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首页> 外文期刊>Molecular and Cellular Biology >Cyclin-Dependent Kinase 9 (Cdk9) of Fission Yeast Is Activated by the CDK-Activating Kinase Csk1, Overlaps Functionally with the TFIIH-Associated Kinase Mcs6, and Associates with the mRNA Cap Methyltransferase Pcm1 In Vivo
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Cyclin-Dependent Kinase 9 (Cdk9) of Fission Yeast Is Activated by the CDK-Activating Kinase Csk1, Overlaps Functionally with the TFIIH-Associated Kinase Mcs6, and Associates with the mRNA Cap Methyltransferase Pcm1 In Vivo

机译:裂变酵母的细胞周期蛋白依赖性激酶9(Cdk9)被CDK激活激酶Csk1激活,与TFIIH相关的激酶Mcs6重叠,并与mRNA帽甲基转移酶Pcm1体内结合

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Cyclin-dependent kinase 9 (Cdk9) of fission yeast is an essential ortholog of metazoan positive transcription elongation factor b (P-TEFb), which is proposed to coordinate capping and elongation of RNA polymerase II (Pol II) transcripts. Here we show that Cdk9 is activated to phosphorylate Pol II and the elongation factor Spt5 by Csk1, one of two fission yeast CDK-activating kinases (CAKs). Activation depends on Cdk9 T-loop residue Thr-212. The other CAK—Mcs6, the kinase component of transcription factor IIH (TFIIH)—cannot activate Cdk9. Consistent with the specificities of the two CAKs in vitro, the kinase activity of Cdk9 is reduced ~10-fold by csk1 deletion, and Cdk9 complexes from csk1Δ but not csk1+ cells can be activated by Csk1 in vitro. A cdk9T212A mutant is viable but phenocopies conditional growth defects of csk1Δ strains, indicating a role for Csk1-dependent activation of Cdk9 in vivo. A cdk9T212A mcs6S165A strain, in which neither Cdk9 nor Mcs6 can be activated by CAK, has a synthetic growth defect, implying functional overlap between the two CDKs, which have distinct but overlapping substrate specificities. Cdk9 forms complexes in vivo with the essential cyclin Pch1 and with Pcm1, the mRNA cap methyltransferase. The carboxyl-terminal region of Cdk9, through which it interacts with another capping enzyme, the RNA triphosphatase Pct1, is essential. Together, the data support a proposed model whereby Cdk9/Pch1—the third essential CDK-cyclin complex described in fission yeast—helps to target the capping apparatus to the transcriptional elongation complex.
机译:裂变酵母的细胞周期蛋白依赖性激酶9(Cdk9)是后生动物正转录延伸因子b(P-TEFb)的基本直系同源物,被提议用于协调RNA聚合酶II(Pol II)转录本的加帽和延伸。在这里,我们显示Cdk9被两个裂变酵母CDK激活激酶(CAK)之一Csk1激活以磷酸化Pol II和延伸因子Spt5。激活取决于Cdk9 T环残基Thr-212。另一个CAK-Mcs6,转录因子IIH(TFIIH)的激酶成分-无法激活Cdk9。与两个CAKs的特异性一致, csk1 缺失使Cdk9的激酶活性降低了约10倍,而 csk1 Δ却使Cdk9的复合物降低了 csk1 + 细胞。一个 cdk9 T212A 突变体是可行的,但表型是 csk1 Δ菌株的条件生长缺陷,表明了Csk1的作用。体内依赖Cdk9的激活。一个 cdk9 T212A mcs6 S165A 株Cdk9和Mcs6都不能被CAK激活的分子具有合成生长缺陷,这意味着两个CDK之间的功能重叠,它们具有不同但重叠的底物特异性。 Cdk9在体内与必需的细胞周期蛋白Pch1和与Pcm1(mRNA帽甲基转移酶)形成复合物。 Cdk9的羧基末端区域是必需的,通过该羧基末端区域与另一种加帽酶RNA三磷酸酶Pct1相互作用。总之,数据支持提出的模型,从而使Cdk9 / Pch1(裂变酵母中描述的第三种基本CDK-细胞周期蛋白复合物)有助于将封端设备靶向转录延伸复合物。

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