Bu Youquan, Suenaga Yusuke, Ono Sayaka, Koda Tadayuki, Song Fangzhou, Nakagawara Akira, Ozaki Toshinori
Division of Biochemistry, Chiba Cancer Center Research Institute, Chiba 260-8717, Japan.
Genes Cells. 2008 Jan;13(1):53-66. doi: 10.1111/j.1365-2443.2007.01144.x.
NFBD1/MDC1 is a large nuclear protein with an anti-apoptotic potential which participates in DNA damage response. Recently, we have demonstrated that NFBD1 has an inhibitory effect on pro-apoptotic p53 and DNA damage-induced transcriptional repression of NFBD1 plays an important role in p53-dependent apoptotic response. In this study, we have found that NFBD1 promoter region contains canonical Sp1-, STAT-1- and NF-Y-binding sites and finally we have identified Sp1 as a transcriptional activator for NFBD1. The 5'-RACE and bioinformatic analyses revealed that NFBD1 encodes at least four transcriptional variants arising from distinct transcriptional start sites. Luciferase reporter assays using a series of NFBD1 promoter deletion mutants demonstrated that the proximal Sp1-binding site is required for the transcriptional activation of NFBD1. Indeed, the endogenous Sp1 was recruited onto the proximal Sp1-binding site as examined by chromatin immunoprecipitation (ChIP) assay and siRNA-mediated knockdown of the endogenous Sp1 in HeLa cells reduced the expression levels of NFBD1, which renders cells sensitive to adriamycin (ADR). In support of this notion, mithramycin A (MA, Sp1 inhibitor) treatment resulted in a significant down-regulation of NFBD1. Taken together, our present findings suggest that Sp1-mediated transcriptional regulation of NFBD1 plays an important role in the regulation of DNA damage response.
NFBD1/MDC1是一种具有抗凋亡潜能的大型核蛋白,参与DNA损伤反应。最近,我们证明NFBD1对促凋亡的p53具有抑制作用,并且NFBD1的DNA损伤诱导的转录抑制在p53依赖性凋亡反应中起重要作用。在本研究中,我们发现NFBD1启动子区域包含典型的Sp1、STAT-1和NF-Y结合位点,最终我们确定Sp1是NFBD1的转录激活因子。5'-RACE和生物信息学分析表明,NFBD1编码至少四种源自不同转录起始位点的转录变体。使用一系列NFBD1启动子缺失突变体的荧光素酶报告基因检测表明,近端Sp1结合位点是NFBD1转录激活所必需的。实际上,通过染色质免疫沉淀(ChIP)分析检测到内源性Sp1被募集到近端Sp1结合位点上,并且在HeLa细胞中通过siRNA介导的内源性Sp1敲低降低了NFBD1的表达水平,这使得细胞对阿霉素(ADR)敏感。支持这一观点的是,光神霉素A(MA,Sp1抑制剂)处理导致NFBD1显著下调。综上所述,我们目前的研究结果表明,Sp1介导的NFBD1转录调控在DNA损伤反应的调节中起重要作用。