Yokota Kenichi, Shibata Hirotaka, Kurihara Isao, Kobayashi Sakiko, Suda Noriko, Murai-Takeda Ayano, Saito Ikuo, Kitagawa Hirochika, Kato Shigeaki, Saruta Takao, Itoh Hiroshi
Department of Internal Medicine, School of Medicine, Keio University, Tokyo, Japan.
J Biol Chem. 2007 Jan 19;282(3):1998-2010. doi: 10.1074/jbc.M607741200. Epub 2006 Nov 14.
Molecular mechanisms underlying mineralocorticoid receptor (MR)-mediated gene expression are not fully understood. Various transcription factors are post-translationally modified by small ubiquitin-related modifier-1 (SUMO-1). We investigated the role of the SUMO-1-conjugating enzyme Ubc9 in MR transactivation. Yeast two-hybrid, GST-pulldown, and coimmunoprecipitation assays showed that Ubc9 interacted with N-terminal MR-(1-670). Endogenous Ubc9 is associated with stably expressing MR in 293-MR cells. Transient transfection assays in COS-1 cells showed that Ubc9 increased MR transactivation of reporter constructs containing MRE, ENaC, or MMTV promoter in a hormone-sensitive manner. Moreover, reduction of Ubc9 protein levels by small interfering RNA attenuated hormonal activation of a reporter construct as well as an endogenous target gene by MR. A sumoylation-inactive mutant Ubc9(C93S) similarly interacted with MR and potentiated aldosterone-dependent MR transactivation. An MR mutant in which four lysine residues within sumoylation motifs were mutated into arginine (K89R/K399R/K494R/K953R) failed to be sumoylated, but Ubc9 similarly enhanced transactivation by the mutant MR, indicating that sumoylation activity is dispensable for coactivation capacity of Ubc9. Coexpression of Ubc9 and steroid receptor coactivator-1 (SRC-1) synergistically enhanced MR-mediated transactivation in transient transfection assays. Indeed, chromatin immunoprecipitation assays demonstrated that endogenous MR, Ubc9, and SRC-1 were recruited to an endogenous ENaC gene promoter in a largely aldosterone-dependent manner. Coimmunoprecipitation assays showed a complex of MR, Ubc9, and SRC-1 in mammalian cells, and the endogenous proteins were colocalized in the nuclei of the mouse collecting duct cells. These findings support a physiological role of Ubc9 as a transcriptional MR coactivator, beyond the known SUMO E2-conjugating enzyme.
盐皮质激素受体(MR)介导的基因表达的分子机制尚未完全明确。多种转录因子会被小泛素相关修饰物1(SUMO-1)进行翻译后修饰。我们研究了SUMO-1缀合酶Ubc9在MR反式激活中的作用。酵母双杂交、GST下拉和免疫共沉淀实验表明,Ubc9与MR的N端(1-670)相互作用。内源性Ubc9与293-MR细胞中稳定表达的MR相关联。在COS-1细胞中进行的瞬时转染实验表明,Ubc9以激素敏感的方式增强了含有MRE、ENaC或MMTV启动子的报告基因构建体的MR反式激活。此外,小干扰RNA降低Ubc9蛋白水平会减弱报告基因构建体以及MR对内源性靶基因的激素激活。一种SUMO化无活性突变体Ubc9(C93S)同样与MR相互作用并增强醛固酮依赖性MR反式激活。一种将SUMO化基序内的四个赖氨酸残基突变为精氨酸的MR突变体(K89R/K399R/K494R/K953R)无法被SUMO化,但Ubc9同样增强了该突变体MR的反式激活,这表明SUMO化活性对于Ubc9的共激活能力并非必需。在瞬时转染实验中,Ubc9和类固醇受体共激活因子-1(SRC-1)的共表达协同增强了MR介导的反式激活。实际上,染色质免疫沉淀实验证明,内源性MR、Ubc9和SRC-1在很大程度上以醛固酮依赖性方式被募集到内源性ENaC基因启动子上。免疫共沉淀实验显示在哺乳动物细胞中存在MR、Ubc9和SRC-1的复合物,并且内源性蛋白在小鼠集合管细胞的细胞核中共定位。这些发现支持了Ubc9作为转录MR共激活因子的生理作用,这超出了已知的SUMO E2缀合酶的作用。