Zhuhai Precision Medical Center, Zhuhai People's Hospital (Zhuhai Hospital Affiliated with Jinan University), Jinan University, Guangdong 510632, Guangzhou, China.
The Biomedical Translational Research Institute, Faculty of Medical Science, Jinan University, Guangdong 510632, Guangzhou, China.
Aging (Albany NY). 2020 Feb 12;12(3):2840-2856. doi: 10.18632/aging.102781.
Uric acid is a common metabolite found in mammals' serum. Recently, several metabolites have been identified that modulate aging, and uric acid levels are positively correlated with mammals' lifespan. However, the molecular mechanisms underlying this are largely undefined. Here we show that uric acid, an end product of purine metabolism, enhances the resistance of oxidative stress and extends the life span of . We show that uric acid enhances a variety of pathways and leads to the upregulation of genes that are required for uric acid-mediated life span extension. We find that the transcription factors DAF-16/FOXO, SKN-1/NRF2 and HSF-1 contribute to the beneficial longevity conferred by uric acid. We also show that uric acid induced life span extension by regulating the reproductive signaling and insulin/IGF-1 signaling (IIS) pathways. In addition, we find that mitochondrial function plays an important role in uric acid-mediated life span extension. Taken together, these data suggest that uric acid prolongs the life span of , in part, because of its antioxidative activity, which in turn regulates the IIS and the reproductive signaling pathways, thereby activating the function of the transcription factors DAF-16, HSF-1 and SKN-1.
尿酸是哺乳动物血清中常见的代谢物。最近,已经确定了几种调节衰老的代谢物,尿酸水平与哺乳动物的寿命呈正相关。然而,这背后的分子机制在很大程度上还不清楚。在这里,我们表明尿酸,嘌呤代谢的终产物,增强了氧化应激的抵抗力,并延长了寿命。我们表明尿酸增强了多种途径,并导致尿酸介导的寿命延长所需的基因上调。我们发现转录因子 DAF-16/FOXO、SKN-1/NRF2 和 HSF-1 有助于尿酸赋予的有益长寿。我们还表明,尿酸通过调节生殖信号和胰岛素/IGF-1 信号(IIS)途径诱导寿命延长。此外,我们发现线粒体功能在尿酸介导的寿命延长中起着重要作用。总之,这些数据表明尿酸延长了的寿命,部分原因是其抗氧化活性,这反过来又调节 IIS 和生殖信号途径,从而激活转录因子 DAF-16、HSF-1 和 SKN-1 的功能。