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人类组蛋白H4基因编码区的阻遏元件与转录因子CDP/cut相互作用。

Repressor elements in the coding region of the human histone H4 gene interact with the transcription factor CDP/cut.

作者信息

Last T J, Birnbaum M, van Wijnen A J, Stein G S, Stein J L

机构信息

Department of Cell Biology, Unversity of Massachusetts Medical Center, Worchester, MA 01655, USA.

出版信息

Gene. 1998 Oct 23;221(2):267-77. doi: 10.1016/s0378-1119(98)00415-6.

Abstract

The coding region of the human histone H4 gene FO108 undergoes dynamic changes in chromatin structure that correlate with modifications in gene expression. Such structural alterations generally reflect transcription factor interactions with gene regulatory sequences. To test for regulatory elements within the coding region, we performed transient transfection experiments in HeLa cells using constructs with histone H4 sequences fused upstream of a heterologous thymidine kinase promoter and CAT reporter gene. H4 gene sequences from -10 to +210 repressed transcription 4.8-fold. Further deletion and mutational analysis delineated three repressor elements within this region. Using oligonucleotide competition analysis and specific antibody recognition in electrophoretic mobility shift assays, as well as methylation interference and DNase I footprinting analyses, we have identified the CCAAT displacement protein (CDP/cut) as the factor that interacts with these three repressor elements. CDP/cut binding to these repressor sites is proliferation-specific and cell-cycle-regulated, increasing in mid to late S phase. Our results indicate that the proximal 200 nucleotides of the histone H4-coding region contain transcriptional regulatory elements that may contribute to cell-cycle control of histone gene expression by interacting with repressor complexes containing CDP/cut homeodomain transcription factors.

摘要

人类组蛋白H4基因FO108的编码区在染色质结构上经历动态变化,这些变化与基因表达的修饰相关。这种结构改变通常反映了转录因子与基因调控序列的相互作用。为了检测编码区内的调控元件,我们在HeLa细胞中进行了瞬时转染实验,使用的构建体是将组蛋白H4序列融合在异源胸苷激酶启动子和CAT报告基因的上游。从-10到+210的H4基因序列使转录受到4.8倍的抑制。进一步的缺失和突变分析确定了该区域内的三个阻遏元件。通过电泳迁移率变动分析中的寡核苷酸竞争分析和特异性抗体识别,以及甲基化干扰和DNase I足迹分析,我们确定CCAAT位移蛋白(CDP/cut)是与这三个阻遏元件相互作用的因子。CDP/cut与这些阻遏位点的结合具有增殖特异性且受细胞周期调控,在S期中期到后期增加。我们的结果表明,组蛋白H4编码区近端的200个核苷酸包含转录调控元件,这些元件可能通过与含有CDP/cut同源域转录因子的阻遏复合物相互作用,对组蛋白基因表达的细胞周期控制起作用。

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