Hu Qianghua, Bhattacharya Chitralekha, Maity Sankar N
Department of Molecular Genetics, The University of Texas, M. D. Anderson Cancer Center, Houston, Texas 77030, USA.
J Biol Chem. 2002 Oct 4;277(40):37191-200. doi: 10.1074/jbc.M205985200. Epub 2002 Jul 30.
To understand the role of the CCAAT binding factor (CBF) in transcription during the cell cycle, we studied the mouse topoisomerase II alpha (topo II alpha) promoter, which is activated during the late S and G(2)/M phases of the cell cycle and contains multiple CBF binding sites. Mutational analysis of the promoter shows that CBF binding to an inverted orientation of the CCAAT motif in the topo II alpha promoter, but not to a direct orientation, is required for transcription activation during the cell cycle. In contrast, analysis of the promoter in an in vitro reconstituted transcription system shows that CBF activates transcription of the topo II alpha promoter irrespective of the orientation of the CBF binding sites. This analysis demonstrates that only one of the three transcription start sites of the topo II alpha promoter is stimulated by CBF, indicating that transcription activation by CBF is dependent on basal promoter structure. Interestingly, mutations of the start site that abolish CBF-dependent transcription activation in vitro do not inhibit activation of the promoter during the cell cycle. Consistent with this observation, expression of a truncated CBF-B subunit lacking a transcription activation domain, which inhibits activity of a collagen promoter, does not affect activity of the topo II alpha promoter in fibroblast cells. In contrast, expression of an allele-specific CBF-B mutant that binds high affinity to a mutant CBF binding site containing a CCAAC motif revives transcription activation of an inactive mutant topo II alpha promoter containing CCAAC during the cell cycle. Altogether, this study indicates that CBF binding, but not conventional CBF activation domains, are required for activation of the topo II alpha promoter during the cell cycle. Considering these results together with results of another recent study, we hypothesize that binding of CBF that disrupts the nucleosomal structure in the topo II alpha promoter is a major function of CBF by which it regulates the cell cycle-dependent transcription of the topo II alpha promoter and possibly many other cell cycle-regulated promoters containing CBF binding sites.
为了解CCAAT结合因子(CBF)在细胞周期转录过程中的作用,我们研究了小鼠拓扑异构酶IIα(topo IIα)启动子,该启动子在细胞周期的S期晚期和G(2)/M期被激活,且含有多个CBF结合位点。对该启动子的突变分析表明,在细胞周期中,转录激活需要CBF与topo IIα启动子中CCAAT基序的反向排列结合,而不是正向排列。相反,在体外重组转录系统中对该启动子的分析表明,无论CBF结合位点的方向如何,CBF都能激活topo IIα启动子的转录。该分析表明,topo IIα启动子的三个转录起始位点中只有一个受到CBF的刺激,这表明CBF介导的转录激活依赖于基础启动子结构。有趣的是,在体外消除CBF依赖性转录激活的起始位点突变,在细胞周期中并不抑制启动子的激活。与此观察结果一致,缺乏转录激活结构域的截短CBF - B亚基的表达可抑制胶原蛋白启动子的活性,但不影响成纤维细胞中topo IIα启动子活性。相反,与含有CCAAC基序的突变CBF结合位点具有高亲和力的等位基因特异性CBF - B突变体的表达,可恢复细胞周期中含有CCAAC的无活性突变topo IIα启动子的转录激活。总之,这项研究表明,在细胞周期中激活topo IIα启动子需要CBF结合,但不需要传统的CBF激活结构域。结合这些结果与另一项近期研究的结果,我们推测,CBF结合破坏了topo IIα启动子中的核小体结构,这是CBF的主要功能,通过该功能它调节topo IIα启动子以及可能许多其他含有CBF结合位点的细胞周期调控启动子的细胞周期依赖性转录。