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酵母中介蛋白对RNA聚合酶II转录激活的激活剂特异性需求。

Activator-specific requirement of yeast mediator proteins for RNA polymerase II transcriptional activation.

作者信息

Han S J, Lee Y C, Gim B S, Ryu G H, Park S J, Lane W S, Kim Y J

机构信息

Center for Molecular Medicine, Samsung Biomedical Research Institute, Sungkyunkwan University College of Medicine, Seoul 135-230, Korea.

出版信息

Mol Cell Biol. 1999 Feb;19(2):979-88. doi: 10.1128/MCB.19.2.979.

Abstract

The multisubunit Mediator complex of Saccharomyces cerevisiae is required for most RNA polymerase II (Pol II) transcription. The Mediator complex is composed of two subcomplexes, the Rgr1 and Srb4 subcomplexes, which appear to function in the reception of activator signals and the subsequent modulation of Pol II activity, respectively. In order to determine the precise composition of the Mediator complex and to explore the specific role of each Mediator protein, our goal was to identify all of the Mediator components. To this end, we cloned three previously unidentified Mediator subunits, Med9/Cse2, Med10/Nut2, and Med11, and isolated mutant forms of each of them to analyze their transcriptional defects. Differential display and Northern analyses of mRNAs from wild-type and Mediator mutant cells demonstrated an activator-specific requirement for each Mediator subunit. Med9/Cse2 and Med10/Nut2 were required, respectively, for Bas1/Bas2- and Gcn4-mediated transcription of amino acid biosynthetic genes. Gal11 was required for Gal4- and Rap1-mediated transcriptional activation. Med11 was also required specifically for MFalpha1 transcription. On the other hand, Med6 was required for all of these transcriptional activation processes. These results suggest that distinct Mediator proteins in the Rgr1 subcomplex are required for activator-specific transcriptional activation and that the activation signals mediated by these Mediator proteins converge on Med6 (or the Srb4 subcomplex) to modulate Pol II activity.

摘要

酿酒酵母的多亚基中介体复合物是大多数RNA聚合酶II(Pol II)转录所必需的。中介体复合物由两个亚复合物组成,即Rgr1和Srb4亚复合物,它们似乎分别在激活子信号的接收和随后对Pol II活性的调节中发挥作用。为了确定中介体复合物的确切组成并探索每个中介体蛋白的具体作用,我们的目标是鉴定所有的中介体成分。为此,我们克隆了三个先前未鉴定的中介体亚基,Med9/Cse2、Med10/Nut2和Med11,并分离出它们各自的突变形式以分析其转录缺陷。对野生型和中介体突变细胞的mRNA进行差异显示和Northern分析表明,每个中介体亚基都有激活子特异性需求。Med9/Cse2和Med10/Nut2分别是Bas1/Bas2和Gcn4介导的氨基酸生物合成基因转录所必需的。Gal11是Gal4和Rap1介导的转录激活所必需的。Med11也是MFalpha1转录所特需的。另一方面,Med6是所有这些转录激活过程所必需的。这些结果表明,Rgr1亚复合物中不同的中介体蛋白是激活子特异性转录激活所必需的,并且这些中介体蛋白介导的激活信号汇聚在Med6(或Srb4亚复合物)上以调节Pol II活性。

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