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Expression of bovine superoxide dismutase in Drosophila melanogaster augments resistance of oxidative stress.

机译:果蝇中牛超氧化物歧化酶的表达增强了氧化应激的抵抗力。

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摘要

Superoxide dismutases (SOD) play a major role in the intracellular defense against oxygen radical damage to aerobic cells. In eucaryotes, the cytoplasmic form of the enzyme is a 32-kDa dimer containing two copper and two zinc atoms (CuZn SOD) that catalyzes the dismutation of the superoxide anion (O2-) to H2O2 and O2. Superoxide-mediated damage has been implicated in a number of biological processes, including aging and cancer; however, it is not certain whether endogenously elevated levels of SOD will reduce the pathological events resulting from such damage. To understand the in vivo relationship between an efficient dismutation of O2- and oxidative injury to biological structures, we generated transgenic strains of Drosophila melanogaster overproducing CuZn SOD. This was achieved by microinjecting Drosophila embryos with P-elements containing bovine CuZn SOD cDNA under the control of the Drosophila actin 5c gene promoter. Adult flies of the resulting transformed lines which expressed both mammalian and Drosophila CuZn SOD were then used as a novel model for evaluating the role of oxygen radicals in aging. Our data show that expression of enzymatically active bovine SOD in Drosophila flies confers resistance to paraquat, an O2(-)-generating compound. This is consistent with data on adult mortality, because there was a slight but significant increase in the mean lifespan of several of the transgenic lines. The highest level of expression of the active enzyme in adults was 1.60 times the normal value. Higher levels may have led to the formation of toxic levels of H2O2 during development, since flies that died during the process of eclosion showed an unusual accumulation of lipofuscin (age pigment) in some of their cells. In conclusion, our data show that free-radical detoxification has a minor by positive effect on mean longevity for several strains.
机译:超氧化物歧化酶(SOD)在细胞内防御需氧细胞中的氧自由基损害中起主要作用。在真核生物中,该酶的细胞质形式是一个32 kDa的二聚体,其中包含两个铜和两个锌原子(CuZn SOD),可催化超氧阴离子(O2-)歧化为H2O2和O2。超氧化物介导的损伤与许多生物学过程有关,包括衰老和癌症。然而,尚不确定内源性升高的SOD水平是否会减轻这种损害所导致的病理事件。为了了解O2的有效变异和对生物结构的氧化损伤之间的体内关系,我们生成了果蝇过量生产CuZn SOD的转基因果蝇。这是通过在果蝇肌动蛋白5c基因启动子的控制下,向果蝇胚胎微注射含有牛CuZn SOD cDNA的P元素而实现的。然后将表达的转化株同时表达哺乳动物和果蝇CuZn SOD的成年蝇用作评估氧自由基在衰老中的作用的新模型。我们的数据表明,果蝇果蝇中具有酶活性的牛SOD的表达赋予对百草枯(产生O2(-)的化合物)的抗性。这与成人死亡率数据一致,因为几种转基因品系的平均寿命略有但显着增加。成人中活性酶的最高表达水平是正常值的1.60倍。较高的水平可能已导致发育过程中H2O2的毒性水平形成,因为在羽化过程中死亡的果蝇在其某些细胞中显示出脂褐素(年龄色素)异常积累。总之,我们的数据表明,自由基解毒对几种菌株的平均寿命影响很小。

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