首页> 外文期刊>Aging cell. >drr-2 encodes an eIF4H that acts downstream of TOR in diet-restriction-induced longevity of C. elegans.
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drr-2 encodes an eIF4H that acts downstream of TOR in diet-restriction-induced longevity of C. elegans.

机译:drr-2编码的eIF4H在饮食限制引起的秀丽隐杆线虫的寿命中在TOR的下游起作用。

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摘要

Dietary restriction (DR) results in a robust increase in lifespan while maintaining the physiology of much younger animals in a wide range of species. Here, we examine the role of drr-2, a DR-responsive gene recently identified, in determining the longevity of Caenorhabditis elegans. Inhibition of drr-2 has been shown to increase longevity. However, the molecular mechanisms by which drr-2 influences longevity remain unknown. We report here that drr-2 encodes an ortholog of human eukaryotic translation initiation factor 4H (eIF4H), whose function is to mediate the initiation step of mRNA translation. The molecular function of DRR-2 is validated by the association of DRR-2 with polysomes and by the decreased rate of protein synthesis observed in drr-2 knockdown animals. Previous studies have also suggested that DR might trigger a regulated reduction in drr-2 expression to initiate its longevity response. By examining the effect of increasing drr-2 expression on DR animals, we find that drr-2 is essential for a large portion of the longevity response to DR. The nutrient-sensing target of rapamycin (TOR) pathway has been shown to mediate the longevity effects of DR in C. elegans. Results from our genetic analyses suggest that eIF4H/DRR-2 functions downstream of TOR, but in parallel to the S6K/PHA-4 pathway to mediate the lifespan effects of DR. Together, our findings reveal an important role for eIF4H/drr-2 in the TOR-mediated longevity responses to DR.
机译:饮食限制(DR)导致寿命的强劲增长,同时保持了许多物种中许多年轻动物的生理机能。在这里,我们检查了最近确定的DR反应基因drr-2在确定秀丽隐杆线虫的寿命中的作用。抑制drr-2已显示可延长寿命。但是,drr-2影响寿命的分子机制仍然未知。我们在这里报告drr-2编码人类真核翻译起始因子4H(eIF4H)的直系同源物,其功能是介导mRNA翻译的起始步骤。 DRR-2的分子功能可通过DRR-2与多核糖体的结合以及在drr-2敲低动物中观察到的蛋白质合成速率降低来验证。先前的研究还表明,DR可能会触发drr-2表达的调节减少,从而启动其寿命反应。通过研究增加drr-2表达对DR动物的影响,我们发现drr-2对于DR的长寿反应的很大一部分至关重要。雷帕霉素(TOR)途径的营养敏感目标已被证明可以介导线虫中DR的长寿效应。我们的遗传分析结果表明,eIF4H / DRR-2在TOR下游起作用,但与S6K / PHA-4途径平行,以介导DR的寿命效应。总之,我们的发现揭示了eIF4H / drr-2在TOR介导的DR寿命反应中的重要作用。

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