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 language | English |
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Pages (from-to) | E812-E820 |
Number of pages | 9 |
Journal | Proceedings of the National Academy of Sciences of the United States of America |
Volume | 109 |
Issue number | 14 |
DOIs | |
Publication status | Published - 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