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细胞周期蛋白E基因表达的时间取决于一个二分抑制元件与一种新型E2F复合物的调控性结合。

Timing of cyclin E gene expression depends on the regulated association of a bipartite repressor element with a novel E2F complex.

作者信息

Le Cam L, Polanowska J, Fabbrizio E, Olivier M, Philips A, Ng Eaton E, Classon M, Geng Y, Sardet C

机构信息

Institut de Génétique Moléculaire, UMR 5535, CNRS, 1919 route de Mende, 34293, Montpellier cedex 5, France.

出版信息

EMBO J. 1999 Apr 1;18(7):1878-90. doi: 10.1093/emboj/18.7.1878.

Abstract

Transient induction of the cyclin E gene in late G1 gates progression into S. We show that this event is controlled via a cyclin E repressor module (CERM), a novel bipartite repressor element located near the cyclin E transcription start site. CERM consists of a variant E2F-binding site and a contiguous upstream AT-rich sequence which cooperate during G0/G1 to delay cyclin E expression until late G1. CERM binds the protein complex CERC, which disappears upon progression through G0-G1 and reappears upon entry into the following G1. CERC disappearance correlates kinetically with the liberation of the CERM module in vivo and cyclin E transcriptional induction. CERC contains E2F4/DP1 and a pocket protein, and sediments faster than classical E2F complexes in a glycerol gradient, suggesting the presence of additional components in a novel high molecular weight complex. Affinity purified CERC binds to CERM but not to canonical E2F sites, thus displaying behavior different from known E2F complexes. In cells nullizygous for members of the Rb family, CERC is still detectable and CERM-dependent repression is functional. Thus p130, p107 and pRb function interchangeably in CERC. Notably, the CERC-CERM complex dissociates prematurely in pRb-/- cells in correspondence with the premature expression of cyclin E. Thus, we identify a new regulatory module that controls repression of G1-specific genes in G0/G1.

摘要

细胞周期蛋白E基因在G1晚期的短暂诱导控制着细胞进入S期。我们发现这一事件是通过一个细胞周期蛋白E阻遏模块(CERM)来控制的,CERM是位于细胞周期蛋白E转录起始位点附近的一个新型双组分阻遏元件。CERM由一个变异的E2F结合位点和一个相邻的上游富含AT的序列组成,它们在G0/G1期协同作用,延迟细胞周期蛋白E的表达直到G1晚期。CERM与蛋白复合物CERC结合,CERC在细胞通过G0-G1期时消失,在进入下一个G1期时重新出现。CERC的消失在动力学上与体内CERM模块的释放和细胞周期蛋白E的转录诱导相关。CERC包含E2F4/DP1和一种口袋蛋白,在甘油梯度中沉降速度比经典的E2F复合物快,这表明在一种新型的高分子量复合物中存在其他成分。亲和纯化的CERC与CERM结合,但不与经典的E2F位点结合,因此表现出与已知E2F复合物不同的行为。在Rb家族成员基因缺失的细胞中,CERC仍然可以检测到,并且CERM依赖的阻遏功能仍然存在。因此,p130、p107和pRb在CERC中功能可互换。值得注意的是,在pRb-/-细胞中,CERC-CERM复合物过早解离,这与细胞周期蛋白E的过早表达相对应。因此,我们鉴定出一个新的调控模块,它在G0/G1期控制G1特异性基因的阻遏。

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