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首页> 外文期刊>Journal of Molecular Biology >Cu,Zn-Superoxide Dismutase without Zn Is Folded but Catalytically Inactive
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Cu,Zn-Superoxide Dismutase without Zn Is Folded but Catalytically Inactive

机译:不含锌的Cu,Zn-超氧化物歧化酶折叠但无催化活性

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Amyotrophic lateral sclerosis has been linked to the gain of aberrant function of superoxide dismutase, Cu,Zn-SOD1 upon protein misfolding. The mechanism of SOD1 misfolding is thought to involve mutations leading to the loss of Zn, followed by protein unfolding and aggregation. We show that the removal of Zn from SOD1 may not lead to an immediate unfolding but immediately deactivates the enzyme through a combination of subtle structural and electronic effects. Using quantum mechanics/discrete molecular dynamics, we showed that both Zn-less wild-type (WT)-SOD1 and its D124N mutant that does not bind Zn have at least metastable folded states. In those states, the reduction potential of Cu increases, leading to the presence of detectable amounts of Cu(I) instead of Cu(II) in the active site, as confirmed experimentally. The Cu(I) protein cannot participate in the catalytic Cu(I)-Cu(II) cycle. However, even without the full reduction to Cu(I), the Cu site in the Zn-less variants of SOD1 is shown to be catalytically incompetent: unable to bind superoxide in a way comparable to the WT-SOD1. The changes are more radical and different in the D124N Zn-less mutant than in the Zn-less WT-SOD1, suggesting D124N being perhaps not the most adequate model for Zn-less SOD1. Overall, Zn in SOD1 appears to be influencing the Cu site directly by adjusting its reduction potential and geometry. Thus, the role of Zn in SOD1 is not just structural, as was previously thought; it is a vital part of the catalytic machinery. (C) 2014 Elsevier Ltd. All rights reserved.
机译:肌萎缩性侧索硬化症与蛋白质错误折叠后获得超氧化物歧化酶,Cu,Zn-SOD1的异常功能有关。人们认为SOD1错折叠的机制涉及导致Zn丢失,随后蛋白解折叠和聚集的突变。我们表明,从SOD1中去除Zn可能不会导致立即展开,而是通过细微的结构和电子效应的组合立即使酶失活。使用量子力学/离散分子动力学,我们表明无锌的野生型(WT)-SOD1及其不与锌结合的D124N突变体至少具有亚稳态折叠状态。在那些状态下,Cu的还原电位增加,从而导致在活性位点中检测到一定量的Cu(I)而不是Cu(II),这已通过实验证实。 Cu(I)蛋白不能参与催化Cu(I)-Cu(II)循环。然而,即使没有完全还原成Cu(I),SOD1的无锌变体中的Cu位点也显示出催化能力不足:无法以与WT-SOD1相当的方式结合超氧化物。与无锌的WT-SOD1相比,D124N的无锌突变体的变化更为明显,且差异更大,这表明D124N可能不是无锌的SOD1的最合适模型。总体而言,SOD1中的锌似乎通过调节其还原电位和几何形状而直接影响铜位。因此,Zn在SOD1中的作用不仅像先前所认为的那样是结构性的;而且,它还具有一定的活性。它是催化机械的重要组成部分。 (C)2014 Elsevier Ltd.保留所有权利。

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