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Impairment of the TFIIH-associated CDK-activating Kinase Selectively Affects Cell Cycle-regulated Gene Expression in Fission Yeast

机译:TFIIH相关的CDK激活激酶的损伤选择性影响裂变酵母中细胞周期调控的基因表达。

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The fission yeast Mcs6–Mcs2–Pmh1 complex, homologous to metazoan Cdk7–cyclin H-Mat1, has dual functions in cell division and transcription: as a partially redundant cyclin-dependent kinase (CDK)-activating kinase (CAK) that phosphorylates the major cell cycle CDK, Cdc2, on Thr-167; and as the RNA polymerase (Pol) II carboxyl-terminal domain (CTD) kinase associated with transcription factor (TF) IIH. We analyzed conditional mutants of mcs6 and pmh1 , which activate Cdc2 normally but cannot complete cell division at restrictive temperature and arrest with decreased CTD phosphorylation. Transcriptional profiling by microarray hybridization revealed only modest effects on global gene expression: a one-third reduction in a severe mcs6 mutant after prolonged incubation at 36°C. In contrast, a small subset of transcripts (~5%) decreased by more than twofold after Mcs6 complex function was compromised. The signature of repressed genes overlapped significantly with those of cell separation mutants sep10 and sep15 . Sep10, a component of the Pol II Mediator complex, becomes essential in mcs6 or pmh1 mutant backgrounds. Moreover, transcripts dependent on the forkhead transcription factor Sep1, which are expressed coordinately during mitosis, were repressed in Mcs6 complex mutants, and Mcs6 also interacts genetically with Sep1. Thus, the Mcs6 complex, a direct activator of Cdc2, also influences the cell cycle transcriptional program, possibly through its TFIIH-associated kinase function.
机译:与裂殖酵母Cdk7–cyclin H-Mat1同源的裂变酵母Mcs6-Mcs2-Pmh1复合物在细胞分裂和转录中具有双重功能:作为部分冗余的细胞周期蛋白依赖性激酶(CDK)激活激酶(CAK),磷酸化主要在Thr-167上的细胞周期CDK,Cdc2;作为与转录因子(TF)IIH相关的RNA聚合酶(Pol)II羧基末端域(CTD)激酶。我们分析了有条件的mcs6和pmh1突变体,它们正常激活Cdc2,但不能在限制性温度下完成细胞分裂,并因CTD磷酸化降低而停止。通过微阵列杂交进行转录谱分析仅显示了对整体基因表达的适度影响:在36°C下长时间孵育后,严重的mcs6突变体降低了三分之一。相比之下,Mcs6复杂功能受损后,一小部分转录物(〜5%)下降了两倍以上。抑制基因的签名与细胞分离突变体sep10和sep15的显着重叠。 Sep10是Pol II介体复合物的组成部分,在mcs6或pmh1突变体背景中变得至关重要。此外,依赖于叉头转录因子Sep1的转录物在有丝分裂过程中协同表达,在Mcs6复合突变体中受到抑制,并且Mcs6也与Sep1发生遗传相互作用。因此,Mcs6复合物(Cdc2的直接激活剂)也可能通过其TFIIH相关激酶功能影响细胞周期转录程序。

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