Cram E J, Liu B D, Bjeldanes L F, Firestone G L
Department of Molecular and Cell Biology, the Cancer Research Laboratory, University of California, Berkeley, California 94720, USA.
J Biol Chem. 2001 Jun 22;276(25):22332-40. doi: 10.1074/jbc.M010539200. Epub 2001 Apr 10.
Indole-3-carbinol (I3C), a compound naturally occurring in Brassica vegetables, can induce a G(1) cell cycle arrest of human MCF-7 breast cancer cells that is accompanied by the selective inhibition of cyclin-dependent kinase 6 (CDK6) expression. Reverse transcriptase-polymerase chain reaction analysis of CDK6 mRNA decay rates revealed that I3C had no effect on CDK6 transcript stability. We report the first identification and functional characterization of the CDK6 promoter in order to determine whether I3C inhibits CDK6 transcription. In MCF-7 cells stably transfected with CDK6 promoter-linked luciferase reporter plasmids, I3C inhibited CDK6 promoter activity in an I3C-specific response that was not a consequence of the growth-arrested state of the cells. Deletion analysis revealed a 167-base pair I3C-responsive region of the CDK6 promoter between -805 and -638. Site-specific mutations within this region revealed that both Sp1 and Ets-like sites, which are spaced 5 base pairs apart, were necessary for I3C responsiveness in the context of the CDK6 promoter. Electrophoretic mobility shift analysis of protein-DNA complexes formed with nuclear proteins isolated from I3C-treated and -untreated cells, in combination with supershift assays using Sp1 antibodies, demonstrated that the Sp1-binding site in the CDK6 promoter forms a specific I3C-responsive DNA-protein complex that contains the Sp1 transcription factor. Taken together, our results suggest that I3C down-regulates CDK6 transcription by targeting Sp1 at a composite DNA site in the CDK6 promoter.
吲哚 - 3 - 甲醇(I3C)是一种天然存在于十字花科蔬菜中的化合物,它可诱导人MCF - 7乳腺癌细胞发生G1期细胞周期阻滞,并伴有细胞周期蛋白依赖性激酶6(CDK6)表达的选择性抑制。对CDK6 mRNA降解速率的逆转录聚合酶链反应分析表明,I3C对CDK6转录本稳定性没有影响。我们首次鉴定了CDK6启动子并对其进行功能表征,以确定I3C是否抑制CDK6转录。在稳定转染了与CDK6启动子相连的荧光素酶报告质粒的MCF - 7细胞中,I3C以I3C特异性反应抑制CDK6启动子活性,这并非细胞生长停滞状态的结果。缺失分析揭示了CDK6启动子在 - 805至 - 638之间有一个167个碱基对的I3C反应区域。该区域内的位点特异性突变表明,间隔5个碱基对的Sp1和Ets样位点对于CDK6启动子背景下的I3C反应性都是必需的。对从I3C处理和未处理细胞中分离的核蛋白形成的蛋白质 - DNA复合物进行电泳迁移率变动分析,并结合使用Sp1抗体的超迁移分析,表明CDK6启动子中的Sp1结合位点形成了一种特定的I3C反应性DNA - 蛋白质复合物,其中包含Sp1转录因子。综上所述,我们的结果表明,I3C通过在CDK6启动子的复合DNA位点靶向Sp1来下调CDK6转录。