Structure and function of the ROR2 cysteine-rich domain in vertebrate noncanonical WNT5A signaling

Author:

Griffiths Samuel C1ORCID,Tan Jia2ORCID,Wagner Armin3ORCID,Blazer Levi L4ORCID,Adams Jarrett J4,Srinivasan Srisathya2ORCID,Moghisaei Shayan2,Sidhu Sachdev S4ORCID,Siebold Christian1ORCID,Ho Hsin-Yi Henry2ORCID

Affiliation:

1. Division of Structural Biology, Wellcome Centre for Human Genetics, University of Oxford

2. Department of Cell Biology and Human Anatomy, University of California, Davis School of Medicine

3. Science Division, Diamond Light Source, Harwell Science and Innovation Campus

4. School of Pharmacy, University of Waterloo

Abstract

The receptor tyrosine kinase ROR2 mediates noncanonical WNT5A signaling to orchestrate tissue morphogenetic processes, and dysfunction of the pathway causes Robinow syndrome, brachydactyly B, and metastatic diseases. The domain(s) and mechanisms required for ROR2 function, however, remain unclear. We solved the crystal structure of the extracellular cysteine-rich (CRD) and Kringle (Kr) domains of ROR2 and found that, unlike other CRDs, the ROR2 CRD lacks the signature hydrophobic pocket that binds lipids/lipid-modified proteins, such as WNTs, suggesting a novel mechanism of ligand reception. Functionally, we showed that the ROR2 CRD, but not other domains, is required and minimally sufficient to promote WNT5A signaling, and Robinow mutations in the CRD and the adjacent Kr impair ROR2 secretion and function. Moreover, using function-activating and -perturbing antibodies against the Frizzled (FZ) family of WNT receptors, we demonstrate the involvement of FZ in WNT5A-ROR signaling. Thus, ROR2 acts via its CRD to potentiate the function of a receptor super-complex that includes FZ to transduce WNT5A signals.

Funder

National Institutes of Health

Cancer Research UK

Wellcome Trust

Publisher

eLife Sciences Publications, Ltd

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