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Yeast and mammalian metallothioneins functionally substitute for yeast copper-zinc superoxide dismutase.

机译:酵母和哺乳动物金属硫蛋白在功能上替代酵母铜-锌超氧化物歧化酶。

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摘要

Copper-zinc superoxide dismutase catalyzes the disproportionation of superoxide anion to hydrogen peroxide and dioxygen and is thought to play an important role in protecting cells from oxygen toxicity. Saccharomyces cerevisiae strains lacking copper-zinc superoxide dismutase, which is encoded by the SOD1 gene, are sensitive to oxidative stress and exhibit a variety of growth defects including hypersensitivity to dioxygen and to superoxide-generating drugs such as paraquat. We have found that in addition to these known phenotypes, SOD1-deletion strains fail to grow on agar containing the respiratory carbon source lactate. We demonstrate here that expression of the yeast or monkey metallothionein proteins in the presence of copper suppresses the lactate growth defect and some other phenotypes associated with SOD1-deletion strains, indicating that copper metallothioneins substitute for copper-zinc superoxide dismutase in vivo to protect cells from oxygen toxicity. Consistent with these results, we show that yeast metallothionein mRNA levels are dramatically elevated under conditions of oxidative stress. Furthermore, in vitro assays demonstrate that yeast metallothionein, purified or from whole-cell extracts, exhibits copper-dependent antioxidant activity. Taken together, these data suggest that both yeast and mammalian metallothioneins may play a direct role in the cellular defense against oxidative stress by functioning as antioxidants.
机译:铜锌超氧化物歧化酶催化超氧化物阴离子歧化为过氧化氢和双氧,并被认为在保护细胞免受氧中毒方面起着重要作用。缺乏由SOD1基因编码的铜锌超氧化物歧化酶的酿酒酵母菌株对氧化应激敏感,并表现出多种生长缺陷,包括对双氧和对产生百草枯的超氧化物歧化酶过敏。我们已经发现,除了这些已知的表型外,SOD1缺失菌株无法在含有呼吸碳源乳酸的琼脂上生长。我们在这里证明了在铜存在下酵母或猴金属硫蛋白的表达抑制了乳酸生长缺陷和与SOD1缺失菌株相关的一些其他表型,表明铜金属硫蛋白在体内替代了铜锌超氧化物歧化酶以保护细胞免受氧中毒。与这些结果一致,我们表明,在氧化应激条件下,酵母金属硫蛋白mRNA水平显着提高。此外,体外测定表明,纯化的或来自全细胞提取物的酵母金属硫蛋白具有铜依赖性的抗氧化活性。综上所述,这些数据表明酵母和哺乳动物的金属硫蛋白都可以通过充当抗氧化剂,在细胞抵抗氧化应激的防御中发挥直接作用。

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