Abstract

Octamer binding transcription factors (Oct factors) play important roles in activation of transcription of various genes but, in some cases, require cofactors that interact with the DNA binding (POU) domain. In the present study, a yeast two-hybrid screen with the Oct-1 POU domain as a bait identified MAT1 as a POU domain-binding protein. MAT1 is known to be required for the assembly of cyclin-dependent kinase (CDK)-activating kinase (CAK), which is functionally associated with the general transcription factor IIH (TFIIH). Further analyses showed that MAT1 interacts with POU domains of Oct-1, Oct-2, and Oct-3 in vitro in a DNA-independent manner. MAT1-containing TFIIH was also shown to interact with POU domains of Oct-1 and Oct-2. MAT1 is shown to enhance the ability of a recombinant CDK7-cyclin H complex (bipartite CAK) to phosphorylate isolated POU domains, intact Oct-1, and the C-terminal domain of RNA polymerase II, but not the originally defined substrate, CDK2. Phosphopeptide mapping indicates that the site (Ser385) of a mitosis-specific phosphorylation that inhibits Oct-1 binding to DNA is not phosphorylated by CAK. However, one CAK-phosphorylated phosphopeptide comigrates with a Cdc2-phosphorylated phosphopeptide previously shown to be mitosis-specific, suggesting that, in vitro, CAK is able to phosphorylate at least one site that is also phosphorylated in vivo. These results suggest (i) that interactions between POU domains and MAT1 can target CAK to Oct factors and result in their phosphorylation, (ii) that MAT1 not only functions as a CAK assembly factor but also acts to alter the spectrum of CAK substrates, and (iii) that a POU-MAT1 interaction may play a role in the recruitment of TFIIH to the preinitiation complex or in subsequent initiation and elongation reactions.

Highlights

  • § Supported in part by a fellowship from the Toyobo Biotechnology Foundation, in part by a fellowship from the International Human Frontier Science Program, and in part by a Japan Society for the Promotion of Science Postdoctoral Fellowship for Research Abroad

  • The present results demonstrate that MAT1 can interact directly with isolated POU domains, that it can stimulate phosphorylation by CDK7-cyclin H of Oct-1 and isolated POU domains as well as isolated C-terminal domain (CTD) repeats, and that the POU domain selectively interacts with transcription factor IIH (TFIIH) relative to other general initiation factors

  • Substrate Specificity and Function of cyclin-dependent kinase (CDK)-activating kinase (CAK)—The previously reported substrates of CAK were restricted to the CDKs, the CTD of the large subunit of RNA polymerase II, and TBP

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Summary

Introduction

§ Supported in part by a fellowship from the Toyobo Biotechnology Foundation, in part by a fellowship from the International Human Frontier Science Program, and in part by a Japan Society for the Promotion of Science Postdoctoral Fellowship for Research Abroad. MAT1-containing TFIIH was shown to interact with POU domains of Oct-1 and Oct-2. MAT1 is shown to enhance the ability of a recombinant CDK7cyclin H complex (bipartite CAK) to phosphorylate isolated POU domains, intact Oct-1, and the C-terminal domain of RNA polymerase II, but not the originally defined substrate, CDK2.

Results
Conclusion
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