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Familial ALS-superoxide dismutases associate with mitochondria and shift their redox potentials

机译:家族性ALS超氧化物歧化酶与线粒体相关并改变其氧化还原电位

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摘要

Recent studies suggest that the toxicity of familial amyotrophic lateral sclerosis mutant Cu, Zn superoxide dismutase (SOD1) arises from its selective recruitment to mitochondria. Here we demonstrate that each of 12 different familial ALS-mutant SOD1s with widely differing biophysical properties are associated with mitochondria of motoneuronal cells to a much greater extent than wild-type SOD1, and that this effect may depend on the oxidation of Cys residues. We demonstrate further that mutant SOD1 proteins associated with the mitochondria tend to form cross-linked oligomers and that their presence causes a shift in the redox state of these organelles and results in impairment of respiratory complexes. The observation that such a diverse set of mutant SOD1 proteins behave so similarly in mitochondria of motoneuronal cells and so differently from wild-type SOD1 suggests that this behavior may explain the toxicity of ALS-mutant SOD1 proteins, which causes motor neurons to die.
机译:最近的研究表明,家族性肌萎缩性侧索硬化症突变体Cu,Zn超氧化物歧化酶(SOD1)的毒性来自其对线粒体的选择性募集。在这里,我们证明了具有广泛不同的生物物理特性的12种不同的家族性ALS突变SOD1与线粒体细胞的线粒体相关的程度远高于野生型SOD1,并且这种作用可能取决于Cys残基的氧化。我们进一步证明,与线粒体相关的突变型SOD1蛋白倾向于形成交联的寡聚体,并且它们的存在会导致这些细胞器的氧化还原状态发生转变,并导致呼吸复合体受损。如此多样化的突变SOD1蛋白在线粒体细胞的线粒体中的行为如此相似,而与野生型SOD1则如此不同的观察结果表明,这种行为可以解释ALS突变SOD1蛋白的毒性,从而导致运动神经元死亡。

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