4.8 Article

Structure and noncanonical Cdk8 activation mechanism within an Argonaute-containing Mediator kinase module

Journal

SCIENCE ADVANCES
Volume 7, Issue 3, Pages -

Publisher

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/sciadv.abd4484

Keywords

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Funding

  1. Cancer Prevention Research Institute of Texas [13127]
  2. Welch Foundation [AU-2050-20200401]
  3. U.S. National Institutes of Health [CA196539, GM110174, AI118891, HD087417, HD094378, R01 GM124320, R01 GM123233, R01 GM-109045, S10 OD023592-01, T32 GM133398-01]
  4. Ministry of Science and Technology, Taiwan, R.O.C. [MOST 108-2917-I-564-025]

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The study reveals the structure of the Cdk8 kinase module (CKM), showing that Med12 activates Cdk8 by interacting with CycC, while Med13 has a characteristic Argonaute-like bi-lobal architecture. These findings provide insights into the functional and pathological mechanisms of CKM.
The Cdk8 kinase module (CKM) in Mediator, comprising Med13, Med12, CycC, and Cdk8, regulates RNA polymerase II transcription through kinase-dependent and -independent functions. Numerous pathogenic mutations causative for neurodevelopmental disorders and cancer congregate in CKM subunits. However, the structure of the intact CKM and the mechanism by which Cdk8 is non-canonically activated and functionally affected by oncogenic CKM alterations are poorly understood. Here, we report a cryo-electron microscopy structure of Saccharomyces cerevisiae CKM that redefines prior CKM structural models and explains the mechanism of Med12-dependent Cdk8 activation. Med12 interacts extensively with CycC and activates Cdk8 by stabilizing its activation (T-)loop through conserved Med12 residues recurrently mutated in human tumors. Unexpectedly, Med13 has a characteristic Argonaute-like bi-lobal architecture. These findings not only provide a structural basis for understanding CKM function and pathological dysfunction, but also further impute a previously unknown regulatory mechanism of Mediator in transcriptional modulation through its Med13 Argonaute-like features.

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