Knuesel Matthew T, Meyer Krista D, Bernecky Carrie, Taatjes Dylan J
Department of Chemistry and Biochemistry, University of Colorado, Boulder, Colorado 80309, USA.
Genes Dev. 2009 Feb 15;23(4):439-51. doi: 10.1101/gad.1767009.
The human CDK8 subcomplex (CDK8, cyclin C, Med12, and Med13) negatively regulates transcription in ways not completely defined; past studies suggested CDK8 kinase activity was required for its repressive function. Using a reconstituted transcription system together with recombinant or endogenous CDK8 subcomplexes, we demonstrate that, in fact, Med12 and Med13 are critical for subcomplex-dependent repression, whereas CDK8 kinase activity is not. A hallmark of activated transcription is efficient reinitiation from promoter-bound scaffold complexes that recruit a series of pol II enzymes to the gene. Notably, the CDK8 submodule strongly represses even reinitiation events, suggesting a means to fine tune transcript levels. Structural and biochemical studies confirm the CDK8 submodule binds the Mediator leg/tail domain via the Med13 subunit, and this submodule-Mediator association precludes pol II recruitment. Collectively, these results reveal the CDK8 subcomplex functions as a simple switch that controls the Mediator-pol II interaction to help regulate transcription initiation and reinitiation events. As Mediator is generally required for expression of protein-coding genes, this may reflect a common mechanism by which activated transcription is shut down in human cells.
人类CDK8亚复合物(CDK8、细胞周期蛋白C、Med12和Med13)以尚未完全明确的方式负向调节转录;过去的研究表明CDK8激酶活性是其抑制功能所必需的。利用重组转录系统以及重组或内源性CDK8亚复合物,我们证明,事实上,Med12和Med13对于亚复合物依赖性抑制至关重要,而CDK8激酶活性并非如此。激活转录的一个标志是从启动子结合的支架复合物高效重新起始,该复合物将一系列聚合酶II酶招募到基因上。值得注意的是,CDK8子模块甚至强烈抑制重新起始事件,提示一种微调转录本水平的方式。结构和生化研究证实,CDK8子模块通过Med13亚基结合中介体腿部/尾部结构域,并且这种子模块-中介体关联阻止了聚合酶II的招募。总体而言,这些结果揭示CDK8亚复合物作为一个简单开关发挥作用,控制中介体-聚合酶II相互作用,以帮助调节转录起始和重新起始事件。由于中介体通常是蛋白质编码基因表达所必需的,这可能反映了人类细胞中激活转录被关闭的一种常见机制。