Wnt/β-catenin signaling requires interaction of the Dishevelled DEP domain and C terminus with a discontinuous motif in Frizzled

Daniele V. F. Tauriello, Ingrid Jordens, Katharina Kirchner, Jerry W. Slootstra, Tom Kruitwagen, Britta A. M. Bouwman, Maria Noutsou, Stefan G. D. Rüdiger, Klaus Schwamborn, Alexandra Schambony, Madelon M. Maurice

Research output: Contribution to journalArticleAcademicpeer-review

Abstract

Wnt binding to members of the seven-span transmembrane Frizzled (Fz) receptor family controls essential cell fate decisions and tissue polarity during development and in adulthood. The Fz-mediated membrane recruitment of the cytoplasmic effector Dishevelled (Dvl) is a critical step in Wnt/β-catenin signaling initiation, but how Fz and Dvl act together to drive downstream signaling events remains largely undefined. Here, we use an Fz peptide-based microarray to uncover a mechanistically important role of the bipartite Dvl DEP domain and C terminal region (DEP-C) in binding a three-segmented discontinuous motif in Fz. We show that cooperative use of two conserved motifs in the third intracellular loop and the classic C-terminal motif of Fz is required for DEP-C binding and Wnt-induced β-catenin activation in cultured cells and Xenopus embryos. Within the complex, the Dvl DEP domain mainly binds the Fz C-terminal tail, whereas a short region at the Dvl C-terminal end is required to bind the Fz third loop and stabilize the Fz-Dvl interaction. We conclude that Dvl DEP-C binding to Fz is a key event in Wnt-mediated signaling relay to β-catenin. The discontinuous nature of the Fz-Dvl interface may allow for precise regulation of the interaction in the control of Wnt-dependent cellular responses.
Original languageEnglish
Pages (from-to)E812-E820
Number of pages9
JournalProceedings of the National Academy of Sciences of the United States of America
Volume109
Issue number14
DOIs
Publication statusPublished - 3 Apr 2012

Keywords

  • Peptide microarray
  • Protein-protein interaction
  • Wingless signaling
  • beta catenin
  • DNA
  • frizzled protein
  • synthetic peptide
  • Wnt protein
  • article
  • HEK293 cell line
  • confocal microscopy
  • controlled study
  • human
  • human cell
  • nonhuman
  • peptide library
  • priority journal
  • protein binding
  • protein domain
  • protein microarray
  • protein motif
  • protein protein interaction
  • protein purification
  • signal transduction
  • Xenopus

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