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首页> 外文期刊>European journal of neurology: the official journal of the European Federation of Neurological Societies >Reduced reactivation rate in mutant CuZnSOD and progression rate of amyotrophic lateral sclerosis.
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Reduced reactivation rate in mutant CuZnSOD and progression rate of amyotrophic lateral sclerosis.

机译:降低突变体CuZnSOD的再激活率和肌萎缩性侧索硬化的进展率。

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摘要

Mutations in the SOD1 gene are associated with familial amyotrophic lateral sclerosis (fALS). The mechanisms by which these mutations lead to anterior horn cell loss are unknown, however, increased binding of Hsps on the demetallated mutant SOD1 has been described which would make the HSPs unavailable for other purposes, and reduce the SOD1 concentration in mitochondria, thereby creating a proapoptotic situation finally leading to motor neuron death. Here we report the recombinant expression of four human copper/zinc superoxide dismutase (CuZnSOD) variants, including the wild-type enzyme and mutant proteins associated with familial ALS. The bacterial expression level of soluble mutated proteins was influenced by the mutations leading to drastically reduced levels of soluble CuZnSOD. Simultaneously, increasing levels of insoluble and probably aggregated mutated CuZnSOD were identified in bacterial cell pellets. In addition, altered reactivation kinetics of the purified mutant apoproteins after expression in bacterial culture was shown. Biophysical and biochemical analysis showed that zinc incorporation is severely reduced in the CuZnSOD proteins associated with the most severely forms of fALS (A4V, G93A). These data indicate that a reduced holoenzyme formation rate of mutant enzymes may be a critical factor in the etiopathology of fALS.
机译:SOD1基因的突变与家族性肌萎缩性侧索硬化症(fALS)相关。这些突变导致前角细胞丢失的机制尚不清楚,但是,已描述了Hsps在脱金属突变体SOD1上的结合增加,这将使HSP无法用于其他目的,并降低线粒体中SOD1的浓度,从而形成线粒体。凋亡的情况最终导致运动神经元死亡。在这里,我们报告了四个人类铜/锌超氧化物歧化酶(CuZnSOD)变体的重组表达,包括野生型酶和与家族性ALS相关的突变蛋白。可溶性突变蛋白的细菌表达水平受突变的影响,导致可溶性CuZnSOD的水平大大降低。同时,在细菌细胞沉淀物中发现了不溶性和可能聚集的突变的CuZnSOD水平升高。另外,显示了在细菌培养物中表达后,纯化的突变载脂蛋白的重新激活动力学改变。生物物理和生化分析表明,与最严重形式的fALS(A4V,G93A)相关的CuZnSOD蛋白中的锌掺入严重减少。这些数据表明,突变酶的全酶形成率降低可能是fALS病因学的关键因素。

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