Satijn D P, Otte A P
E. C. Slater Instituut, BioCentrum Amsterdam, University of Amsterdam, 1018 TV Amsterdam, The Netherlands.
Mol Cell Biol. 1999 Jan;19(1):57-68. doi: 10.1128/MCB.19.1.57.
Polycomb-group (PcG) proteins form large multimeric protein complexes that are involved in maintaining the transcriptionally repressive state of genes. Previously, we reported that RING1 interacts with vertebrate Polycomb (Pc) homologs and is associated with or is part of a human PcG complex. However, very little is known about the role of RING1 as a component of the PcG complex. Here we undertake a detailed characterization of RING1 protein-protein interactions. By using directed two-hybrid and in vitro protein-protein analyses, we demonstrate that RING1, besides interacting with the human Pc homolog HPC2, can also interact with itself and with the vertebrate PcG protein BMI1. Distinct domains in the RING1 protein are involved in the self-association and in the interaction with BMI1. Further, we find that the BMI1 protein can also interact with itself. To better understand the role of RING1 in regulating gene expression, we overexpressed the protein in mammalian cells and analyzed differences in gene expression levels. This analysis shows that overexpression of RING1 strongly represses En-2, a mammalian homolog of the well-characterized Drosophila PcG target gene engrailed. Furthermore, RING1 overexpression results in enhanced expression of the proto-oncogenes c-jun and c-fos. The changes in expression levels of these proto-oncogenes are accompanied by cellular transformation, as judged by anchorage-independent growth and the induction of tumors in athymic mice. Our data demonstrate that RING1 interacts with multiple human PcG proteins, indicating an important role for RING1 in the PcG complex. Further, deregulation of RING1 expression leads to oncogenic transformation by deregulation of the expression levels of certain oncogenes.
多梳家族(PcG)蛋白形成大型多聚体蛋白复合物,参与维持基因的转录抑制状态。此前,我们报道RING1与脊椎动物多梳(Pc)同源物相互作用,并与人类PcG复合物相关或为其一部分。然而,对于RING1作为PcG复合物组分的作用却知之甚少。在此,我们对RING1的蛋白质 - 蛋白质相互作用进行了详细表征。通过使用定向双杂交和体外蛋白质 - 蛋白质分析,我们证明RING1除了与人类Pc同源物HPC2相互作用外,还能与自身以及脊椎动物PcG蛋白BMI1相互作用。RING1蛋白中的不同结构域参与了自缔合以及与BMI1的相互作用。此外,我们发现BMI1蛋白也能与自身相互作用。为了更好地理解RING1在调节基因表达中的作用,我们在哺乳动物细胞中过表达了该蛋白,并分析了基因表达水平的差异。该分析表明,RING1的过表达强烈抑制En - 2,En - 2是特征明确的果蝇PcG靶基因engrailed的哺乳动物同源物。此外,RING1的过表达导致原癌基因c - jun和c - fos的表达增强。根据无锚定依赖性生长和裸鼠肿瘤诱导判断,这些原癌基因表达水平的变化伴随着细胞转化。我们的数据表明RING1与多种人类PcG蛋白相互作用,表明RING1在PcG复合物中起重要作用。此外,RING1表达失调通过某些癌基因表达水平的失调导致致癌转化。