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Resistance to Stress Can Be Experimentally Dissociated From Longevity

机译:可以从寿命上摆脱对压力的抵抗力

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摘要

On the basis of multiple experiments demonstrating that high resistance to stress is associated with long lifespan, it has been proposed that stress resistance is a key determinant of longevity. However, the extent to which high resistance to stress is necessary or sufficient for long life is currently unclear. In this work, we use a genetic approach to disrupt different stress response pathways and examine the resulting effect on the longevity of the long-lived insulin-like growth factor 1 (IGF1) receptor mutant daf-2. Although mutation of the heat shock factor gene hsf-1, deletion of sod genes, deletion of the p38 MAPK kinase gene pmk-1, or deletion of the transcription factor gene egl-27 all resulted in decreased resistance to at least one form of stress and decreased lifespan, the magnitude of change in stress resistance did not correspond to the magnitude of change in lifespan. In addition, we found that deletion of the glycerol-3-phosphate dehydrogenase genes gpdh-1 and gpdh-2 or deletion of the DAF-16 cofactor gene nhl-1 also results in decreased resistance to at least one form of stress but increases lifespan. Overall, our results suggest that while increased stress resistance is associated with longevity, stress resistance, and lifespan can be experimentally dissociated.
机译:在多次实验表明,高耐应力性与长寿命相关联的基础上,提出了耐应力性是寿命长短的关键因素。然而,目前尚不清楚对于长寿命而言必需或足够高的耐应力性的程度。在这项工作中,我们使用遗传方法破坏不同的应激反应途径,并检查对长寿命胰岛素样生长因子1(IGF1)受体突变体daf-2的寿命产生的影响。尽管热休克因子基因hsf-1发生突变,sod基因缺失,p38 MAPK激酶基因pmk-1缺失或转录因子基因egl-27缺失均导致对至少一种形式的胁迫的抵抗力降低并且,随着寿命的缩短,耐应力变化的幅度与寿命的变化幅度不对应。此外,我们发现删除3-磷酸甘油脱氢酶基因gpdh-1和gpdh-2或删除DAF-16辅因子基因nhl-1也会导致对至少一种形式的压力的抵抗力降低,但寿命增加。总体而言,我们的结果表明,虽然增加的耐应力性与寿命有关,但可以通过实验分离耐应力性和寿命。

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