Wu Xing, Lee Hoyun
Northeastern Ontario Regional Cancer Centre, Sudbury, Ontario P3E 5J1, Canada.
Oncogene. 2002 Nov 7;21(51):7786-96. doi: 10.1038/sj.onc.1205914.
Dbf4 is the regulatory subunit of Cdc7 kinase, which is essential for entry into and traversing through S phase. The level of Dbf4, which is critical for the activation of Cdc7, is regulated by transcription and protein degradation. To gain a better understanding as to how the transcription of human Dbf4 (HuDbf4) is regulated, we have cloned and characterized its promoter. We found that HuDbf4 core promoter is localized within (-)211 to -285 of the translation start-codon. This 75 bp DNA segment contains, among others, a putative MluI Cell-cycle Box (MCB). A point mutation within the MCB dramatically reduced the promoter activity. This is the first example that an MCB element plays an essential role in the activation of a core promoter in mammalian cells. The auxiliary elements required for the full promoter activity are present within 162-bp upstream from the core promoter (i.e., -286/-447). A point mutation within the Sp1 element at -353/-361 resulted in a decrease of promoter activity to the basal level, while the deletion of the putative HES-1 at -326/-331 dramatically increased the promoter activity. Taken together, our data suggests that the MCB element is essential for the core promoter activation, while the Sp1 positive regulator and the HES-1 repressor coordinately determine the efficiency of the HuDbf4 promoter. We have also found: (i) that the major transcription initiations occur at -220, -235 and -245; (ii) that HuDbf4 gene consists of 12 exons, which spread over a 33-kb region.
Dbf4是Cdc7激酶的调节亚基,对进入和穿越S期至关重要。Dbf4的水平对于Cdc7的激活至关重要,其受转录和蛋白质降解的调节。为了更好地了解人类Dbf4(HuDbf4)的转录是如何调控的,我们克隆并鉴定了其启动子。我们发现HuDbf4核心启动子位于翻译起始密码子的(-)211至-285之间。这个75bp的DNA片段除其他外,包含一个假定的MluI细胞周期盒(MCB)。MCB内的一个点突变显著降低了启动子活性。这是MCB元件在哺乳动物细胞中核心启动子激活中起关键作用的第一个例子。完整启动子活性所需的辅助元件存在于核心启动子上游162bp内(即-286/-447)。-353/-361处Sp1元件内的一个点突变导致启动子活性降至基础水平,而-326/-331处假定的HES-1缺失则显著增加了启动子活性。综上所述,我们的数据表明MCB元件对于核心启动子激活至关重要,而Sp1正调节因子和HES-1阻遏因子共同决定HuDbf4启动子的效率。我们还发现:(i)主要转录起始发生在-220、-235和-245;(ii)HuDbf4基因由12个外显子组成,分布在一个33kb的区域。