Nemoto Shino, Fergusson Maria M, Finkel Toren
Cardiovascular Branch, National Heart, Lung, and Blood Institute (NHLBI), Bethesda, MD 20892, USA.
Science. 2004 Dec 17;306(5704):2105-8. doi: 10.1126/science.1101731.
Nutrient availability regulates life-span in a wide range of organisms. We demonstrate that in mammalian cells, acute nutrient withdrawal simultaneously augments expression of the SIRT1 deacetylase and activates the Forkhead transcription factor Foxo3a. Knockdown of Foxo3a expression inhibited the starvation-induced increase in SIRT1 expression. Stimulation of SIRT1 transcription by Foxo3a was mediated through two p53 binding sites present in the SIRT1 promoter, and a nutrient-sensitive physical interaction was observed between Foxo3a and p53. SIRT1 expression was not induced in starved p53-deficient mice. Thus, in mammalian cells, p53, Foxo3a, and SIRT1, three proteins separately implicated in aging, constitute a nutrient-sensing pathway.
营养物质的可利用性在多种生物体中调节寿命。我们证明,在哺乳动物细胞中,急性营养物质剥夺同时增强了SIRT1脱乙酰酶的表达并激活了叉头转录因子Foxo3a。敲低Foxo3a的表达可抑制饥饿诱导的SIRT1表达增加。Foxo3a对SIRT1转录的刺激是通过SIRT1启动子中存在的两个p53结合位点介导的,并且在Foxo3a和p53之间观察到了营养物质敏感的物理相互作用。在饥饿的p53缺陷小鼠中未诱导SIRTl表达。因此,在哺乳动物细胞中,p53、Foxo3a和SIRT1这三种分别与衰老相关的蛋白质构成了一条营养感应途径。