Gupta Sunita, Luong Mai X, Bleuming Sylvia A, Miele Angela, Luong Michael, Young Daniel, Knudsen Erik S, Van Wijnen Andre J, Stein Janet L, Stein Gary S
Department of Cell Biology and Cancer Center, University of Massachusetts Medical School, Worcester 01655, USA.
J Cell Physiol. 2003 Sep;196(3):541-56. doi: 10.1002/jcp.10335.
The CCAAT displacement protein (CDP-cut/CUTL1/cux) performs a key proliferation-related function as the DNA binding subunit of the cell cycle controlled HiNF-D complex. HiNF-D interacts with all five classes (H1, H2A, H2B, H3, and H4) of the cell-cycle dependent histone genes, which are transcriptionally and coordinately activated at the G(1)/S phase transition independent of E2F. The tumor suppressor pRB/p105 is an intrinsic component of the HiNF-D complex. However, the molecular interactions that enable CDP and pRB to form a complex and thus convey cell growth regulatory information onto histone gene promoters must be further defined. Using transient transfections, we show that CDP represses the H4 gene promoter and that pRB functions with CDP as a co-repressor. Direct physical interaction between CDP and pRB was observed in glutathione-S-transferase (GST) pull-down assays. Furthermore, interactions between these proteins were established by yeast and mammalian two-hybrid experiments and co-immunoprecipitation assays. Confocal microscopy shows that subsets of each protein are co-localized in situ. Using a series of pRB mutants, we find that the CDP/pRB interaction, similar to the E2F/pRB interaction, utilizes the A/B large pocket (LP) of pRB. Thus, several converging lines of evidence indicate that complexes between CDP and pRB repress cell cycle regulated histone gene promoters.
CCAAT 位移蛋白(CDP-cut/CUTL1/cux)作为细胞周期调控的 HiNF-D 复合物的 DNA 结合亚基,发挥着关键的增殖相关功能。HiNF-D 与细胞周期依赖性组蛋白基因的所有五类(H1、H2A、H2B、H3 和 H4)相互作用,这些基因在 G(1)/S 期转换时被转录并协同激活,且不依赖于 E2F。肿瘤抑制因子 pRB/p105 是 HiNF-D 复合物的固有成分。然而,使得 CDP 和 pRB 形成复合物并因此将细胞生长调节信息传递到组蛋白基因启动子上的分子相互作用,仍有待进一步明确。通过瞬时转染,我们发现 CDP 抑制 H4 基因启动子,且 pRB 作为共抑制因子与 CDP 共同发挥作用。在谷胱甘肽 - S - 转移酶(GST)下拉实验中观察到了 CDP 和 pRB 之间的直接物理相互作用。此外,通过酵母双杂交和哺乳动物双杂交实验以及免疫共沉淀实验确定了这些蛋白质之间的相互作用。共聚焦显微镜显示每种蛋白质的亚群在原位共定位。使用一系列 pRB 突变体,我们发现 CDP/pRB 相互作用与 E2F/pRB 相互作用类似,利用了 pRB 的 A/B 大口袋(LP)。因此,多条相互印证的证据表明 CDP 和 pRB 之间的复合物抑制细胞周期调控的组蛋白基因启动子。