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CDE/CHR 启动子元件在细胞周期依赖性基因转录调控中的核心作用。

The central role of CDE/CHR promoter elements in the regulation of cell cycle-dependent gene transcription.

机构信息

Molecular Oncology, Department of Obstetrics and Gynecology, University of Leipzig, Germany.

出版信息

FEBS J. 2010 Feb;277(4):877-93. doi: 10.1111/j.1742-4658.2009.07508.x. Epub 2009 Dec 15.

Abstract

The cell cycle-dependent element (CDE) and the cell cycle genes homology region (CHR) control the transcription of genes with maximum expression in G(2) phase and in mitosis. Promoters of these genes are repressed by proteins binding to CDE/CHR elements in G(0) and G(1) phases. Relief from repression begins in S phase and continues into G(2) phase and mitosis. Generally, CDE sites are located four nucleotides upstream of CHR elements in TATA-less promoters of genes such as Cdc25C, Cdc2 and cyclin A. However, expression of some other genes, such as human cyclin B1 and cyclin B2, has been shown to be controlled only by a CHR lacking a functional CDE. To date, it is not fully understood which proteins bind to and control CDE/CHR-containing promoters. Recently, components of the DREAM complex were shown to be involved in CDE/CHR-dependent transcriptional regulation. In addition, the expression of genes regulated by CDE/CHR elements is mostly achieved through CCAAT-boxes, which bind heterotrimeric NF-Y proteins as well as the histone acetyltransferase p300. Importantly, many CDE/CHR promoters are downregulated by the tumor suppressor p53. In this review, we define criteria for CDE/CHR-regulated promoters and propose to distinguish two classes of CDE/CHR-regulated genes. The regulation through transcription factors potentially binding to the CDE/CHR is discussed, and recently discovered links to central pathways regulated by E2F, the pRB family and p53 are highlighted.

摘要

细胞周期依赖性元件 (CDE) 和细胞周期基因同源区 (CHR) 控制最大程度在 G2 期和有丝分裂中表达的基因的转录。这些基因的启动子在 G0 和 G1 期被结合到 CDE/CHR 元件的蛋白质抑制。抑制作用的缓解始于 S 期,并持续到 G2 期和有丝分裂。通常,CDE 位点位于 TATA 缺失的基因如 Cdc25C、Cdc2 和细胞周期蛋白 A 的启动子中 CHR 元件的上游四个核苷酸处。然而,已经表明一些其他基因,如人细胞周期蛋白 B1 和细胞周期蛋白 B2 的表达仅受缺乏功能 CDE 的 CHR 控制。迄今为止,尚不完全清楚哪些蛋白质结合并控制含 CDE/CHR 的启动子。最近,DREAM 复合物的成分被证明参与 CDE/CHR 依赖性转录调控。此外,受 CDE/CHR 元件调节的基因的表达主要通过 CCAAT 盒实现,CCAAT 盒结合异源三聚体 NF-Y 蛋白以及组蛋白乙酰转移酶 p300。重要的是,许多 CDE/CHR 启动子被肿瘤抑制因子 p53 下调。在这篇综述中,我们定义了 CDE/CHR 调节的启动子的标准,并提出区分 CDE/CHR 调节基因的两类。讨论了潜在结合 CDE/CHR 的转录因子的调节作用,并强调了最近发现的与 E2F、pRB 家族和 p53 调节的中央途径的联系。

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