Correlation Engine 2.0
Clear Search sequence regions


  • GAL11 (1)
  • Gcn4 (5)
  • Med15 (3)
  • protein complex (2)
  • protein domains (1)
  • subunit (3)
  • yeast (1)
  • Sizes of these terms reflect their relevance to your search.

    Transcription activation domains (ADs) are inherently disordered proteins that often target multiple coactivator complexes, but the specificity of these interactions is not understood. Efficient transcription activation by yeast Gcn4 requires its tandem ADs and four activator-binding domains (ABDs) on its target, the Mediator subunit Med15. Multiple ABDs are a common feature of coactivator complexes. We find that the large Gcn4-Med15 complex is heterogeneous and contains nearly all possible AD-ABD interactions. Gcn4-Med15 forms via a dynamic fuzzy protein-protein interface, where ADs bind the ABDs in multiple orientations via hydrophobic regions that gain helicity. This combinatorial mechanism allows individual low-affinity and specificity interactions to generate a biologically functional, specific, and higher affinity complex despite lacking a defined protein-protein interface. This binding strategy is likely representative of many activators that target multiple coactivators, as it allows great flexibility in combinations of activators that can cooperate to regulate genes with variable coactivator requirements. Copyright © 2018 The Authors. Published by Elsevier Inc. All rights reserved.

    Citation

    Lisa M Tuttle, Derek Pacheco, Linda Warfield, Jie Luo, Jeff Ranish, Steven Hahn, Rachel E Klevit. Gcn4-Mediator Specificity Is Mediated by a Large and Dynamic Fuzzy Protein-Protein Complex. Cell reports. 2018 Mar 20;22(12):3251-3264

    Expand section icon Mesh Tags

    Expand section icon Substances


    PMID: 29562181

    View Full Text