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Published on: September 30, 2016
Mediator Kinase Inhibitor Selectivity and Activity in Colorectal Cancer
Maria J Ortiz-Ruiz1, Olajumoke Popoola1, Konstantinos Mitsopoulos1
1Centre for Cancer Drug Discovery, The Institute of Cancer Research, London SM2 5NG, U.K.
Abstract:
The Mediator complex is a regulator of gene expression, influencing chromatin structure and RNA polymerase II-mediated transcription. Its activity is controlled by a protein kinase module, which includes cyclin-dependent kinases 8 and 19, that phosphorylates RNA polymerase II and transcription factors to regulate gene expression. Using orthogonal approaches combining chemical and genetic tools, we demonstrated the selectivity of our small-molecule inhibitors derived from 3,4,5-trisubstituted pyridine and 3-methyl-1H-pyrazolo[3,4-b]pyridine chemical series in human colorectal cell culture and tumor xenograft models. The lack of activity of our inhibitors in CDK8/19 double knockout models, with respect to molecular, proliferative, and antitumor end points, revealed their specificity and dependence on these kinases. Using our chemical probes and knockout models, we explored Mediator kinase function in human colorectal cancer cells. Phospho-proteome profiling revealed substrates enriched with transcription and chromatin regulators, while promoter reporter experiments identified transcription factor binding sites, including TCF/LEF and AP1, regulated by Mediator kinases. Additionally, altered phosphorylation of several Mediator subunits suggests a mechanism for the rapid regulation of the Mediator complex. Overall, our results demonstrate that CDK8 and CDK19 play pivotal roles in regulating gene expression associated with oncogene activation and signaling pathways. Further studies are warranted to elucidate their broader cellular roles and regulatory mechanisms. The selective inhibitors validated in this study will provide valuable tools for such mechanistic investigations into Mediator kinase functions and their potential therapeutic exploitation.
Insights
Selective small-molecule inhibitors targeting cyclin-dependent kinases 8 and 19 (CDK8/19) effectively regulate gene expression in colorectal cancer. These inhibitors offer valuable tools for investigating Mediator kinase functions and potential cancer therapies.
Area of Science:
- Molecular Biology
- Gene Regulation
- Cancer Research
Background:
- The Mediator complex regulates gene expression by influencing chromatin structure and transcription.
- Cyclin-dependent kinases 8 and 19 (CDK8/19) form a protein kinase module controlling Mediator complex activity.
- CDK8/19 phosphorylates RNA polymerase II and transcription factors, impacting gene expression.
Purpose of the Study:
- To develop and validate selective small-molecule inhibitors for CDK8/19.
- To investigate the role of Mediator kinases in human colorectal cancer.
- To explore the mechanisms by which Mediator kinases regulate gene expression.
Main Methods:
- Utilized orthogonal approaches combining chemical inhibitors and genetic knockout models (CDK8/19 double knockout).
- Employed human colorectal cell culture and tumor xenograft models.
- Performed phospho-proteome profiling and promoter reporter assays.
Main Results:
- Demonstrated selectivity of novel pyridine and pyrazolo[3,4-b]pyridine inhibitors for CDK8/19 in colorectal cancer models.
- Confirmed inhibitor specificity and dependence on CDK8/19 through knockout studies.
- Identified key substrates and transcription factors (TCF/LEF, AP1) regulated by Mediator kinases.
- Revealed altered phosphorylation of Mediator subunits, suggesting rapid regulatory mechanisms.
Conclusions:
- CDK8 and CDK19 are pivotal in regulating gene expression linked to oncogene activation and signaling pathways in colorectal cancer.
- Selective inhibitors developed in this study are valuable tools for mechanistic investigations.
- Further research is needed to fully elucidate the cellular roles and regulatory mechanisms of Mediator kinases for therapeutic potential.
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