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Metabolic alterations in genetically selected Drosophila strains with different longevities

机译:不同寿命的遗传选择果蝇菌株的代谢变化

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Sometime ago we obtained biomarker data suggesting that the earliest determining event in the expression of the extended longevity phenotype in our selected strains of Drosophila took place early in adult life at about 5–7 days of age. In a later series of experiments we documented that our La and Lb long lived strains underwent a specific up-regulation of the antioxidant defense system (ADS) genes and enzymes. This led to a reduction in oxidative damage and an extended longevity. In the current work, we assayed the activity of 17 metabolically important enzymes in 5–7 day old flies of 13 strains variously selected for different longevities. We conclude that the two sets of replicated long-lived strains have an altered metabolic pattern (relative to normal-lived animals) which is consistent with an increased flux through the pentose shunt and an enhanced NADP+ reducing system to support the increased activity of the ADS enzymes. This result can be interpreted as a shift of energy expenditure from reproduction to somatic maintenance. We conclude that theories based on differential energy allocations appear to empirically explain, at least in part, the mechanisms underlying the transformation of a normal longevity phenotype to an extended longevity phenotype.
机译:一段时间以前,我们获得了生物标记数据,表明在我们选择的果蝇菌株中,延长寿命表型表达的最早确定事件是在成年早期的大约5-7天发生的。在随后的一系列实验中,我们记录了我们的La和Lb长寿菌株经过抗氧化防御系统(ADS)基因和酶的特定上调。这导致氧化损伤的减少和寿命的延长。在当前的工作中,我们分析了5-7日龄果蝇中13种菌株的17种重要代谢酶的活性,这些菌株针对不同的寿命选择了各种菌株。我们得出的结论是,两组复制的长寿命菌株具有改变的代谢模式(相对于正常动物),这与通过戊糖分流的通量增加和增强的NADP +还原系统相一致,以支持ADS的活性增加酶。该结果可以解释为能量消耗从繁殖到体细胞维持的转变。我们得出结论,基于差异能量分配的理论似乎至少部分地凭经验解释了正常长寿表型向延长长寿表型转化的机制。

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  • 来源
    《AGE》 |2001年第4期|151-161|共11页
  • 作者

    Steven A. Buck; Robert Arking;

  • 作者单位

    Department of Biological Sciences Wayne State University;

    Department of Biological Sciences Wayne State University;

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  • 正文语种 eng
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