首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Subunit-destabilizing mutations in Drosophila copper/zinc superoxide dismutase: neuropathology and a model of dimer dysequilibrium.
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Subunit-destabilizing mutations in Drosophila copper/zinc superoxide dismutase: neuropathology and a model of dimer dysequilibrium.

机译:果蝇铜/锌超氧化物歧化酶中的亚基不稳定突变:神经病理学和二聚体失衡模型。

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摘要

Mutations in Cu/Zn superoxide dismutase (SOD), a hallmark of familial amyotrophic lateral sclerosis (FALS) in humans, are shown here to confer striking neuropathology in Drosophila. Heterozygotes with one wild-type and one deleted SOD allele retain the expected 50% of normal activity for this dimeric enzyme. However, heterozygotes with one wild-type and one missense SOD allele show lesser SOD activities, ranging from 37% for a heterozygote carrying a missense mutation predicted from structural models to destabilize the dimer interface, to an average of 13% for several heterozygotes carrying missense mutations predicted to destabilize the subunit fold. Genetic and biochemical evidence suggests a model of dimer dysequilibrium whereby SOD activity in missense heterozygotes is reduced through entrapment of wild-type subunits into unstable or enzymatically inactive heterodimers. This dramatic impairment of the activity of wild-type subunits in vivo has implications for our understanding of FALS and for possible therapeutic strategies.
机译:Cu / Zn超氧化物歧化酶(SOD)的突变是人类家族性肌萎缩性侧索硬化症(FALS)的标志,在此处可赋予果蝇惊人的神经病理学特征。具有一个野生型和一个缺失的SOD等位基因的杂合子保留了该二聚酶正常活性的预期50%。但是,具有一个野生型和一个错义SOD等位基因的杂合子显示的SOD活性较低,范围从结构模型预测的带有错义突变的杂合子的37%使二聚体界面不稳定,到具有错义二聚体界面的杂合子的平均值为13%。突变预计会破坏亚基折叠的稳定性。遗传和生化证据表明,存在二聚体失衡模型,通过将野生型亚基截留到不稳定或无酶活性的异二聚体中,错义杂合子中的SOD活性降低。体内野生型亚基活性的这种显着损害对我们对FALS的理解和可能的治疗策略具有影响。

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