College of Medicine, Swansea University, Swansea, Wales SA2 8PP, United Kingdom.
Proc Natl Acad Sci U S A. 2014 Feb 18;111(7):2500-5. doi: 10.1073/pnas.1307525111. Epub 2014 Feb 3.
Mediator, an evolutionary conserved large multisubunit protein complex with a central role in regulating RNA polymerase II-transcribed genes, serves as a molecular switchboard at the interface between DNA binding transcription factors and the general transcription machinery. Mediator subunits include the Cdk8 module, which has both positive and negative effects on activator-dependent transcription through the activity of the cyclin-dependent kinase Cdk8, and the tail module, which is required for positive and negative regulation of transcription, correct preinitiation complex formation in basal and activated transcription, and Mediator recruitment. Currently, the molecular mechanisms governing Mediator function remain largely undefined. Here we demonstrate an autoregulatory mechanism used by Mediator to repress transcription through the activity of distinct components of different modules. We show that the function of the tail module component Med3, which is required for transcription activation, is suppressed by the kinase activity of the Cdk8 module. Med3 interacts with, and is phosphorylated by, Cdk8; site-specific phosphorylation triggers interaction with and degradation by the Grr1 ubiquitin ligase, thereby preventing transcription activation. This active repression mechanism involving Grr1-dependent ubiquitination of Med3 offers a rationale for the substoichiometric levels of the tail module that are found in purified Mediator and the corresponding increase in tail components seen in cdk8 mutants.
中介体是一种进化上保守的大型多亚基蛋白复合物,在调节 RNA 聚合酶 II 转录基因中起核心作用,它作为 DNA 结合转录因子和一般转录机制之间的分子开关。中介体亚基包括 Cdk8 模块,该模块通过细胞周期蛋白依赖性激酶 Cdk8 的活性对激活剂依赖性转录既有正效应也有负效应,以及尾部模块,该模块对于转录的正调控和负调控、基本转录和激活转录中正确的起始前复合物形成以及中介体募集都是必需的。目前,调节中介体功能的分子机制在很大程度上仍未定义。在这里,我们展示了一种中介体通过不同模块的不同组件的活性来抑制转录的自我调节机制。我们表明,尾部模块组件 Med3 的功能,该组件对于转录激活是必需的,被 Cdk8 模块的激酶活性所抑制。Med3 与 Cdk8 相互作用,并被其磷酸化;特异性磷酸化触发与 Grr1 泛素连接酶的相互作用和降解,从而防止转录激活。这种涉及 Grr1 依赖性 Med3 泛素化的主动抑制机制为纯化中介体中发现的尾部模块的亚基水平以及在 cdk8 突变体中观察到的尾部组件的相应增加提供了依据。