
pmid: 25194508
We previously reported that interleukin 1β acts via matrix metalloproteinase (MMP)-3 to regulate cell proliferation and suppress apoptosis in α2 integrin-positive odontoblast-like cells differentiated from mouse embryonic stem (ES) cells. Here we characterize the signal cascade underpinning odontoblastic differentiation in mouse ES cells. The expression of α2 integrin, extracellular matrix metalloproteinase inducer (Emmprin), and MMP-3 mRNA and protein were all potently increased during odontoblastic differentiation. Small interfering RNA (siRNA) disruption of the expression of these effectors potently suppressed the expression of the odontoblastic biomarkers dentin sialophosphoprotein, dentin matrix protein-1 and alkaline phosphatase, and blocked odontoblast calcification. Our siRNA, western blot and blocking antibody analyses revealed a unique sequential cascade involving α2 integrin, Emmprin and MMP-3 that drives ES cell differentiation into odontoblasts. This cascade requires the interaction between α2 integrin and Emmprin and is potentiated by exogenous MMP-3. Finally, although odontoblast-like cells potently express α2, α6, αV, β1, and β3, integrins, we confirmed that β1 integrin acts as the trigger for ES cell differentiation, apparently in complex with α2 integrin. These results demonstrate a unique and unanticipated role for an α2 integrin-, Emmprin-, and MMP-3-mediated signaling cascade in driving mouse ES cell differentiation into odontoblast-like cells.
Odontoblasts, Reverse Transcriptase Polymerase Chain Reaction, Integrin beta1, Blotting, Western, Integrin alpha2, Cell Differentiation, Flow Cytometry, Real-Time Polymerase Chain Reaction, Immunoenzyme Techniques, Mice, Basigin, Animals, Immunoprecipitation, Matrix Metalloproteinase 3, RNA, Messenger, RNA, Small Interfering, Cells, Cultured, Embryonic Stem Cells
Odontoblasts, Reverse Transcriptase Polymerase Chain Reaction, Integrin beta1, Blotting, Western, Integrin alpha2, Cell Differentiation, Flow Cytometry, Real-Time Polymerase Chain Reaction, Immunoenzyme Techniques, Mice, Basigin, Animals, Immunoprecipitation, Matrix Metalloproteinase 3, RNA, Messenger, RNA, Small Interfering, Cells, Cultured, Embryonic Stem Cells
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