Cardiovascular Institute, University of Pittsburgh Medical Center, University of Pittsburgh, Pittsburgh, PA 15213, USA.
Hum Mol Genet. 2010 Nov 1;19(21):4123-33. doi: 10.1093/hmg/ddq331. Epub 2010 Aug 6.
The SIRTUIN1 (SIRT1) deacetylase responds to changes in nutrient availability and regulates mammalian physiology and metabolism. Human and mouse SIRT1 are transcriptionally repressed by p53 via p53 response elements in their proximal promoters. Here, we identify a novel p53-binding sequence in the distal human SIRT1 promoter that is required for nutrient-sensitive SIRT1 transcription. In addition, we show that a common single-nucleotide (C/T) variation in this sequence affects nutrient deprivation-induced SIRT1 transcription, and calorie restriction-induced SIRT1 expression. The p53-binding sequence lies in a region of the SIRT1 promoter that also binds the transcriptional repressor Hypermethylated-In-Cancer-1 (HIC1). Nutrient deprivation increases occupancy by p53, while decreasing occupancy by HIC1, of this region of the promoter. HIC1 and p53 compete with each other for promoter occupancy. In comparison with the T variation, the C variation disrupts the mirror image symmetry of the p53-binding sequence, resulting in decreased binding to p53, decreased nutrient sensitivity of the promoter and impaired calorie restriction-stimulated tissue expression of SIRT1 and SIRT1 target genes AMPKα2 and PGC-1β. Thus, a common SNP in a novel p53-binding sequence in the human SIRT1 promoter affects nutrient-sensitive SIRT1 expression, and could have a significant impact on calorie restriction-induced, SIRT1-mediated, changes in human metabolism and physiology.
SIRTUIN1(SIRT1)去乙酰化酶对营养物质可用性的变化做出响应,并调节哺乳动物的生理和代谢。人类和小鼠的 SIRT1 通过其近端启动子中的 p53 反应元件被 p53 转录抑制。在这里,我们在人类 SIRT1 启动子的远端鉴定出一个新的 p53 结合序列,该序列是营养敏感的 SIRT1 转录所必需的。此外,我们表明,该序列中的一个常见单核苷酸(C/T)变异影响营养剥夺诱导的 SIRT1 转录和热量限制诱导的 SIRT1 表达。p53 结合序列位于 SIRT1 启动子的一个区域,该区域还结合转录抑制因子 Hypermethylated-In-Cancer-1(HIC1)。营养剥夺增加了该启动子区域内 p53 的占有率,同时降低了 HIC1 的占有率。HIC1 和 p53 相互竞争启动子占有率。与 T 变异相比,C 变异破坏了 p53 结合序列的镜像对称,导致 p53 结合减少,启动子的营养敏感性降低,并且损害了热量限制刺激的 SIRT1 和 SIRT1 靶基因 AMPKα2 和 PGC-1β在组织中的表达。因此,人类 SIRT1 启动子中一个新的 p53 结合序列的常见 SNP 影响营养敏感的 SIRT1 表达,并且可能对热量限制诱导的 SIRT1 介导的人类代谢和生理学变化产生重大影响。