cu / Zn超氧化物歧化酶(SOD1)的错误折叠有关。 SOD1中与ALS相关的缺陷导致毒性功能获得,这与异常的低聚反应相吻合。引发寡聚化的结构事件仍然是令人难以置信的,但是,与其他蛋白质错误折叠疾病一样。在这里,我们的目标是定义构象的最早步骤的关键构象变化。使用核自旋弛豫分散实验,我们确定了金属耗尽的SOD1的短暂(0.4 ms)和弱人群(0.7%)构象,该构象触发了异常的低聚。该激发态从折叠的基态发出,并被金属结合所抑制,但以蛋白质的二硫键氧化和二硫键还原形式存在。我们的结果指出了在最早的非天然二聚体/低聚物中形成分子间接触的激发态结构的扰动区域。引发寡聚化的构象转变是WT SOD1和与ALS相关的突变体的共同特征,这些突变体的理化性质差异很大。但是,与WT SOD1相比,这些突变体在其激发态上具有增强的结构畸变,在某些情况下,其激发态群体略高,动力学势垒更低,这意味着其对低聚反应的敏感性增加。我们的结果提供了一个统一的图景,突出显示了(i)不同SOD1变体之间的共同点,这可以解释为什么各种突变导致同一疾病,以及(ii)可以帮助理解不同突变如何影响疾病倾向和进展的结构基础。

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