Department of Life Science and Research Institute for Natural Sciences, College of Natural Sciences, Hanyang University, Seoul, 133-791, Korea.
Nucleic Acids Res. 2010 Sep;38(16):5456-71. doi: 10.1093/nar/gkq286. Epub 2010 Apr 26.
Data presented here extends our previous observations on α-globin transcriptional regulation by the CP2 and PIAS1 proteins. Using RNAi knockdown, we have now shown that CP2b, CP2c and PIAS1 are each necessary for synergistic activation of endogenous α-globin gene expression in differentiating MEL cells. In this system, truncated PIAS1 mutants lacking the ring finger domain recruited CP2c to the nucleus, as did wild-type PIAS1, demonstrating that this is a sumoylation-independent process. In vitro, recombinant CP2c, CP2b and PIAS1 bound DNA as a stable CBP (CP2c/CP2b/PIAS1) complex. Following PIAS1 knockdown in MEL cells, however, the association of endogenous CP2c and CP2b with the α-globin promoter simultaneously decreased. By mapping the CP2b- and CP2c-binding domains on PIAS1, and the PIAS1-binding domains on CP2b and CP2c, we found that two regions of PIAS1 that interact with CP2c/CP2b are required for its co-activator function. We propose that CP2c, CP2b, and PIAS1 form a hexametric complex with two units each of CP2c, CP2b, and PIAS1, in which PIAS1 serves as a clamp between two CP2 proteins, while CP2c binds directly to the target DNA and CP2b mediates strong transactivation.
这里呈现的数据扩展了我们之前关于 CP2 和 PIAS1 蛋白对α-珠蛋白转录调控的观察。通过 RNAi 敲低,我们现在表明 CP2b、CP2c 和 PIAS1 对于分化的 MEL 细胞中内源性α-珠蛋白基因表达的协同激活都是必需的。在这个系统中,缺乏指环结构域的截短 PIAS1 突变体将 CP2c 募集到细胞核中,就像野生型 PIAS1 一样,表明这是一个不需要 SUMO 化的过程。在体外,重组 CP2c、CP2b 和 PIAS1 作为稳定的 CBP(CP2c/CP2b/PIAS1)复合物结合 DNA。然而,在 MEL 细胞中敲低 PIAS1 后,内源性 CP2c 和 CP2b 与α-珠蛋白启动子的结合同时减少。通过在 PIAS1 上绘制 CP2b 和 CP2c 的结合域,以及在 CP2b 和 CP2c 上绘制 PIAS1 的结合域,我们发现与 CP2c/CP2b 相互作用的 PIAS1 的两个区域对于其共激活因子功能是必需的。我们提出 CP2c、CP2b 和 PIAS1 形成一个六聚体复合物,每个 CP2c、CP2b 和 PIAS1 有两个单元,其中 PIAS1 作为两个 CP2 蛋白之间的夹具,而 CP2c 直接结合到靶 DNA 上,CP2b 介导强烈的转录激活。