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通过复合物形成对TFIIH相关激酶活性的调节及其与RNA聚合酶II的CTD磷酸化的关系。

Modulation of TFIIH-associated kinase activity by complex formation and its relationship with CTD phosphorylation of RNA polymerase II.

作者信息

Watanabe Y, Fujimoto H, Watanabe T, Maekawa T, Masutani C, Hanaoka F, Ohkuma Y

机构信息

Institute for Molecular and Cellular Biology and; The Graduate School of Pharmaceutical Sciences, Osaka University, Suita, Osaka 565-0871, Japan.

出版信息

Genes Cells. 2000 May;5(5):407-23. doi: 10.1046/j.1365-2443.2000.00336.x.

Abstract

BACKGROUND

The general transcription factor TFIIH plays important roles in initiation and the transition to elongation steps of transcription by RNA polymerase II (PolII). Both roles are dependent on the protein kinase, DNA-dependent ATPase and DNA helicase activities of TFIIH. However, how these enzyme activities of TFIIH contribute to transcription has remained elusive. TFIIH consists of nine subunits, and one of them, Cdk7, possesses kinase activity. Here the substrate specificities of TFIIH and two forms of the Cdk7-containing kinase complex are compared, and the relationship between transcription activity and the TFIIH-dependent phosphorylation of the carboxy terminal domain of the largest subunit of PolII (CTD) is studied.

RESULTS

We prepared TFIIH and two Cdk7-containing kinase complexes, Cdk7/Cyclin H and CAK (Cdk7/Cyclin H/MAT1). Consistent with previous reports, CAK strongly phosphorylated Cdk2, Cdk4, CTD and intact PolII. In contrast, Cdk7/Cyclin H, which lacks MAT1, did not phosphorylate these substrates, except for weak phosphorylation of Cdk2. The kinase activity of TFIIH displayed stronger substrate preference for Cdk4 than did CAK. In addition, TFIIH phosphorylation of PolII was stimulated by TFIIE both in solution and during preinitiation complex formation, whereas Cdk7/Cyclin H and CAK phosphorylation of PolII was not. In combination with other general transcription factors, TFIIH, but not Cdk7/CycH or CAK, promoted transcription on a linear DNA template. This transcription was well correlated with TFIIE stimulated TFIIH phosphorylation of serine at position 5 (Ser-5) within the heptapeptide repeat of the PolII CTD.

CONCLUSION

These results provide clues about the roles of CTD phosphorylation at Ser-5 in transcription.

摘要

背景

通用转录因子TFIIH在RNA聚合酶II(PolII)转录的起始及向延伸步骤的转变过程中发挥重要作用。这两个作用均依赖于TFIIH的蛋白激酶、DNA依赖性ATP酶及DNA解旋酶活性。然而,TFIIH的这些酶活性如何促进转录仍不清楚。TFIIH由九个亚基组成,其中之一Cdk7具有激酶活性。本文比较了TFIIH及两种含Cdk7的激酶复合物的底物特异性,并研究了转录活性与TFIIH依赖性PolII最大亚基的羧基末端结构域(CTD)磷酸化之间的关系。

结果

我们制备了TFIIH及两种含Cdk7的激酶复合物,即Cdk7/细胞周期蛋白H和CAK(Cdk7/细胞周期蛋白H/MAT1)。与之前的报道一致,CAK能强烈磷酸化Cdk2、Cdk4、CTD及完整的PolII。相比之下,缺乏MAT1的Cdk7/细胞周期蛋白H除了对Cdk2有微弱的磷酸化作用外,不磷酸化这些底物。TFIIH的激酶活性对Cdk4的底物偏好性比CAK更强。此外,在溶液中及起始前复合物形成过程中,TFIIE均可刺激TFIIH对PolII的磷酸化,而Cdk7/细胞周期蛋白H和CAK对PolII的磷酸化则不受刺激。与其他通用转录因子结合时,TFIIH而非Cdk7/CycH或CAK可促进线性DNA模板上的转录。这种转录与TFIIE刺激TFIIH对PolII CTD七肽重复序列中第5位丝氨酸(Ser-5)的磷酸化密切相关。

结论

这些结果为Ser-5处CTD磷酸化在转录中的作用提供了线索。

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