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Inhibition of transforming growth factor-beta type II receptor signaling accelerates tooth formation in mouse first
1Center for Craniofacial Molecular Biology, School of Dentistry, University of Southern California, 2250 Alcazar Street, CSA 103, Los Angeles, CA 90033, USA. ychai@hsc.usc.edu
Abstract:
Members of the transforming growth factor-beta (TGF-beta) superfamily signal through their cognate receptors to determine cell phenotypes during embryogenesis. Our previous studies on the regulation of first branchial arch morphogenesis have identified critical components of a hierarchy of different TGF-beta isoforms and their possible functions in regulating tooth and cartilage formation during mandibular morphogenesis. Here we tested the hypothesis that TGF-beta type II receptor (TGF-beta IIR) is a critical component in the TGF-beta signaling pathway regulating tooth formation. To establish the precise location of TGF-beta ligand and its cognate receptor, we first performed detailed analyses of the localization of both TGF-beta2 and TGF-beta IIR during initiation and subsequent morphogenesis of developing embryonic mouse tooth organs. A possible autocrine functional role for TGF-beta and its cognate receptor (TGF-beta IIR) was inferred due to the temporal and spatial localization patterns during the early inductive stages of tooth morphogenesis. Second, loss of function of TGF-beta IIR in a mandibular explant culture model resulted in the acceleration of tooth formation to the cap stage while the mandibular explants in the control group only showed bud stage tooth formation. In addition, there was a significant increase in odontogenic epithelial cell proliferation following TGF-beta IIR abrogation. These results demonstrate, for the first time, that abrogation of the TGF-beta IIR stimulates embryonic tooth morphogenesis in culture and reverses the negative regulation of endogenous TGF-beta signaling upon enamel organ epithelial cell proliferation.
Insights
The transforming growth factor-beta type II receptor (TGF-beta IIR) is crucial for regulating embryonic tooth development. Blocking TGF-beta IIR accelerates tooth formation and increases cell proliferation during mandibular morphogenesis.
Area of Science:
- Developmental Biology
- Cell Signaling
- Craniofacial Development
Background:
- Transforming growth factor-beta (TGF-beta) superfamily signaling is vital for embryonic development.
- Previous research identified TGF-beta isoforms regulating mandibular morphogenesis, including tooth and cartilage formation.
Purpose of the Study:
- To investigate the role of the TGF-beta type II receptor (TGF-beta IIR) in embryonic tooth formation.
- To determine if TGF-beta IIR is a critical component in the TGF-beta signaling pathway regulating tooth development.
Main Methods:
- Localization analysis of TGF-beta2 and TGF-beta IIR during embryonic mouse tooth organ development.
- Mandibular explant culture model to assess the effects of TGF-beta IIR loss-of-function on tooth morphogenesis.
- Analysis of odontogenic epithelial cell proliferation following TGF-beta IIR abrogation.
Main Results:
- TGF-beta2 and TGF-beta IIR showed specific temporal and spatial localization during early tooth morphogenesis, suggesting an autocrine role.
- Loss of TGF-beta IIR function in mandibular explants accelerated tooth formation to the cap stage.
- Abrogation of TGF-beta IIR significantly increased odontogenic epithelial cell proliferation.
Conclusions:
- TGF-beta IIR is a critical regulator of embryonic tooth morphogenesis.
- Blocking TGF-beta IIR stimulates tooth development and reverses negative regulation of enamel organ epithelial cell proliferation.
- These findings highlight a novel mechanism in TGF-beta mediated control of craniofacial development.