Tanaka Masatsugu, Ueda Atsuhisa, Kanamori Heiwa, Ideguchi Haruko, Yang Jun, Kitajima Shigetaka, Ishigatsubo Yoshiaki
First Department of Internal Medicine, Yokohama City University School of Medicine, Yokohama 236-0004, Japan.
J Biol Chem. 2002 Mar 22;277(12):10719-26. doi: 10.1074/jbc.M108252200. Epub 2002 Jan 14.
Human aurora A is a serine-threonine kinase that controls various mitotic events. The transcription of aurora A mRNA varies throughout the cell cycle and peaks during G(2)/M. To clarify the transcriptional mechanism, we first cloned the 1.8-kb 5'-flanking region of aurora A including the first exon. Transient expression of aurora A promoter-luciferase constructs containing a series of 5'-truncated sequences or site-directed mutations identified a 7-bp sequence (CTTCCGG) from -85 to -79 as a positive regulatory element. Electromobility shift assays identified the binding of positive regulatory proteins to the CTTCCGG element. Anti-E4TF1-60 antibody generated a supershifted complex. Furthermore, coexpression of E4TF1-60 and E4TF1-53 markedly increased aurora A promoter activity. Synchronized cells transfected with the aurora A promoter-luciferase constructs revealed that the promoter activity of aurora A increased in the S phase and peaked at G(2)/M. In addition, we identified a tandem repressor element, CDE/CHR, just downstream of the CTTCCGG element, and mutation within this element led to a loss of cell cycle regulation. We conclude that the transcription of aurora A is positively regulated by E4TF1, a ubiquitously expressed ETS family protein, and that the CDE/CHR element was essential for the G(2)/M-specific transcription of aurora A.
人极光激酶A是一种丝氨酸-苏氨酸激酶,可控制多种有丝分裂事件。极光激酶A信使核糖核酸的转录在整个细胞周期中有所变化,并在G(2)/M期达到峰值。为了阐明转录机制,我们首先克隆了极光激酶A的1.8 kb 5'-侧翼区,包括第一个外显子。含有一系列5'-截短序列或定点突变的极光激酶A启动子-荧光素酶构建体的瞬时表达确定了从-85至-79的一个7碱基序列(CTTCCGG)为正调控元件。电泳迁移率变动分析确定了正调控蛋白与CTTCCGG元件的结合。抗E4TF1-60抗体产生了一个超迁移复合物。此外,E4TF1-60和E4TF1-53的共表达显著增加了极光激酶A启动子活性。用极光激酶A启动子-荧光素酶构建体转染的同步化细胞显示,极光激酶A的启动子活性在S期增加,并在G(2)/M期达到峰值。此外,我们在CTTCCGG元件的下游鉴定出一个串联抑制元件CDE/CHR,该元件内的突变导致细胞周期调控丧失。我们得出结论,极光激酶A的转录受E4TF1(一种普遍表达的ETS家族蛋白)的正调控,并且CDE/CHR元件对于极光激酶A的G(2)/M特异性转录至关重要。