Davoine Celine, Abreu Ilka N, Khajeh Khalil, Blomberg Jeanette, Kidd Brendan N, Kazan Kemal, Schenk Peer M, Gerber Lorenz, Nilsson Ove, Moritz Thomas, Björklund Stefan
Department of Medical Biochemistry and Biophysics, Umeå University, Umeå, Sweden.
Umeå Plant Science Centre, Department of Forest Genetics and Plant Physiology, Swedish University of Agricultural Sciences, Umeå, Sweden.
PLoS One. 2017 Jun 22;12(6):e0179640. doi: 10.1371/journal.pone.0179640. eCollection 2017.
Mediator is a multiprotein transcriptional co-regulator complex composed of four modules; Head, Middle, Tail, and Kinase. It conveys signals from promoter-bound transcriptional regulators to RNA polymerase II and thus plays an essential role in eukaryotic gene regulation. We describe subunit localization and activities of Mediator in Arabidopsis through metabolome and transcriptome analyses from a set of Mediator mutants. Functional metabolomic analysis based on the metabolite profiles of Mediator mutants using multivariate statistical analysis and heat-map visualization shows that different subunit mutants display distinct metabolite profiles, which cluster according to the reported localization of the corresponding subunits in yeast. Based on these results, we suggest localization of previously unassigned plant Mediator subunits to specific modules. We also describe novel roles for individual subunits in development, and demonstrate changes in gene expression patterns and specific metabolite levels in med18 and med25, which can explain their phenotypes. We find that med18 displays levels of phytoalexins normally found in wild type plants only after exposure to pathogens. Our results indicate that different Mediator subunits are involved in specific signaling pathways that control developmental processes and tolerance to pathogen infections.
中介体是一种由四个模块组成的多蛋白转录共调节复合物,即头部、中部、尾部和激酶。它将来自启动子结合转录调节因子的信号传递给RNA聚合酶II,因此在真核基因调控中起着至关重要的作用。我们通过对一组中介体突变体进行代谢组和转录组分析,描述了拟南芥中介体的亚基定位和活性。基于中介体突变体代谢物谱的功能代谢组学分析,使用多变量统计分析和热图可视化显示,不同的亚基突变体显示出不同的代谢物谱,这些代谢物谱根据酵母中相应亚基的报道定位进行聚类。基于这些结果,我们建议将先前未确定的植物中介体亚基定位到特定模块。我们还描述了单个亚基在发育中的新作用,并证明了med18和med25中基因表达模式和特定代谢物水平的变化,这可以解释它们的表型。我们发现med18仅在接触病原体后才显示出野生型植物中正常存在的植保素水平。我们的结果表明,不同的中介体亚基参与了控制发育过程和对病原体感染耐受性的特定信号通路。