首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Prion protein reduces both oxidative and non-oxidative copper toxicity.
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Prion protein reduces both oxidative and non-oxidative copper toxicity.

机译:on病毒蛋白可降低氧化性铜和非氧化性铜的毒性。

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摘要

The prion protein is a membrane tethered glycoprotein that binds copper. Conversion to an abnormal isoform is associated with neurodegenerative diseases known as prion diseases. Expression of the prion protein has been suggested to prevent cell death caused by oxidative stress. Using cell based models we investigated the potential of the prion protein to protect against copper toxicity. Although prion protein expression effectively protected neurones from copper toxicity, this protection was not necessarily associated with reduction in oxidative damage. We also showed that glycine and the prion protein could both protect neuronal cells from oxidative stress. Only the prion protein could protect these cells from the toxicity of copper. In contrast glycine increased copper toxicity without any apparent oxidative stress or lipid peroxidation. Mutational analysis showed that protection by the prion protein was dependent upon the copper binding octameric repeat region. Our findings demonstrate that copper toxicity can be independent of measured oxidative stress and that prion protein expression primarily protects against copper toxicity independently of the mechanism of cell death.
机译:ion病毒蛋白是与铜结合的膜拴糖蛋白。转化为异常同工型与称为deg病毒疾病的神经退行性疾病有关。 suggested病毒蛋白的表达已被建议预防由氧化应激引起的细胞死亡。使用基于细胞的模型,我们研究了ion病毒蛋白预防铜毒性的潜力。尽管病毒蛋白表达有效地保护了神经元免受铜毒性的影响,但这种保护不一定与减少氧化损伤有关。我们还表明,甘氨酸和the病毒蛋白均可保护神经元细胞免受氧化应激。只有the病毒蛋白可以保护这些细胞免受铜的毒性。相反,甘氨酸增加了铜的毒性,而没有任何明显的氧化应激或脂质过氧化。突变分析表明by病毒蛋白的保护作用取决于铜结合的八聚体重复区域。我们的发现表明,铜毒性可以独立于测得的氧化应激,that病毒蛋白的表达主要可以独立于细胞死亡的机制来防止铜毒性。

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