Anandhakumar Jayamani, Moustafa Yara W, Chowdhary Surabhi, Kainth Amoldeep S, Gross David S
Department of Biochemistry and Molecular Biology, Louisiana State University Health Sciences Center, Shreveport, Louisiana, USA.
Department of Biochemistry and Molecular Biology, Louisiana State University Health Sciences Center, Shreveport, Louisiana, USA
Mol Cell Biol. 2016 Jun 29;36(14):1943-60. doi: 10.1128/MCB.00005-16. Print 2016 Jul 15.
Mediator is an evolutionarily conserved coactivator complex essential for RNA polymerase II transcription. Although it has been generally assumed that in Saccharomyces cerevisiae, Mediator is a stable trimodular complex, its structural state in vivo remains unclear. Using the "anchor away" (AA) technique to conditionally deplete select subunits within Mediator and its reversibly associated Cdk8 kinase module (CKM), we provide evidence that Mediator's tail module is highly dynamic and that a subcomplex consisting of Med2, Med3, and Med15 can be independently recruited to the regulatory regions of heat shock factor 1 (Hsf1)-activated genes. Fluorescence microscopy of a scaffold subunit (Med14)-anchored strain confirmed parallel cytoplasmic sequestration of core subunits located outside the tail triad. In addition, and contrary to current models, we provide evidence that Hsf1 can recruit the CKM independently of core Mediator and that core Mediator has a role in regulating postinitiation events. Collectively, our results suggest that yeast Mediator is not monolithic but potentially has a dynamic complexity heretofore unappreciated. Multiple species, including CKM-Mediator, the 21-subunit core complex, the Med2-Med3-Med15 tail triad, and the four-subunit CKM, can be independently recruited by activated Hsf1 to its target genes in AA strains.
中介体是一种进化上保守的共激活因子复合物,对RNA聚合酶II转录至关重要。尽管一般认为在酿酒酵母中,中介体是一种稳定的三模块复合物,但其在体内的结构状态仍不清楚。我们使用“锚定去除”(AA)技术有条件地耗尽中介体及其可逆相关的Cdk8激酶模块(CKM)中的特定亚基,提供了证据表明中介体的尾部模块具有高度动态性,并且由Med2、Med3和Med15组成的亚复合物可以独立招募到热休克因子1(Hsf1)激活基因的调控区域。对支架亚基(Med14)锚定菌株的荧光显微镜观察证实了位于尾部三联体之外的核心亚基在细胞质中的平行隔离。此外,与当前模型相反,我们提供证据表明Hsf1可以独立于核心中介体招募CKM,并且核心中介体在调节起始后事件中发挥作用。总体而言,我们的结果表明酵母中介体不是单一的,而是可能具有迄今为止未被认识到的动态复杂性。在AA菌株中,包括CKM-中介体、21亚基核心复合物、Med2-Med3-Med15尾部三联体和四亚基CKM在内的多种复合物可以被激活的Hsf1独立招募到其靶基因。