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首页> 外文期刊>Human Molecular Genetics >Overexpression of metallothionein-I, a copper-regulating protein, attenuates intracellular copper dyshomeostasis and extends lifespan in a mouse model of amyotrophic lateral sclerosis caused by mutant superoxide dismutase-1
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Overexpression of metallothionein-I, a copper-regulating protein, attenuates intracellular copper dyshomeostasis and extends lifespan in a mouse model of amyotrophic lateral sclerosis caused by mutant superoxide dismutase-1

机译:金属硫蛋白-1的过表达,铜调节蛋白,衰减细胞内铜脱圆体积,并延伸突变体超氧化物歧化酶-1引起的肌萎缩侧硬化的小鼠模型中的寿命

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摘要

Over 170 mutations in superoxide dismutase-1 (SOD1) cause familial amyotrophic lateral sclerosis (ALS), a lethal motor neuron disease. Although the molecular properties of SOD1 mutants differ considerably, we have recently shown that intracellular copper dyshomeostasis is a common pathogenic feature of different SOD1 mutants. Thus, the potentiation of endogenous copper regulation could be a therapeutic strategy. In this study, we investigated the effects of the overexpression of metallothionein-I (MT-I), a major copper-regulating protein, on the disease course of a mouse model of ALS (SOD1G93A). Using double transgenic techniques, we found that the overexpression of MT-I in SOD1G93A mice significantly extended the lifespan and slowed disease progression, but the effects on disease onset were modest. Genetically induced MT-I normalized copper dyshomeostasis in the spinal cord without influencing SOD1 enzymatic activity. The overexpression of MT-I in SOD1G93A mice markedly attenuated the pathological features of the mice, including the death of motor neurons, the degeneration of ventral root axons, the atrophy of skeletal muscles, and the activation of glial cells. Double transgenic mice also showed a decreased level of SOD1 aggregates within the glial cells of the spinal cord. Furthermore, the overexpression of MT-I in SOD1G93A mice reduced the number of spheroid-shaped astrocytes cleaved by active caspase-3. We concluded that therapeutic strategies aimed at the potentiation of copper regulation by MT-I could be of benefit in cases of ALS caused by SOD1 mutations.
机译:超氧化物歧化酶-1(SOD1)的超过170次突变引起家族肌萎缩侧硬化(ALS),致死的运动神经元疾病。尽管SOD1突变体的分子特性大大差异,但我们最近显示细胞内铜脱果甾术是不同SOD1突变体的常见致病特征。因此,内源性铜调节的增强可以是治疗策略。在这项研究中,我们研究了金属硫蛋白-i(MT-I)过表达,主要铜调节蛋白,疾病进程的疾病进程(SOD1G93A)的疾病进程的影响。使用双重转基因技术,我们发现MT-1在SOD1G93A小鼠中的过表达显着延长了寿命和疾病进展放缓,但对疾病发病的影响是适度的。遗传诱导的MT-1标准化脊髓中的铜脱液,而不影响SOD1酶活性。 MT-1在SOD1G93A小鼠中的过表达显着减弱了小鼠的病理特征,包括运动神经元的死亡,腹侧轴突的退化,骨骼肌的萎缩以及神经胶质细胞的激活。双转基因小鼠还显示出脊髓神经胶质细胞内的SOD1聚集水平降低。此外,SOD1G93A小鼠中MT-1的过表达降低了活性胱天蛋白酶-3切割的球形星形胶质细胞的数量。我们得出结论,旨在通过MT-i致力于铜调节的治疗策略在SOD1突变引起的ALS病例中可能有益。

著录项

  • 来源
    《Human Molecular Genetics》 |2014年第5期|共1页
  • 作者单位

    Laboratory of Clinical Medicine School of Pharmacy Nihon University 7-7-1 Narashinodai;

    Laboratory of Clinical Medicine School of Pharmacy Nihon University 7-7-1 Narashinodai;

    Laboratory of Clinical Medicine School of Pharmacy Nihon University 7-7-1 Narashinodai;

    Laboratory of Clinical Medicine School of Pharmacy Nihon University 7-7-1 Narashinodai;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学遗传学;
  • 关键词

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