首页> 外文期刊>Biological Rhythm Research >Diurnal Rhythm of Protein Carbonyl as an Indicator of Oxidative Damage in Drosophila melanogaster: Influence of Clock Gene Alleles and Deficiencies in the Formation of Free-Radical Scavengers
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Diurnal Rhythm of Protein Carbonyl as an Indicator of Oxidative Damage in Drosophila melanogaster: Influence of Clock Gene Alleles and Deficiencies in the Formation of Free-Radical Scavengers

机译:蛋白羰基的昼夜节律作为果蝇果蝇氧化损伤的指标:时钟基因等位基因的影响和自由基清除剂形成中的缺陷。

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摘要

In males of Drosophila melanogaster, protein carbonyl was determined as an indicator of damage by free radicals; this parameter was chosen because it is not affected by self-sustaining progression of radical reaction chains, in contrast to indicators based on lipid peroxidation. The diurnal time patterns were determined in wild-type flies, strain Canton S, and the following mutants, on a Canton S genetic background: the short-period mutant per~s; the arrhythmic mutant per~0, which is, at the same time, deficient for melatonin formation, due to its inability to express hydroxyindole O-methyltransferase; the mutant rosy (ry~(506)), which is hypersensitive to oxidants because of its deficiency in he formation of the physiological free-radical scavenger urate. Wild-type flies exhibit a protein carbonyl rhythm of only moderate amplitude; an increase of protein damage is only found in the mid-scotophase. In per, the nocturnal protein carbonyl maximum of flies kept in LD 12:12 is markedly elevated; additionally, a secondary maximum appears in the middle of photophase. The arrhythmic mutant per~0 does not exhibit diurnal fluctuations, even not in LD. Highest concentrations of protein carbonyl are found in the urate-null mutant ry. Its temporal pattern largely deviates from the those of the other strains by showing highest rates of damage in the morning and during the day.
机译:在果蝇的果蝇雄性中,羰基蛋白被确定为自由基破坏的指示剂。选择该参数的原因是,与基于脂质过氧化的指标相比,该参数不受自由基反应链自我维持进程的影响。在野生型果蝇,Canton S菌株和以下突变体中,以Canton S的遗传背景确定了昼夜时间模式:per-s短周期突变体;心律失常突变体per〜0,同时由于无法表达羟吲哚O-甲基转移酶而缺乏褪黑激素的形成;突变体玫瑰红(ry〜(506)),由于对生理性自由基清除剂尿酸盐的形成缺乏,因此对氧化剂非常敏感。野生型果蝇的羰基蛋白节律只有中等幅度。蛋白质损伤的增加仅在中间阶段才发现。在每种情况下,保持在LD 12:12中的果蝇的夜间蛋白质羰基最大值显着升高;此外,次要最大值出现在光相中间。心律失常突变体per〜0没有昼夜波动,甚至在LD中也没有。在尿酸盐-空突变体ry中发现了最高浓度的羰基蛋白。它的时间模式在早晨和白天显示出最高的破坏率,从而大大偏离了其他菌株。

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