CRD motif and sFRPs influence on Wnt signaling (WP4231)
Danio rerio
Wnt signaling plays a crucial role in embryogenesis as well as in adult stem cell regulation and cancer. The Wnt signaling cascade is initiated by binding of secreted Wnt proteins to seven-pass transmembrane Fz receptors and diverse co-receptors. The extracellular CRD of Fz family members thereby serves as a highly conserved binding site for Wnt ligands. When expressed alone, Fz7 or Ror2 receptors activate distinct non-canonical Wnt pathways stimulated by Wnt5a. When sFRP2 is present, Fz7 receptor endocytosis is prevented, and Fz7 signaling is inhibited, whereas Ror2 signaling is enhanced indicated by stabilized Wnt5a-Ror2 membrane complexes. When both receptors are present in the same cell, the Ror2-CRD acts in a similar way as sFRP2, leading to increased Ror2 activation at the expense of Fz7 signaling.
Authors
Denise SlenterActivity
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Organisms
Danio rerioCommunities
Annotations
Pathway Ontology
Wnt signaling pathwayCell Type Ontology
embryonic stem cellLabel | Type | Compact URI | Comment |
---|---|---|---|
Ror2 receptor | GeneProduct | ensembl:ENSDARG00000076227 | A single-pass transmembrane receptor tyrosine kinase and contains an N-terminal CRD that interacts with Wnt5a. |
Wnt5a | GeneProduct | ensembl:ENSDARG00000104973 | |
rhoaa | GeneProduct | ensembl:ENSDARG00000026845 | |
sFRP2 | GeneProduct | ensembl:ENSDARG00000070050 | |
rhoab | GeneProduct | ensembl:ENSDARG00000094673 | |
rhoac | GeneProduct | ensembl:ENSDARG00000099709 | |
Fz7a | GeneProduct | ensembl:ENSDARG00000060004 | |
Fz7b | GeneProduct | ensembl:ENSDARG00000027589 | |
JNK | Protein | uniprot:F1R9P8 | Choose ID here for 'Jnk1/mapk8-associated membrane protein' |
papc | Protein | ensembl:ENSDARG00000102185 |
References
- Secreted Frizzled-related Protein 2 (sFRP2) Redirects Non-canonical Wnt Signaling from Fz7 to Ror2 during Vertebrate Gastrulation. Brinkmann EM, Mattes B, Kumar R, Hagemann AIH, Gradl D, Scholpp S, et al. J Biol Chem. 2016 Jun 24;291(26):13730–42. PubMed Europe PMC Scholia