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细胞周期中组蛋白基因表达的调控

Regulation of histone gene expression during the cell cycle.

作者信息

Meshi T, Taoka K I, Iwabuchi M

机构信息

Department of Botany, Graduate School of Science, Kyoto University, Japan.

出版信息

Plant Mol Biol. 2000 Aug;43(5-6):643-57. doi: 10.1023/a:1006421821964.

Abstract

The steady-state level of histone mRNAs fluctuates coordinately with chromosomal DNA synthesis during the cell cycle. Such an S phase-specific expression pattern results from transcriptional activation of histone genes coupled with the onset of replication and from transcriptional repression of the genes as well as specific destabilization of histone mRNAs around the end of the S phase. Proliferation-coupled and S phase-specific expression of histone genes is primarily achieved by the activities of the proximal promoter regions, where several conserved cis-acting elements have been identified. Among them, three kinds of Oct-containing composite elements (OCEs) play a pivotal role in S phase-specific transcriptional activation. Other ones, such as Nona, solo-Oct, and CCGTC motifs, appear to modulate the functions of OCEs to enhance or repress the transcriptional level, possibly depending on the state of the cells. Here, we review the growing evidence concerning the regulatory mechanisms by which plant histone genes are expressed S phase-specifically in proliferating cells.

摘要

在细胞周期中,组蛋白mRNA的稳态水平与染色体DNA合成协同波动。这种S期特异性表达模式源于组蛋白基因在复制开始时的转录激活,以及基因的转录抑制,还有S期末期左右组蛋白mRNA的特异性去稳定化。组蛋白基因的增殖偶联和S期特异性表达主要通过近端启动子区域的活性来实现,在该区域已鉴定出几种保守的顺式作用元件。其中,三种含Oct的复合元件(OCEs)在S期特异性转录激活中起关键作用。其他元件,如Nona、单独的Oct和CCGTC基序,似乎调节OCEs的功能以增强或抑制转录水平,这可能取决于细胞状态。在这里,我们综述了越来越多的证据,这些证据涉及植物组蛋白基因在增殖细胞中S期特异性表达的调控机制。

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