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Updated: Oct 15, 2025

The Power of Simplicity: Sea Urchin Embryos as in Vivo Developmental Models for Studying Complex Cell-to-cell Signaling Network Interactions
Published on: February 16, 2017
Receptor Tyrosine Kinases ror1/2 and ryk Are Co-expressed with Multiple Wnt Signaling Components During Early
Abstract:
AbstractA combination of receptors, co-receptors, and secreted Wnt modulators form protein complexes at the cell surface that activate one or more of the three different Wnt signaling pathways (Wnt/β-catenin, Wnt/JNK, and Wnt/Ca2+). Two or more of these pathways are often active in the same cellular territories, forming Wnt signaling networks; however, the molecular mechanisms necessary to integrate information from these pathways in these situations are unclear in any in vivo model system. Recent studies have implicated two Wnt binding receptor tyrosine kinases, receptor tyrosine kinase-like orphan receptor (Ror) and related-to-receptor tyrosine kinase (Ryk), in the regulation of canonical and non-canonical Wnt signaling pathways, depending on the context; however, the spatiotemporal expression of these genes in relation to Wnt signaling components has not been well characterized in most deuterostome model systems. Here we use a combination of phylogenetic and spatiotemporal gene expression analyses to characterize Ror and Ryk orthologs in sea urchin embryos. Our phylogenetic analysis indicates that both ror1/2 and ryk originated as single genes from the metazoan ancestor. Expression analyses indicate that ror1/2 and ryk are expressed in the same domains of many Wnt ligands and Frizzled receptors essential for the specification and patterning of germ layers along the early anterior-posterior axis. In addition, both genes are co-expressed with Wnt signaling components in the gut, ventral ectoderm, and anterior neuroectoderm territories later in development. Together, our results indicate that Ror and Ryk have a complex evolutionary history and that their spatiotemporal expression suggests that they could contribute to the complexity of Wnt signaling in early sea urchin embryogenesis.
Insights
Sea urchin Ror and Ryk receptor tyrosine kinases have ancient origins and complex expression patterns. Their co-expression with Wnt signaling components suggests a role in early embryonic development.
Area of Science:
- Developmental Biology
- Molecular Biology
- Evolutionary Biology
Background:
- Wnt signaling pathways regulate diverse cellular processes through complex protein interactions.
- Integrating signals from multiple Wnt pathways is crucial but poorly understood in vivo.
- Receptor tyrosine kinases Ror and Ryk are implicated in Wnt signaling, but their evolutionary and expression patterns are not well-characterized in deuterostomes.
Purpose of the Study:
- To characterize the evolutionary history and spatiotemporal expression of Ror and Ryk orthologs in sea urchin embryos.
- To investigate the potential role of Ror and Ryk in Wnt signaling networks during early development.
Main Methods:
- Phylogenetic analysis of Ror and Ryk genes.
- Spatiotemporal gene expression analysis in sea urchin embryos.
- Comparative analysis with Wnt signaling components.
Main Results:
- Phylogenetic analysis indicates single Ror and Ryk gene origins from the metazoan ancestor.
- Ror and Ryk are co-expressed with Wnt ligands and Frizzled receptors during germ layer specification.
- Both genes are also co-expressed with Wnt components in the gut, ventral ectoderm, and anterior neuroectoderm later in development.
Conclusions:
- Ror and Ryk possess a complex evolutionary history.
- Their spatiotemporal expression patterns suggest a role in integrating Wnt signaling pathways.
- These findings contribute to understanding Wnt signaling complexity in early sea urchin embryogenesis.
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