Drosophila Ror is a nervous system-specific co-receptor for Wnt ligands

2018 | journal article. A publication with affiliation to the University of Göttingen.

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​Drosophila Ror is a nervous system-specific co-receptor for Wnt ligands​
Ripp, C.; Loth, J.; Petrova, I.; Linnemannstöns, K.; Ulepic, M.; Fradkin, L. & Noordermeer, J. et al.​ (2018) 
Biology Open7(11) art. bio033001​.​ DOI: https://doi.org/10.1242/bio.033001 

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Authors
Ripp, Caroline; Loth, Julia; Petrova, Iveta; Linnemannstöns, Karen; Ulepic, Monique; Fradkin, Lee; Noordermeer, Jasprien; Wodarz, Andreas
Abstract
Wnt ligands are secreted glycoproteins that control many developmental processes and are crucial for homeostasis of numerous tissues in the adult organism. Signal transduction of Wnts involves the binding of Wnts to receptor complexes at the surface of target cells. These receptor complexes are commonly formed between a member of the Frizzled family of seven-pass transmembrane proteins and a co-receptor, which is usually a single-pass transmembrane protein. Among these co-receptors are several with structural homology to receptor tyrosine kinases, including Ror, PTK7, Ryk and MUSK. In vertebrates, Ror-2 and PTK7 are important regulators of planar cell polarity (PCP). By contrast, PCP phenotypes were not reported for mutations in off-track (otk) and off-track2 (otk2), encoding the Drosophila orthologs of PTK7. Here we show that Drosophila Ror is expressed in the nervous system and localizes to the plasma membrane of perikarya and neurites. A null allele of Ror is homozygous viable and fertile, does not display PCP phenotypes and interacts genetically with mutations in otk and otk2 We show that Ror binds specifically to Wingless (Wg), Wnt4 and Wnt5 and also to Frizzled2 (Fz2) and Otk. Our findings establish Drosophila Ror as a Wnt co-receptor expressed in the nervous system.
Issue Date
2018
Journal
Biology Open 
Organization
Institut für Anatomie und Embryologie 
Language
English

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