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Ror2, encoding a receptor-like tyrosine kinase, is required for cartilage and growth plate development
T M DeChiara1, R B Kimble, W T Poueymirou
1Regeneron Pharmaceuticals, Inc., Tarrytown, New York, USA.
Abstract:
Receptor tyrosine kinases often have critical roles in particular cell lineages by initiating signalling cascades in those lineages. Examples include the neural-specific TRK receptors, the VEGF and angiopoietin endothelial-specific receptors, and the muscle-specific MUSK receptor. Many lineage-restricted receptor tyrosine kinases were initially identified as 'orphans' homologous to known receptors, and only subsequently used to identify their unknown growth factors. Some receptor-tyrosine-kinase-like orphans still lack identified ligands as well as biological roles. Here we characterize one such orphan, encoded by Ror2 (ref. 12). We report that disruption of mouse Ror2 leads to profound skeletal abnormalities, with essentially all endochondrally derived bones foreshortened or misshapen, albeit to differing degrees. Further, we find that Ror2 is selectively expressed in the chondrocytes of all developing cartilage anlagen, where it essential during initial growth and patterning, as well as subsequently in the proliferating chondrocytes of mature growth plates, where it is required for normal expansion. Thus, Ror2 encodes a receptor-like tyrosine kinase that is selectively expressed in, and particularly important for, the chondrocyte lineage.
Insights
The Ror2 gene encodes a receptor tyrosine kinase crucial for skeletal development. Its disruption in mice causes significant bone abnormalities, highlighting its importance in chondrocytes.
Area of Science:
- Cell Biology
- Developmental Biology
- Genetics
Background:
- Receptor tyrosine kinases (RTKs) are vital signaling molecules in specific cell lineages.
- Many lineage-restricted RTKs were initially identified as orphan receptors.
- Some orphan RTKs still lack identified ligands and biological functions.
Purpose of the Study:
- To characterize the biological role of the orphan receptor tyrosine kinase, Ror2.
- To investigate the function of Ror2 in skeletal development and chondrocyte biology.
Main Methods:
- Gene disruption in mice to create Ror2 knockout models.
- Analysis of skeletal abnormalities in Ror2-deficient mice.
- Expression analysis of Ror2 in developing cartilage and growth plates.
Main Results:
- Ror2 disruption resulted in severe skeletal abnormalities, affecting endochondral bone formation.
- Ror2 is selectively expressed in chondrocytes during cartilage development and in growth plates.
- Ror2 is essential for initial cartilage growth and patterning, and for chondrocyte proliferation.
Conclusions:
- Ror2 encodes a receptor-like tyrosine kinase critical for the chondrocyte lineage.
- Ror2 plays essential roles in skeletal development, particularly in endochondral ossification.
- Ror2 is a key regulator of chondrocyte function throughout skeletal development.