Department of Biological Sciences, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, Korea.
J Neurochem. 2007 Dec;103(6):2565-74. doi: 10.1111/j.1471-4159.2007.04947.x.
Brain-specific homeobox (Bsx) is specifically expressed at the early embryonic stages during brain development. Several studies show that Bsx plays important roles in brain development; however, the mechanisms of its transcriptional regulation remain to be established. In this study, we show that binding of repressor element silencing transcription factor (REST) to the neuron restrictive silencer element (NRSE) represses Bsx transcription in non-neuronal P19 cells. The Bsx promoter contains several putative binding sites for transcription factors, including NRSE for REST and the GC box for the transcriptional activator, Sp1. Upon neuronal differentiation of P19 cells with retinoic acid, Bsx gene expression increased, whereas that of the REST gene decreased. Electrophoretic mobility shift analyses demonstrated that recombinant REST proteins bound the NRSE region of the Bsx promoter. In neuronal NS20Y cells, transcriptional activity of the Bsx promoter was decreased upon expression of REST. Moreover, dominant-negative REST derepressed Bsx transcription in P19 cells. Sp1-mediated transcriptional activity of the Bsx promoter was attenuated by treatment with mithramycin A, a GC box-binding drug, but was enhanced upon mutation of NRSE. Co-immunoprecipitation and chromatin immunoprecipitation assays showed that the Bsx promoter appeared to be modulated by direct interactions between REST and Sp1. The CpG sites of NRSE and GC box were completely unmethylated, signifying no interference of DNA methylation. Our results suggest that binding of REST to NRSE suppresses the Sp1-mediated activation of Bsx in non-neuronal cells.
脑特异性同源盒(Bsx)在脑发育的早期胚胎阶段特异性表达。多项研究表明,Bsx 在脑发育中发挥重要作用;然而,其转录调控的机制仍有待确定。在这项研究中,我们表明,抑制元件沉默转录因子(REST)与神经元限制沉默元件(NRSE)结合,抑制非神经元 P19 细胞中的 Bsx 转录。Bsx 启动子包含几个潜在的转录因子结合位点,包括 NRSE 结合 REST 和 GC 盒结合转录激活因子 Sp1。用维甲酸诱导 P19 细胞向神经元分化时,Bsx 基因表达增加,而 REST 基因表达减少。电泳迁移率变动分析表明,重组 REST 蛋白结合 Bsx 启动子的 NRSE 区域。在神经元 NS20Y 细胞中,表达 REST 后 Bsx 启动子的转录活性降低。此外,显性负性 REST 使 P19 细胞中的 Bsx 转录去抑制。米托蒽醌 A,一种 GC 盒结合药物,可减弱 Sp1 介导的 Bsx 启动子的转录活性,但突变 NRSE 后可增强其活性。共免疫沉淀和染色质免疫沉淀实验表明,Bsx 启动子似乎通过 REST 和 Sp1 之间的直接相互作用进行调节。NRSE 和 GC 盒的 CpG 位点完全未甲基化,表明 DNA 甲基化没有干扰。我们的结果表明,REST 与 NRSE 的结合抑制了非神经元细胞中 Sp1 介导的 Bsx 激活。