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BMP Signaling in Regulating Mesenchymal Stem Cells in Incisor Homeostasis.


ABSTRACT: Bone morphogenetic protein (BMP) signaling performs multiple essential functions during craniofacial development. In this study, we used the adult mouse incisor as a model to uncover how BMP signaling maintains tissue homeostasis and regulates mesenchymal stem cell (MSC) fate by mediating WNT and FGF signaling. We observed a severe defect in the proximal region of the adult mouse incisor after loss of BMP signaling in the Gli1+ cell lineage, indicating that BMP signaling is required for cell proliferation and odontoblast differentiation. Our study demonstrates that BMP signaling serves as a key regulator that antagonizes WNT and FGF signaling to regulate MSC lineage commitment. In addition, BMP signaling in the Gli1+ cell lineage is also required for the maintenance of quiescent MSCs, suggesting that BMP signaling not only is important for odontoblast differentiation but also plays a crucial role in providing feedback to the MSC population. This study highlights multiple important roles of BMP signaling in regulating tissue homeostasis.

SUBMITTER: Shi C 

PROVIDER: S-EPMC6616121 | biostudies-literature | 2019 Jul

REPOSITORIES: biostudies-literature

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BMP Signaling in Regulating Mesenchymal Stem Cells in Incisor Homeostasis.

Shi C C   Yuan Y Y   Guo Y Y   Jing J J   Ho T V TV   Han X X   Li J J   Feng J J   Chai Y Y  

Journal of dental research 20190528 8


Bone morphogenetic protein (BMP) signaling performs multiple essential functions during craniofacial development. In this study, we used the adult mouse incisor as a model to uncover how BMP signaling maintains tissue homeostasis and regulates mesenchymal stem cell (MSC) fate by mediating WNT and FGF signaling. We observed a severe defect in the proximal region of the adult mouse incisor after loss of BMP signaling in the Gli1+ cell lineage, indicating that BMP signaling is required for cell pro  ...[more]

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