From the Department of Gastrointestinal Surgery, Tumour Hospital of Guangxi Medical University, Nanning, Guangxi 530021, China.
J Biol Chem. 2013 Nov 1;288(44):31930-6. doi: 10.1074/jbc.M113.507038. Epub 2013 Sep 12.
The circadian clock enables organisms to adjust to daily environmental changes and synchronize multiple molecular, biochemical, physiological, and behavioral processes accordingly. In mammalian clock work, Bmal1 is the most important core clock gene, which works with another core clock gene Clock to drive the expression of other clock genes and clock-controlled genes. However, the regulation of Bmal1 has not been fully understood. This work was aimed at identifying the positive regulator(s) of Bmal1 transcription. A series of 5' deletion reporter constructs was generated, and binding site mutations of mouse Bmal1 promoter fragments were cloned into pGL3-basic and pGL3(R2.1)-basic plasmids and transfected into NIH 3T3 cells. Luciferase activity was either measured 48 h after transfection or recorded for 4 days after serum shock. DNA affinity precipitation assay was used to detect the transcription factors binding to Bmal1 promoter. Small interfering RNA against nuclear factor Y, subunit A (NF-YA) and dominant negative NF-YA were employed to study the role of NF-Y in Bmal1 transcription regulation. Deletion and mutation analyses identified two clusters of CCAAT/GC-boxes at the proximal region of Bmal1 promoter as the activating cis-elements. Bmal1 promoter activity was up-regulated by NF-Y and/or Sp1 and repressed by dominant negative NF-YA or siRNA against NF-YA. The activation of Bmal1 promoter activity by NF-Y and Sp1 was inhibited by Rev-Erbα. DNA affinity precipitation assay showed that NF-Y and Sp1 bound to the two CCAAT/GC clusters of Bmal1 promoter. These results indicate that NF-Y is a functional activator of Bmal1 transcription and it cooperates with Sp1 and Rev-Erbα to generate the daily cycle of Bmal1 expression.
生物钟使生物体能够适应日常环境变化,并相应地同步多种分子、生化、生理和行为过程。在哺乳动物的时钟工作中,Bmal1 是最重要的核心时钟基因,它与另一个核心时钟基因 Clock 一起驱动其他时钟基因和时钟控制基因的表达。然而,Bmal1 的调节尚未被完全理解。这项工作旨在确定 Bmal1 转录的正调控因子。生成了一系列 5'缺失报告基因构建体,并将小鼠 Bmal1 启动子片段的结合位点突变克隆到 pGL3-basic 和 pGL3(R2.1)-basic 质粒中,并转染到 NIH 3T3 细胞中。转染 48 小时后测量荧光素酶活性,或血清休克后 4 天记录荧光素酶活性。使用 DNA 亲和沉淀测定法检测与 Bmal1 启动子结合的转录因子。使用针对核因子 Y,亚单位 A(NF-YA)的小干扰 RNA 和显性负性 NF-YA 研究 NF-Y 在 Bmal1 转录调节中的作用。缺失和突变分析确定了 Bmal1 启动子近端区域的两个 CCAAT/GC 盒簇作为激活顺式元件。NF-Y 和/或 Sp1 上调 Bmal1 启动子活性,并被显性负性 NF-YA 或针对 NF-YA 的 siRNA 抑制。NF-Y 和 Sp1 对 Bmal1 启动子活性的激活被 Rev-Erbα 抑制。DNA 亲和沉淀测定显示 NF-Y 和 Sp1 结合到 Bmal1 启动子的两个 CCAAT/GC 簇。这些结果表明 NF-Y 是 Bmal1 转录的功能性激活剂,它与 Sp1 和 Rev-Erbα 合作产生 Bmal1 表达的日常周期。