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首页> 外文期刊>The Journal of biological chemistry >Enhanced Energy Metabolism Contributes to the Extended Life Span of Calorie-restricted Caenorhabditis elegans
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Enhanced Energy Metabolism Contributes to the Extended Life Span of Calorie-restricted Caenorhabditis elegans

机译:增强的能量代谢有助于延长卡路里限制的Caenorhabditis elegans的延长寿命

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Caloric restriction (CR) markedly extends life span and improves the health of a broad number of species. Energy metabolism fundamentally contributes to the beneficial effects of CR, but the underlying mechanisms that are responsible for this effect remain enigmatic. A multidisciplinary approach that involves quantitative proteomics, immunochemistry, metabolic quantification, and life span analysis was used to determine how CR, which occurs in the Caenorhabditis elegans eat-2 mutants, modifies energy metabolism of the worm, and whether the observed modifications contribute to the CR-mediated physiological responses. A switch to fatty acid metabolism as an energy source and an enhanced rate of energy metabolism by eat-2 mutant nematodes were detected. Life span analyses validated the important role of these previously unknown alterations of energy metabolism in the CR-mediated longevity of nematodes. As observed in mice, the overexpression of the gene for the nematode analog of the cytosolic form of phosphoenolpyruvate carboxykinase caused a marked extension of the life span in C. elegans, presumably by enhancing energy metabolism via an altered rate of cataplerosis of tricarboxylic acid cycle anions. We conclude that an increase, not a decrease in fuel consumption, via an accelerated oxidation of fuels in the TCA cycle is involved in life span regulation; this mechanism may be conserved across phylogeny.
机译:卡路里限制(CR)显着延长了寿命并改善了广泛物种的健康状况。能量代谢从根本上导致CR的有益效果,而是对这种效果负责的潜在机制仍然是神秘的。使用多学科方法,涉及定量蛋白质组学,免疫化学,代谢量化和寿命分析来确定Cr,它在Caenorhabditis秀丽隐杆线虫吃2个突变体中,改变蠕虫的能量代谢,以及观察到的修改是否有助于Cr介导的生理反应。检测到通过Eat-2突变线虫作为能量源作为能量源的切换作为能量源和增强的能量代谢率。生命跨度分析验证了这些先前未知的能量代谢改变的重要作用,在线虫的Cr介导的寿命中。如在小鼠中所观察到的,磷酸丙酮酸羧酮碳酶核糖形式的线虫形式的基因的过表达导致C.杆状杆菌中的寿命的显着延伸,大概通过通过三羧酸循环阴离子的序列率的改变率提高能量代谢。我们得出结论,通过加速氧化TCA周期中的燃料氧化,增加,而不是燃料消耗的降低;这种机制可以在系统发生中保守。

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