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首页> 外文期刊>Molecular and Cellular Biology >Amino Acid Substitutions in Yeast TFIIF Confer Upstream Shifts in Transcription Initiation and Altered Interaction with RNA Polymerase II
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Amino Acid Substitutions in Yeast TFIIF Confer Upstream Shifts in Transcription Initiation and Altered Interaction with RNA Polymerase II

机译:酵母TFIIF中的氨基酸替代赋予转录起始上游位移和与RNA聚合酶II相互作用的改变

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Transcription factor IIF (TFIIF) is required for transcription of protein-encoding genes by eukaryotic RNA polymerase II. In contrast to numerous studies establishing a role for higher eukaryotic TFIIF in multiple steps of the transcription cycle, relatively little has been reported regarding the functions of TFIIF in the yeast Saccharomyces cerevisiae. In this study, site-directed mutagenesis, plasmid shuffle complementation assays, and primer extension analyses were employed to probe the functional domains of the S. cerevisiae TFIIF subunits Tfg1 and Tfg2. Analyses of 35 Tfg1 alanine substitution mutants and 19 Tfg2 substitution mutants identified 5 mutants exhibiting altered properties in vivo. Primer extension analyses revealed that the conditional growth properties exhibited by the tfg1-E346A, tfg1-W350A, and tfg2-L59K mutants were associated with pronounced upstream shifts in transcription initiation in vivo. Analyses of double mutant strains demonstrated functional interactions between the Tfg1 mutations and mutations in Tfg2, TFIIB, and RNA polymerase II. Importantly, biochemical results demonstrated an altered interaction between mutant TFIIF protein and RNA polymerase II. These results provide direct evidence for the involvement of S. cerevisiae TFIIF in the mechanism of transcription start site utilization and support the view that a TFIIF-RNA polymerase II interaction is a determinant in this process.
机译:真核RNA聚合酶II转录蛋白编码基因需要转录因子IIF(TFIIF)。与众多研究确定高等真核生物TFIIF在转录循环的多个步骤中发挥作用相比,关于TFIIF在酿酒酵母中的功能的报道相对较少。在这项研究中,采用定点诱变,质粒改组互补分析和引物延伸分析来探测 S的功能域。啤酒酵母TFIIF亚基Tfg1和Tfg2。对35个Tfg1丙氨酸取代突变体和19个Tfg2取代突变体的分析确定了5个在体内表现出改变的特性的突变体。引物延伸分析表明, tfg1-E346A tfg1-W350A tfg2-L59K 突变体表现出的条件生长特性与显着相关体内转录起始的上游转移。双重突变菌株的分析表明,Tfg1突变与Tfg2,TFIIB和RNA聚合酶II中的突变之间存在功能相互作用。重要的是,生化结果表明突变的TFIIF蛋白和RNA聚合酶II之间的相互作用发生了改变。这些结果为 S的参与提供了直接的证据。酿酒酵母在转录机制中的起始位点利用,并支持TFIIF-RNA聚合酶II相互作用是这一过程的决定因素的观点。

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