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SOD2, the principal scavenger of mitochondrial superoxide, is dispensable for embryogenesis and imaginal tissue development but essential for adult survival

机译:SOD2是线粒体超氧化物的主要清除剂,对于胚胎发生和想象的组织发育是必不可少的,但对成年生存至关重要

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Definitive evidence on the impact of MnSOD/SOD2-deficiency and the consequent effects of high flux of mitochondrial reactive oxygen species (ROS) on pre-natal/pre-adult development has yet to be reported for either Drosophila or mice. Here we report that oocytes lacking maternal SOD2 protein develop into adults just like normal SOD2-containing oocytes suggesting that maternal SOD2-mediated protection against mitochondrial ROS is not essential for oocyte viability. However, the capacity of SOD2-null larvae to undergo successful metamorphosis into adults is negatively influenced in the absence of SOD2. We therefore determined the impact of a high superoxide environment on cell size, progression through the cell cycle, cell differentiation and cell death and found no difference between SOD2-null and SOD2(+) larva and pupa. Thus loss of SOD2 activity clearly has no effect on pre-adult imaginal tissues. Instead, we found that the high mitochondrial superoxide environment arising from the absence of SOD2 leads to the induction of autophagy. Such autophagic response may underpin the resistance of pre-adult tissues to unscavenged ROS. Finally, while our data establish that SOD2 activity is less essential for normal development, the mortality of Sod2(-/-)neonates of both Drosophila and mice suggests that SOD2 activity is indeed essential for the viability of adults. We therefore asked if the early mortality of SOD2-null young adults could be rescued by activation of SOD2 expression. The results support the conclusion that the early mortality of SOD2-null adults is largely attributable to the absence of SOD2 activity in the adult per se. This finding somewhat contradicts the widely held notion that failure to scavenge the high volume of superoxide emanating from the oxidative demands of development would be highly detrimental to developing tissues.
机译:关于果蝇或小鼠,尚无关于MnSOD / SOD2缺乏的影响以及线粒体活性氧(ROS)高通量对产前/成人发育的影响的明确证据。在这里,我们报道缺乏母体SOD2蛋白的卵母细胞会像正常的含SOD2卵母细胞一样发育成成年人,这表明母体SOD2介导的针对线粒体ROS的保护对于卵母细胞的生存能力并不是必需的。但是,在没有SOD2的情况下,对SOD2无效的幼虫进行成功变态成年的能力受到负面影响。因此,我们确定了高超氧化物环境对细胞大小,整个细胞周期进展,细胞分化和细胞死亡的影响,并且发现SOD2无效和SOD2(+)幼虫和之间没有差异。因此,SOD2活性的丧失显然对成年前的想象组织没有影响。相反,我们发现由于缺少SOD2而引起的高线粒体超氧化物环境导致自噬的诱导。这种自噬反应可能会增强成年组织对未清除的ROS的抵抗力。最后,尽管我们的数据确定了SOD2活性对于正常发育的重要性降低,但果蝇和小鼠的Sod2(-/-)新生儿酸酯的死亡率表明,SOD2活性确实对于成年动物的生存至关重要。因此,我们询问是否可以通过激活SOD2表达来挽救无SOD2的年轻成年人的早期死亡。结果支持这样的结论,即没有SOD2活性的成年人的早期死亡很大程度上归因于成年人本身缺乏SOD2活性。这一发现在某种程度上与广泛持有的观点相矛盾,即不能清除来自发育的氧化需求的大量超氧化物将对发育中的组织造成极大的损害。

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