Department of Molecular and Cellular Medicine, College of Medicine, Texas A&M University Health Science Center, College Station, TX 77843, USA.
Department of Biochemistry and Molecular Biology, Tulane University School of Medicine, Louisiana Cancer Research Center, 1700 Tulane Avenue, New Orleans, LA 70112, USA.
Development. 2024 Dec 1;151(23). doi: 10.1242/dev.203111. Epub 2024 Nov 29.
The Mediator complex plays a pivotal role in facilitating RNA polymerase II-dependent transcription in eukaryotes. Within this complex, the CDK8 kinase module (CKM), comprising CDK8, Cyclin C (CycC), Med12 and Med13, serves as a dissociable subcomplex that modulates the activity of the small Mediator complex. Genetic studies in Drosophila have revealed distinct phenotypes associated with mutations in CKM subunits, but the underlying mechanisms have remained unclear. Using Drosophila as a model, we generated transgenic strains to deplete individually or simultaneously the four CKM subunits in all possible combinations, uncovering unique phenotypes in the eyes and wings. Depletion of CDK8-CycC enhanced E2F1 target gene expression and promoted cell-cycle progression, whereas Med12-Med13 depletion had no significant impact on these processes. Instead, depleting Med12-Med13 altered the expression of ribosomal protein genes and fibrillarin, and reduced nascent protein synthesis, indicating a severe reduction in ribosome biogenesis and cellular growth compared to the loss of CDK8-CycC. These findings reveal distinct in vivo roles for CKM subunits, with Med12-Med13 disruption having a more pronounced effect on ribosome biogenesis and protein synthesis than CDK8-CycC loss.
中介复合物在真核生物中促进 RNA 聚合酶 II 依赖性转录中起着关键作用。在该复合物中,CDK8 激酶模块(CKM)由 CDK8、Cyclin C(CycC)、Med12 和 Med13 组成,作为一个可分离的亚复合物,调节小的中介复合物的活性。果蝇中的遗传研究揭示了与 CKM 亚基突变相关的不同表型,但潜在的机制仍不清楚。我们使用果蝇作为模型,生成了转基因品系,以单独或同时耗尽所有可能组合的四个 CKM 亚基,在眼睛和翅膀中揭示了独特的表型。CDK8-CycC 的耗竭增强了 E2F1 靶基因的表达并促进了细胞周期进程,而 Med12-Med13 的耗竭对这些过程没有显著影响。相反,Med12-Med13 的耗竭改变了核糖体蛋白基因和纤维蛋白的表达,并减少了新生蛋白质的合成,表明与 CDK8-CycC 的丧失相比,核糖体生物发生和细胞生长受到严重抑制。这些发现揭示了 CKM 亚基在体内的不同作用,与 CDK8-CycC 丧失相比,Med12-Med13 的破坏对核糖体生物发生和蛋白质合成的影响更为明显。