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Extra-mitochondrial Cu/Zn superoxide dismutase (Sod1) is dispensable for protection against oxidative stress but mediates peroxide signaling in Saccharomyces cerevisiae

机译:线粒体铜/锌超氧化物歧化酶(Sod1)可用于保护免受氧化应激但介导酿酒酵母中的过氧化物信号传导。

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摘要

Cu/Zn Superoxide Dismutase (Sod1) is a highly conserved and abundant metalloenzyme that catalyzes the disproportionation of superoxide radicals into hydrogen peroxide and molecular oxygen. As a consequence, Sod1 serves dual roles in oxidative stress protection and redox signaling by both scavenging cytotoxic superoxide radicals and producing hydrogen peroxide that can be used to oxidize and regulate the activity of downstream targets. However, the relative contributions of Sod1 to protection against oxidative stress and redox signaling are poorly understood. Using the model unicellular eukaryote, Baker's yeast, we found that only a small fraction of the total Sod1 pool is required for protection against superoxide toxicity and that this pool is localized to the mitochondrial intermembrane space. On the contrary, we find that much larger amounts of extra-mitochondrial Sod1 are critical for peroxide-mediated redox signaling. Altogether, our results force the re-evaluation of the physiological role of bulk Sod1 in redox biology; namely, we propose that the vast majority of Sod1 in yeast is utilized for peroxide-mediated signaling rather than superoxide scavenging.
机译:铜/锌超氧化物歧化酶(Sod1)是一种高度保守且丰富的金属酶,可催化超氧化物自由基歧化为过氧化氢和分子氧。结果,Sod1通过清除细胞毒性超氧化物自由基和产生可用于氧化和调节下游靶标活性的过氧化氢,在氧化应激保护和氧化还原信号传导中发挥双重作用。但是,人们对Sod1对氧化应激和氧化还原信号保护的相对贡献知之甚少。使用模型单细胞真核生物(贝克酵母),我们发现总Sod1库中只有一小部分需要保护以防超氧化物毒性,并且该库位于线粒体膜间空间。相反,我们发现线粒体外Sod1的数量对于过氧化物介导的氧化还原信号至关重要。总之,我们的结果迫使人们重新评估块状Sod1在氧化还原生物学中的生理作用。也就是说,我们建议将酵母中的绝大多数Sod1用于过氧化物介导的信号传导,而不是用于清除超氧化物。

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