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CDP和AP-2介导的依赖复制的仓鼠组蛋白H3.2启动子的抑制机制。

CDP and AP-2 mediated repression mechanism of the replication-dependent hamster histone H3.2 promoter.

作者信息

Wu Frank, Lee Amy S

机构信息

Department of Biochemistry and Molecular Biology, USC/Norris Comprehensive Cancer Center, Keck School of Medicine of the University of Southern California, Los Angeles, California 90089-9176, USA.

出版信息

J Cell Biochem. 2002;84(4):699-707. doi: 10.1002/jcb.10094.

Abstract

The replication-dependent hamster histone H3.2 promoter contains two tandem CCAAT repeats located upstream of the TATA element. It has been shown that the NF-Y/CBF complex binds to a single CCAAT motif with high affinity, whereas the CCAAT displacement protein (CDP) binds to at least two CCAAT motifs in close proximity. Here, we report that the two CCAAT motifs within the H3.2 promoter confer transcriptional repression of the promoter during the cell cycle. While we cannot detect direct association of CDP with Rb in vitro, we discover that CDP can bind AP-2, a ubiquitous factor that interacts with Rb. The interaction domains between CDP and AP-2 are mapped to the highly conserved cut repeats of CDP as well as the basic and dimerization region of AP-2. Further, in transfection assays, CDP and AP-2 act synergistically to suppress the H3.2 promoter. Together, these data support a repression mechanism mediated by CDP and AP-2 that regulates H3.2 gene expression during the mammalian cell cycle.

摘要

依赖复制的仓鼠组蛋白H3.2启动子在TATA元件上游含有两个串联的CCAAT重复序列。研究表明,NF-Y/CBF复合物以高亲和力结合单个CCAAT基序,而CCAAT置换蛋白(CDP)则结合至少两个紧密相邻的CCAAT基序。在此,我们报告H3.2启动子内的两个CCAAT基序在细胞周期中赋予该启动子转录抑制作用。虽然我们在体外无法检测到CDP与Rb的直接关联,但我们发现CDP可以结合AP-2,一种与Rb相互作用的普遍存在的因子。CDP与AP-2之间的相互作用结构域被定位到CDP高度保守的切割重复序列以及AP-2的碱性和二聚化区域。此外,在转染实验中,CDP和AP-2协同作用以抑制H3.2启动子。总之,这些数据支持一种由CDP和AP-2介导的抑制机制,该机制在哺乳动物细胞周期中调节H3.2基因表达。

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