Li Hongwei, Kim Jeong Hoon, Koh Stephen S, Stallcup Michael R
Department of Pathology, University of Southern California, Los Angeles, California 90089-9092, USA.
J Biol Chem. 2004 Feb 6;279(6):4212-20. doi: 10.1074/jbc.M311374200. Epub 2003 Nov 24.
The p160 coactivators, such as GRIP1, bind nuclear receptors and help to mediate transcriptional activation. beta-Catenin binds to and serves as a coactivator for the nuclear receptor, androgen receptor (AR), and the Lymphoid Enhancer Factor/T Cell Factor family member, Lef1. Here we report that GRIP1 and beta-catenin can bind strongly to each other through the AD2 domain of GRIP1. Furthermore, GRIP1 and beta-catenin can synergistically enhance the activity of both AR and Lef1, and both coactivators are recruited specifically to AR-driven and Lef1-driven promoters. However, the mechanism of beta-catenin-GRIP1 coactivator function and synergy is different with AR and Lef1. While beta-catenin can bind directly to both AR and Lef1, GRIP1 can only bind directly to AR; the ability of GRIP1 to associate with and function as a coactivator for Lef1 is entirely dependent on the presence of beta-catenin. Thus, whereas GRIP1 coactivator function involves direct binding to nuclear receptors and most other classes of DNA-binding transcriptional activator proteins, the coactivator function of GRIP1 with Lef1 follows a novel paradigm where GRIP1 is recruited indirectly to Lef1 through their mutual association with beta-catenin. The beta-catenin-GRIP1 interaction represents another potential point of cross-talk between the AR and Wnt signaling pathways.
p160共激活因子,如GRIP1,可结合核受体并有助于介导转录激活。β-连环蛋白可与核受体雄激素受体(AR)以及淋巴增强因子/T细胞因子家族成员Lef1结合并作为其共激活因子。在此我们报告,GRIP1和β-连环蛋白可通过GRIP1的AD2结构域彼此强烈结合。此外,GRIP1和β-连环蛋白可协同增强AR和Lef1的活性,并且这两种共激活因子均被特异性募集至AR驱动和Lef1驱动的启动子。然而,β-连环蛋白-GRIP1共激活因子功能及协同作用的机制在AR和Lef1中有所不同。虽然β-连环蛋白可直接与AR和Lef1结合,但GRIP1只能直接与AR结合;GRIP1与Lef1结合并作为其共激活因子发挥作用的能力完全依赖于β-连环蛋白的存在。因此,尽管GRIP1共激活因子功能涉及直接与核受体以及大多数其他类型的DNA结合转录激活蛋白结合,但GRIP1与Lef1的共激活因子功能遵循一种新的模式,即GRIP1通过与β-连环蛋白的相互结合而间接募集至Lef1。β-连环蛋白-GRIP1相互作用代表了AR和Wnt信号通路之间另一个潜在的相互作用点。