首页> 外文期刊>Molecular and Cellular Biology >Functional Interaction of the Ess1 Prolyl Isomerase with Components of the RNA Polymerase II Initiation and Termination Machineries
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Functional Interaction of the Ess1 Prolyl Isomerase with Components of the RNA Polymerase II Initiation and Termination Machineries

机译:Ess1脯氨酰异构酶与RNA聚合酶II起始和终止机制的组成部分的功能相互作用。

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摘要

The C-terminal domain (CTD) of the largest subunit of RNA polymerase II (Pol II) is a reiterated heptad sequence (Tyr1-Ser2-Pro3-Thr4-Ser5-Pro6-Ser7) that plays a key role in the transcription cycle, coordinating the exchange of transcription and RNA processing factors. The structure of the CTD is flexible and undergoes conformational changes in response to serine phosphorylation and proline isomerization. Here we report that the Ess1 peptidyl prolyl isomerase functionally interacts with the transcription initiation factor TFIIB and with the Ssu72 CTD phosphatase and Pta1 components of the CPF 3′-end processing complex. The ess1A144T and ess1H164R mutants, initially described by Hanes and coworkers (Yeast 5:55-72, 1989), accumulate the pSer5 phosphorylated form of Pol II; confer phosphate, galactose, and inositol auxotrophies; and fail to activate PHO5, GAL10, and INO1 reporter genes. These mutants are also defective for transcription termination, but in vitro experiments indicate that this defect is not caused by altering the processing efficiency of the cleavage/polyadenylation machinery. Consistent with a role in initiation and termination, Ess1 associates with the promoter and terminator regions of the PMA1 and PHO5 genes. We propose that Ess1 facilitates pSer5-Pro6 dephosphorylation by generating the CTD structural conformation recognized by the Ssu72 phosphatase and that pSer5 dephosphorylation affects both early and late stages of the transcription cycle.
机译:RNA聚合酶II(Pol II)最大亚基的C末端结构域(CTD)是重复的七肽序列(Tyr1-Ser2-Pro3-Thr4-Ser5-Pro6-Ser7),在转录周期中起着关键作用,协调转录和RNA加工因子的交换。 CTD的结构是灵活的,并响应于丝氨酸磷酸化和脯氨酸异构化而发生构象变化。在这里,我们报告Ess1肽基脯氨酰异构酶在功能上与转录起始因子TFIIB以及CPF 3'-末端加工复合物的Ssu72 CTD磷酸酶和Pta1成分相互作用。 ess1 A144T ess1 H164R 突变体,最初由Hanes和同事描述(Yeast 5:55-72,1989),积累了Pol II的pSer5磷酸化形式;赋予磷酸盐,半乳糖和肌醇营养缺陷型;并且无法激活 PHO5,GAL10 INO1 报告基因。这些突变体对于转录终止也是有缺陷的,但是体外实验表明该缺陷不是由改变裂解/聚腺苷酸化机制的加工效率引起的。 Ess1与启动和终止中的作用一致,与 PMA1 PHO5 基因的启动子和终止子区域相关。我们建议Ess1通过生成Ssu72磷酸酶识别的CTD结构构象来促进pSer5-Pro6的去磷酸化,并且pSer5的去磷酸化会影响转录周期的早期和晚期。

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