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Muenke syndrome mutation, FgfR3P²⁴⁴R, causes TMJ defects
1Division of Orthopaedic Surgery, The Children's Hospital of Philadelphia, Abramson Research Center, 3516 Civic Center Blvd, Philadelphia, PA 19107, USA.
Abstract:
Muenke syndrome is characterized by various craniofacial deformities and is caused by an autosomal-dominant activating mutation in fibroblast growth factor receptor 3 (FGFR3(P250R) ). Here, using mice carrying a corresponding mutation (FgfR3(P244R) ), we determined whether the mutation affects temporomandibular joint (TMJ) development and growth. In situ hybridization showed that FgfR3 was expressed in condylar chondroprogenitors and maturing chondrocytes that also expressed the Indian hedgehog (Ihh) receptor and transcriptional target Patched 1(Ptch1). In FgfR3(P244R) mutants, the condyles displayed reduced levels of Ihh expression, H4C-positive proliferating chondroprogenitors, and collagen type II- and type X-expressing chondrocytes. Primary bone spongiosa formation was also disturbed and was accompanied by increased osteoclastic activity and reduced trabecular bone formation. Treatment of wild-type condylar explants with recombinant FGF2/FGF9 decreased Ptch1 and PTHrP expression in superficial/polymorphic layers and proliferation in chondroprogenitors. We also observed early degenerative changes of condylar articular cartilage, abnormal development of the articular eminence/glenoid fossa in the TMJ, and fusion of the articular disc. Analysis of our data indicates that the activating FgfR3(P244R) mutation disturbs TMJ developmental processes, likely by reducing hedgehog signaling and endochondral ossification. We suggest that a balance between FGF and hedgehog signaling pathways is critical for the integrity of TMJ development and for the maintenance of cellular organization.
Insights
Muenke syndrome mutations in fibroblast growth factor receptor 3 (FGFR3) disrupt temporomandibular joint (TMJ) development. This study reveals FGFR3 mutations impair hedgehog signaling and endochondral ossification, impacting TMJ structure and cellular organization.
Area of Science:
- Developmental Biology
- Genetics
- Orthodontics
Background:
- Muenke syndrome, caused by FGFR3 mutations, leads to craniofacial deformities.
- The role of FGFR3 in temporomandibular joint (TMJ) development is not fully understood.
Purpose of the Study:
- To investigate the impact of an activating FGFR3 mutation on TMJ development and growth in mice.
- To elucidate the molecular mechanisms underlying FGFR3-mediated TMJ abnormalities.
Main Methods:
- Utilized a mouse model with a specific FgfR3 mutation (FgfR3(P244R)).
- Employed in situ hybridization to analyze gene expression patterns (FgfR3, Ihh, Ptch1).
- Assessed chondroprogenitor proliferation, chondrocyte differentiation, and bone formation markers.
Main Results:
- FgfR3(P244R) mutants showed reduced Indian hedgehog (Ihh) signaling and chondrogenesis.
- Abnormalities included disturbed primary bone spongiosa formation, increased osteoclast activity, and reduced trabecular bone.
- Degenerative changes in articular cartilage, abnormal TMJ fossa development, and articular disc fusion were observed.
Conclusions:
- Activating FGFR3 mutations disrupt TMJ development by impairing hedgehog signaling and endochondral ossification.
- A balance between FGF and hedgehog signaling is crucial for TMJ integrity and cellular organization.

