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Substrate specificity of the cdk-activating kinase (CAK) is altered upon association with TFIIH
M Rossignol1, I Kolb-Cheynel, J M Egly
1Institut de Génétique et de Biologie Moléculaire et Cellulaire, UPR 6520 (CNRS), Unité 184 (INSERM), Illkirch, CU de Strasbourg, France.
Abstract:
The transcription/DNA repair factor TFIIH consists of nine subunits, several exhibiting known functions: helicase/ATPase, kinase activity and DNA binding. Three subunits of TFIIH, cdk7, cyclin H and MAT1, form a ternary complex, cdk-activating kinase (CAK), found either on its own or as part of TFIIH. In the present work, we demonstrate that purified human CAK complex (free CAK) and recombinant CAK (rCAK) produced in insect cells exhibit a strong preference for the cyclin-dependent kinase 2 (cdk2) over a ctd oligopeptide substrate (which mimics the carboxy-terminal domain of the RNA polymerase II). In contrast, TFIIH preferentially phosphorylates the ctd as well as TFIIE alpha, but not cdk2. TFIIH was resolved into four subcomplexes: the kinase complex composed of cdk7, cyclin H and MAT1; the core TFIIH which contains XPB, p62, p52, p44 and p34; and two other subcomplexes in which XPD is found associated with either the kinase complex or with the core TFIIH. Using these fractions, we demonstrate that TFIIH lacking the CAK subcomplex completely recovers its transcriptional activity in the presence of free CAK. Furthermore, studies examining the interactions between TFIIH subunits provide evidence that CAK is integrated within TFIIH via XPB and XPD.
Insights
The transcription factor TFIIH
Area of Science:
- Molecular Biology
- Biochemistry
- Cellular Biology
Background:
- TFIIH is a crucial transcription/DNA repair factor with nine subunits.
- A key subcomplex is the cdk-activating kinase (CAK), comprising cdk7, cyclin H, and MAT1.
- CAK can exist independently or as part of TFIIH.
Purpose of the Study:
- To investigate the substrate specificity of free CAK versus the holoenzyme TFIIH.
- To elucidate the role of the CAK subcomplex in TFIIH's transcriptional activity.
- To identify the integration mechanism of CAK within the TFIIH complex.
Main Methods:
- Purification of human CAK complex and recombinant CAK (rCAK).
- Enzymatic assays to determine substrate preferences (cdk2 vs. CTD peptide).
- Subcomplex analysis of TFIIH and functional reconstitution experiments.
Main Results:
- Free CAK preferentially phosphorylates cdk2, while TFIIH targets the CTD and TFIIE alpha.
- TFIIH lacking CAK regained transcriptional activity upon addition of free CAK.
- CAK integrates into TFIIH through interactions with XPB and XPD subunits.
Conclusions:
- CAK exhibits distinct substrate specificity compared to the holoenzyme TFIIH.
- The CAK subcomplex is essential for TFIIH's transcriptional function.
- XPB and XPD mediate the integration of CAK into the TFIIH complex.