Wang Wei, Yao Xiao, Huang Yan, Hu Xiangming, Liu Runzhong, Hou Dongming, Chen Ruichuan, Wang Gang
State Key Laboratory of Cell Biology, Institute of Biochemistry and Cell Biology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai, China.
Transcription. 2013 Jan-Feb;4(1):39-51. doi: 10.4161/trns.22874.
The Mediator is a multi-subunit complex that transduces regulatory information from transcription regulators to the RNA polymerase II apparatus. Growing evidence suggests that Mediator plays roles in multiple stages of eukaryotic transcription, including elongation. However, the detailed mechanism by which Mediator regulates elongation remains elusive. In this study, we demonstrate that Mediator MED23 subunit controls a basal level of transcription by recruiting elongation factor P-TEFb, via an interaction with its CDK9 subunit. The mRNA level of Egr1, a MED23-controlled model gene, is reduced 4-5 fold in Med23 (-/-) ES cells under an unstimulated condition, but Med23-deficiency does not alter the occupancies of RNAP II, GTFs, Mediator complex, or activator ELK1 at the Egr1 promoter. Instead, Med23 depletion results in a significant decrease in P-TEFb and RNAP II (Ser2P) binding at the coding region, but no changes for several other elongation regulators, such as DSIF and NELF. ChIP-seq revealed that Med23-deficiency partially reduced the P-TEFb occupancy at a set of MED23-regulated gene promoters. Further, we demonstrate that MED23 interacts with CDK9 in vivo and in vitro. Collectively, these results provide the mechanistic insight into how Mediator promotes RNAP II into transcription elongation.
中介体是一种多亚基复合物,它将转录调节因子的调控信息传递给RNA聚合酶II装置。越来越多的证据表明,中介体在真核生物转录的多个阶段发挥作用,包括延伸阶段。然而,中介体调节延伸的详细机制仍不清楚。在本研究中,我们证明中介体的MED23亚基通过与其CDK9亚基相互作用招募延伸因子P-TEFb来控制基础转录水平。在未刺激条件下,MED23调控的模型基因Egr1在Med23(-/-)胚胎干细胞中的mRNA水平降低了4至5倍,但Med23缺陷并不改变Egr1启动子处RNA聚合酶II、通用转录因子(GTFs)、中介体复合物或激活因子ELK1的占据情况。相反,Med23缺失导致编码区P-TEFb和RNA聚合酶II(Ser2P)结合显著减少,但其他几种延伸调节因子,如DSIF和NELF没有变化。染色质免疫沉淀测序(ChIP-seq)显示,Med23缺陷部分降低了一组MED23调控基因启动子处P-TEFb的占据情况。此外,我们证明MED23在体内和体外均与CDK9相互作用。总的来说,这些结果为中介体如何促进RNA聚合酶II进入转录延伸提供了机制上的见解。