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Nicotinamide adenine dinucleotide extends the lifespan of Caenorhabditis elegans mediated by sir-2.1 and daf-16

机译:烟酰胺腺嘌呤二核苷酸可延长由sir-2.1和daf-16介导的秀丽隐杆线虫的寿命

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摘要

It is well understood that sir2 (sirtuin), an NAD-dependent deacetylase, is essential for the extension of lifespan under caloric restriction. However, the mechanism underlying activation of sir2 is unclear. Life extension through caloric restriction requires the sir2 ortholog sir-2.1 in nematodes but occurs independently of the forkhead-type transcription factor DAF-16. We aimed here to elucidate the correlation between life extension in nematodes and NAD-dependent activation of sirtuin by analyzing the relationship between NAD and DAF-16. Lifespan was extended when Caenorhabditis elegans were bred using medium containing NAD. An RNA interference experiment revealed that life extension by NAD was sir-2.1 dependent. However, life extension by NAD did not occur in daf-16-RNAi nematodes, suggesting that NAD-dependent longevity requires daf-16. This result suggested that different signaling pathways are involved in life extension resulting from caloric restriction and from NAD addition. Expression of sod-3, a target gene of daf-16, and increased oxidative-stress resistance and adiposity were observed in response to NAD addition, indicating that NAD activated daf-16 in each phenotype. These results suggest that NAD affected lifespan through the activation of SIR-2.1 and DAF-16 along a signaling pathway, namely insulin-like signalling pathway (at least parts of it), different from that associated with caloric restriction.
机译:众所周知,sir2(sirtuin)是NAD依赖的脱乙酰基酶,对于在热量限制下延长寿命至关重要。但是,sir2激活的潜在机制尚不清楚。通过热量限制延长生命需要线虫中的sir2 ortholog sir-2.1,但独立于叉头型转录因子DAF-16发生。我们旨在通过分析NAD与DAF-16之间的关系,阐明线虫的寿命延长与NAD依赖的沉默调节蛋白激活之间的关系。使用含NAD的培养基繁殖秀丽隐杆线虫可延长寿命。 RNA干扰实验表明,NAD延长寿命是sir-2.1依赖性的。但是,在daf-16-RNAi线虫中并未通过NAD延长寿命,这表明依赖NAD的寿命需要daf-16。该结果表明,不同的信号途径参与了热量限制和NAD添加所导致的寿命延长。响应NAD的添加,观察到了dad-16的靶基因sod-3的表达,以及增加的氧化应激抗性和肥胖性,表明NAD在每种表型中均激活了daf-16。这些结果表明,NAD通过沿信号传导途径即胰岛素样信号传导途径(至少是其中的一部分)活化SIR-2.1和DAF-16来影响寿命,这与热量限制有关。

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