Correlation Engine 2.0
Clear Search sequence regions


  • amino acid (1)
  • axin protein (2)
  • AXIN1 (9)
  • beta Catenin (3)
  • c Myc (1)
  • casein (2)
  • e casein (1)
  • human (3)
  • mutagenesis (1)
  • native (1)
  • peptides (3)
  • protein human (1)
  • protein motifs (1)
  • regulates (1)
  • Wnt (2)
  • wnt proteins (2)
  • yeast (1)
  • Sizes of these terms reflect their relevance to your search.

    Intrinsically disordered regions (IDRs) are protein regions that lack persistent secondary or tertiary structure under native conditions. IDRs represent >40% of the eukaryotic proteome and play a crucial role in protein-protein interactions. The classical approach for identification of these interaction interfaces is based on mutagenesis combined with biochemical techniques such as coimmunoprecipitation or yeast two-hybrid screening. This approach either provides information of low resolution (large deletions) or very laboriously tries to precisely define the binding epitope via single amino acid substitutions. Here, we report the use of a peptide microarray based on the human scaffold protein AXIN1 for high-throughput and -resolution mapping of binding sites for several AXIN1 interaction partners in vitro For each of the AXIN1-binding partners tested, i.e. casein kinase 1 ϵ (CK1ϵ); c-Myc; peptidyl-prolyl cis/trans isomerase, NIMA-interacting 1 (Pin1); and p53, we found at least three different epitopes, predominantly in the central IDR of AXIN1. We functionally validated the specific AXIN1-CK1ϵ interaction identified here with epitope-mimicking peptides and with AXIN1 variants having deletions of short binding epitopes. On the basis of these results, we propose a model in which AXIN1 competes with dishevelled (DVL) for CK1ϵ and regulates CK1ϵ-induced phosphorylation of DVL and activation of Wnt/β-catenin signaling. © 2018 Harnoš et al.

    Citation

    Jakub Harnoš, Jan Ryneš, Pavlína Víšková, Silvie Foldynová-Trantírková, Lola Bajard-Ešner, Lukáš Trantírek, Vítězslav Bryja. Analysis of binding interfaces of the human scaffold protein AXIN1 by peptide microarrays. The Journal of biological chemistry. 2018 Oct 19;293(42):16337-16347

    Expand section icon Mesh Tags

    Expand section icon Substances


    PMID: 30166345

    View Full Text