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裂殖酵母Cdk7通过其CAK和C末端结构域激酶活性来控制基因表达。

Fission yeast Cdk7 controls gene expression through both its CAK and C-terminal domain kinase activities.

作者信息

Devos Maxime, Mommaerts Elise, Migeot Valerie, van Bakel Harm, Hermand Damien

机构信息

URPHYM-GEMO, Namur Research College (NARC), The University of Namur, Namur, Belgium.

The Hess Center for Science and Medicine, New York, New York, USA.

出版信息

Mol Cell Biol. 2015 May;35(9):1480-90. doi: 10.1128/MCB.00024-15. Epub 2015 Feb 17.

Abstract

Cyclin-dependent kinase (Cdk) activation and RNA polymerase II transcription are linked by the Cdk7 kinase, which phosphorylates Cdks as a trimeric Cdk-activating kinase (CAK) complex, and serine 5 within the polymerase II (Pol II) C-terminal domain (CTD) as transcription factor TFIIH-bound CAK. However, the physiological importance of integrating these processes is not understood. Besides the Cdk7 ortholog Mcs6, fission yeast possesses a second CAK, Csk1. The two enzymes have been proposed to act redundantly to activate Cdc2. Using an improved analogue-sensitive Mcs6-as kinase, we show that Csk1 is not a relevant CAK for Cdc2. Further analyses revealed that Csk1 lacks a 20-amino-acid sequence required for its budding yeast counterpart, Cak1, to bind Cdc2. Transcriptome profiling of the Mcs6-as mutant in the presence or absence of the budding yeast Cak1 kinase, in order to uncouple the CTD kinase and CAK activities of Mcs6, revealed an unanticipated role of the CAK branch in the transcriptional control of the cluster of genes implicated in ribosome biogenesis and cell growth. The analysis of a Cdc2 CAK site mutant confirmed these data. Our data show that the Cdk7 kinase modulates transcription through its well-described RNA Pol II CTD kinase activity and also through the Cdc2-activating kinase activity.

摘要

细胞周期蛋白依赖性激酶(Cdk)的激活与RNA聚合酶II转录通过Cdk7激酶相联系,Cdk7作为三聚体Cdk激活激酶(CAK)复合物使Cdks磷酸化,并作为与转录因子TFIIH结合的CAK使聚合酶II(Pol II)C末端结构域(CTD)内的丝氨酸5磷酸化。然而,整合这些过程的生理重要性尚不清楚。除了Cdk7直系同源物Mcs6外,裂殖酵母还拥有第二种CAK,即Csk1。有人提出这两种酶在激活Cdc2方面发挥冗余作用。使用改进的对类似物敏感的Mcs6-as激酶,我们发现Csk1不是Cdc2的相关CAK。进一步分析表明,Csk1缺少其芽殖酵母对应物Cak1结合Cdc2所需的20个氨基酸序列。为了分离Mcs6的CTD激酶和CAK活性,对存在或不存在芽殖酵母Cak1激酶的情况下的Mcs6-as突变体进行转录组分析,揭示了CAK分支在核糖体生物合成和细胞生长相关基因簇转录控制中的意外作用。对Cdc2 CAK位点突变体的分析证实了这些数据。我们的数据表明,Cdk7激酶通过其广为人知的RNA Pol II CTD激酶活性以及Cdc2激活激酶活性来调节转录。

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