Zhang C, Baudino T A, Dowd D R, Tokumaru H, Wang W, MacDonald P N
Department of Pharmacology, Case Western Reserve University, Cleveland, Ohio 44106, USA.
J Biol Chem. 2001 Nov 2;276(44):40614-20. doi: 10.1074/jbc.M106263200. Epub 2001 Aug 20.
The vitamin D receptor (VDR) is a ligand-dependent transcriptional factor that binds to vitamin D-responsive elements as a heterodimer with retinoid X receptor (RXR) to regulate target gene transcription. The steroid receptor coactivator (SRC) proteins are coactivators that interact with the AF-2 domain of VDR to augment 1,25-dihydroxyvitamin D3-dependent transcription. In contrast, NCoA-62/Ski-interacting protein (SKIP) is a distinct, activation function-2-independent coactivator for VDR. The current study examined whether these two distinct classes of coactivators impact functionally on VDR-mediated transcription. Using a ternary complex binding assay, we observed a marked preference for the direct interaction of NCoA-62/SKIP with the VDR-RXR heterodimer as compared with the VDR-VDR homodimer or VDR monomer. The liganded VDR also formed a ternary complex with NCoA-62/SKIP and SRC proteins in vitro. Competition experiments using LXXLL peptides showed that NCoA-62/SKIP and SRC coactivators contact different domains of the VDR-RXR heterodimer. Synergistic interplays were observed between NCoA-62/SKIP and SRC coactivators in VDR-mediated transcriptional assays, and protein interference assays indicated a requirement for both NCoA-62/SKIP and SRCs in VDR- mediated transcription. These studies suggest that the ligand-dependent and simultaneous interaction of NCoA-62/SKIP and SRC coactivators with distinct interaction domains within the VDR-RXR heterodimer results in cooperative interplays between coactivators in VDR-mediated transcription.
维生素D受体(VDR)是一种依赖配体的转录因子,它与视黄酸X受体(RXR)形成异二聚体,结合维生素D反应元件,从而调节靶基因转录。类固醇受体辅激活因子(SRC)蛋白是与VDR的AF-2结构域相互作用以增强1,25-二羟基维生素D3依赖性转录的辅激活因子。相比之下,NCoA-62/ Ski相互作用蛋白(SKIP)是VDR一种独特的、不依赖激活功能-2的辅激活因子。本研究探讨了这两类不同的辅激活因子是否在功能上影响VDR介导的转录。通过三元复合物结合试验,我们观察到与VDR-VDR同二聚体或VDR单体相比,NCoA-62/ SKIP与VDR-RXR异二聚体的直接相互作用具有明显的偏好性。在体外,配体结合的VDR还与NCoA-62/ SKIP和SRC蛋白形成三元复合物。使用LXXLL肽的竞争实验表明,NCoA-62/ SKIP和SRC辅激活因子与VDR-RXR异二聚体的不同结构域相互作用。在VDR介导的转录试验中,观察到NCoA-62/ SKIP和SRC辅激活因子之间存在协同作用,蛋白质干扰试验表明VDR介导的转录同时需要NCoA-62/ SKIP和SRC。这些研究表明,NCoA-62/ SKIP和SRC辅激活因子与VDR-RXR异二聚体内不同相互作用结构域的配体依赖性和同时相互作用导致了VDR介导转录中辅激活因子之间的协同作用。