Honda Satoshi, Kobayashi Toshiyuki, Kajino Kazunori, Urakami Shinji, Igawa Mikio, Hino Okio
Department of Urology, Shimane Medical University, Shimane, Japan.
Mol Carcinog. 2003 Jul;37(3):122-9. doi: 10.1002/mc.10123.
Alterations in the rat tuberous sclerosis gene (Tsc2) cause renal cell carcinomas (RCCs) with complete penetrance. In this study, it was shown that the minimal core promoters of the rat Tsc2 and endonuclease III 1 (Nth1) genes, lying in a 5'-to-5' arrangement, were localized in a 0.11-kb region containing two Ets binding sites (EBSs). This region worked as a bidirectional promoter in a single reporter plasmid. Mutational inactivation of each of the two EBSs significantly reduced promoter activity. Moreover, gel shift assays revealed the presence of specific EBSs-protein complexes. These results demonstrate that some members of the Ets family positively regulate the promoter activities of the Tsc2/Nth1 genes by binding to the EBSs. We identified Elf-1 as a binding factor for EBSs through super-shift assays, and detected approximately 35 kDa bands with an EBSs-containing DNA probe by Southwestern blot analysis. Forced expression of Elf-1 in cells, however, bidirectionally suppressed the activities of the Tsc2/Nth1 promoters. Elf-1 may be a negative regulator of Tsc2/Nth1 gene expression and may compete against positive regulators for binding to the EBSs. Our observations suggest that mechanisms that inactivate Tsc2 gene expression, such as promoter suppression, may exist.
大鼠结节性硬化症基因(Tsc2)的改变会导致完全显性的肾细胞癌(RCC)。在本研究中,结果表明,大鼠Tsc2基因和核酸内切酶III 1(Nth1)基因的最小核心启动子以5'至5'排列,定位在一个包含两个Ets结合位点(EBS)的0.11 kb区域内。该区域在单个报告质粒中作为双向启动子起作用。两个EBS中的每一个的突变失活均显著降低启动子活性。此外,凝胶迁移试验揭示了特异性EBS-蛋白质复合物的存在。这些结果表明,Ets家族的一些成员通过与EBS结合来正向调节Tsc2/Nth1基因的启动子活性。我们通过超迁移试验鉴定出Elf-1作为EBS的结合因子,并通过蛋白质印迹分析用含EBS的DNA探针检测到约35 kDa的条带。然而,在细胞中强制表达Elf-1会双向抑制Tsc2/Nth1启动子的活性。Elf-1可能是Tsc2/Nth1基因表达的负调节因子,并且可能与正调节因子竞争与EBS的结合。我们的观察结果表明,可能存在使Tsc2基因表达失活的机制,例如启动子抑制。