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CDK8/19 Mediator kinases potentiate induction of transcription by NFκB
Mengqian Chen1, Jiaxin Liang1, Hao Ji1
1Department of Drug Discovery and Biomedical Sciences, University of South Carolina, Columbia, SC 29208.
Abstract:
The nuclear factor-κB (NFκB) family of transcription factors has been implicated in inflammatory disorders, viral infections, and cancer. Most of the drugs that inhibit NFκB show significant side effects, possibly due to sustained NFκB suppression. Drugs affecting induced, but not basal, NFκB activity may have the potential to provide therapeutic benefit without associated toxicity. NFκB activation by stress-inducible cell cycle inhibitor p21 was shown to be mediated by a p21-stimulated transcription-regulating kinase CDK8. CDK8 and its paralog CDK19, associated with the transcriptional Mediator complex, act as coregulators of several transcription factors implicated in cancer; CDK8/19 inhibitors are entering clinical development. Here we show that CDK8/19 inhibition by different small-molecule kinase inhibitors or shRNAs suppresses the elongation of NFκB-induced transcription when such transcription is activated by p21-independent canonical inducers, such as TNFα. On NFκB activation, CDK8/19 are corecruited with NFκB to the promoters of the responsive genes. Inhibition of CDK8/19 kinase activity suppresses the RNA polymerase II C-terminal domain phosphorylation required for transcriptional elongation, in a gene-specific manner. Genes coregulated by CDK8/19 and NFκB include IL8, CXCL1, and CXCL2, which encode tumor-promoting proinflammatory cytokines. Although it suppressed newly induced NFκB-driven transcription, CDK8/19 inhibition in most cases had no effect on the basal expression of NFκB-regulated genes or promoters; the same selective regulation of newly induced transcription was observed with other transcription signals potentiated by CDK8/19. This selective role of CDK8/19 identifies these kinases as mediators of transcriptional reprogramming, a key aspect of development and differentiation as well as pathological processes.
Insights
Inhibiting CDK8/19 kinases selectively blocks newly induced nuclear factor-κB (NFκB) transcription, offering a potential therapeutic strategy for inflammatory diseases and cancer with fewer side effects.
Area of Science:
- Molecular Biology
- Cell Biology
- Biochemistry
Background:
- Nuclear factor-κB (NFκB) is crucial in inflammation, viral infections, and cancer.
- Current NFκB inhibitors cause side effects due to sustained suppression.
- Targeting induced NFκB activity may offer safer therapeutic options.
Purpose of the Study:
- To investigate the role of CDK8/19 kinases in NFκB-mediated transcription.
- To determine if CDK8/19 inhibition can selectively target induced NFκB activity.
Main Methods:
- Utilized small-molecule kinase inhibitors and shRNAs to inhibit CDK8/19.
- Analyzed NFκB-induced gene transcription and RNA polymerase II phosphorylation.
- Examined gene expression of cytokines like IL8, CXCL1, and CXCL2.
Main Results:
- CDK8/19 inhibition suppressed NFκB-induced transcriptional elongation by various inducers.
- CDK8/19 kinases are recruited to NFκB target gene promoters upon activation.
- Inhibition of CDK8/19 kinase activity reduced RNA polymerase II C-terminal domain phosphorylation.
- CDK8/19 inhibition selectively affected newly induced transcription, not basal levels.
Conclusions:
- CDK8/19 kinases are key regulators of induced NFκB transcription.
- CDK8/19 inhibition selectively targets transcriptional reprogramming, offering a potential therapeutic window.
- This selective targeting may lead to treatments for inflammatory disorders and cancer with reduced toxicity.
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