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人极光激酶A转录的细胞周期依赖性调控由E4TF1的周期性抑制介导。

Cell-cycle-dependent regulation of human aurora A transcription is mediated by periodic repression of E4TF1.

作者信息

Tanaka Masatsugu, Ueda Atsuhisa, Kanamori Heiwa, Ideguchi Haruko, Yang Jun, Kitajima Shigetaka, Ishigatsubo Yoshiaki

机构信息

First Department of Internal Medicine, Yokohama City University School of Medicine, Yokohama 236-0004, Japan.

出版信息

J Biol Chem. 2002 Mar 22;277(12):10719-26. doi: 10.1074/jbc.M108252200. Epub 2002 Jan 14.

Abstract

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.

摘要

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。

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