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Updated: Dec 20, 2025

Imaging Dpp Release from a Drosophila Wing Disc
Published on: October 30, 2019
The Mediator CDK8-Cyclin C complex modulates Dpp signaling in Drosophila by stimulating Mad-dependent transcription
Xiao Li1, Mengmeng Liu1, Xingjie Ren2
1Department of Molecular and Cellular Medicine, College of Medicine, Texas A&M University Health Science Center, Bryan, Texas, United States of America.
Abstract:
Dysregulation of CDK8 (Cyclin-Dependent Kinase 8) and its regulatory partner CycC (Cyclin C), two subunits of the conserved Mediator (MED) complex, have been linked to diverse human diseases such as cancer. Thus, it is essential to understand the regulatory network modulating the CDK8-CycC complex in both normal development and tumorigenesis. To identify upstream regulators or downstream effectors of CDK8, we performed a dominant modifier genetic screen in Drosophila based on the defects in vein patterning caused by specific depletion or overexpression of CDK8 or CycC in developing wing imaginal discs. We identified 26 genomic loci whose haploinsufficiency can modify these CDK8- or CycC-specific phenotypes. Further analysis of two overlapping deficiency lines and mutant alleles led us to identify genetic interactions between the CDK8-CycC pair and the components of the Decapentaplegic (Dpp, the Drosophila homolog of TGFβ, or Transforming Growth Factor-β) signaling pathway. We observed that CDK8-CycC positively regulates transcription activated by Mad (Mothers against dpp), the primary transcription factor downstream of the Dpp/TGFβ signaling pathway. CDK8 can directly interact with Mad in vitro through the linker region between the DNA-binding MH1 (Mad homology 1) domain and the carboxy terminal MH2 (Mad homology 2) transactivation domain. Besides CDK8 and CycC, further analyses of other subunits of the MED complex have revealed six additional subunits that are required for Mad-dependent transcription in the wing discs: Med12, Med13, Med15, Med23, Med24, and Med31. Furthermore, our analyses confirmed the positive roles of CDK9 and Yorkie in regulating Mad-dependent gene expression in vivo. These results suggest that CDK8 and CycC, together with a few other subunits of the MED complex, may coordinate with other transcription cofactors in regulating Mad-dependent transcription during wing development in Drosophila.
Insights
Dysregulation of Cyclin-Dependent Kinase 8 (CDK8) and Cyclin C (CycC) is linked to cancer. This study reveals CDK8-CycC positively regulates Mad-dependent transcription in Drosophila, involving other Mediator complex subunits and signaling pathways.
Area of Science:
- Molecular Biology
- Developmental Biology
- Genetics
Background:
- Dysregulation of CDK8-CycC, part of the Mediator complex, is implicated in human diseases like cancer.
- Understanding the regulatory network of CDK8-CycC is crucial for normal development and tumorigenesis.
Purpose of the Study:
- To identify upstream regulators and downstream effectors of CDK8 in Drosophila.
- To elucidate the role of the CDK8-CycC complex in developmental gene regulation.
Main Methods:
- A dominant modifier genetic screen in Drosophila using wing vein patterning defects.
- Genetic interaction analysis with the Decapentaplegic (Dpp) signaling pathway.
- In vitro interaction studies between CDK8 and Mad.
Main Results:
- Identified 26 genomic loci modifying CDK8/CycC phenotypes.
- Revealed genetic interactions between CDK8-CycC and the Dpp pathway.
- Demonstrated CDK8-CycC positively regulates Mad-dependent transcription, with CDK8 directly interacting with Mad.
- Six additional Mediator subunits (Med12, Med13, Med15, Med23, Med24, Med31) and CDK9/Yorkie confirmed as essential for Mad-dependent transcription.
Conclusions:
- CDK8-CycC positively regulates Mad-dependent transcription in Drosophila wing development.
- CDK8 interacts with Mad, and multiple Mediator subunits are critical for this process.
- CDK8-CycC likely coordinates with other transcription factors to regulate Mad-dependent gene expression.
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