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RUNX2 regulates the effects of TNFalpha on proliferation and apoptosis in SaOs-2 cells
Ghali Olfa1, Chauveau Christophe, Lencel Philippe
1LR2B/LBCM - EA 2603 - IFR 114. Université Lille Nord de France. Boulogne-sur-mer. France.
Abstract:
The runt-related transcriptional factor RUNX2 is an essential mediator of the osteoblast phenotype and plays a pivotal role in the process of osteoblast differentiation. The involvement of RUNX2 includes the regulation of genes that are important in committing cells to the osteoblast lineage. Increasing evidences are consistent with a requirement of RUNX2 for stringent control of osteoblast proliferation and recent data even suggested that RUNX2 might act as a proapoptotic factor. Among the cytokines described as modulators of osteoblast functions, TNFalpha affects both apoptosis and the differentiation rate from mesenchymal precursor cells of osteoblast. Thus we evaluated on the human osteosarcoma cell line SaOs-2 stably transfected with a RUNX2 dominant negative construct (DeltaRUNX2) the effects of serum and TNFalpha on proliferation and apoptosis. In this study we showed that SaOs-2 clones expressing high levels of DeltaRUNX2 presented a higher proliferation rate than clones transfected with an empty vector. This increase in cell growth was accompanied by a rise in cyclins A1, B1 and E1 expression and a decrease in the cyclin inhibitor p21. Moreover we observed that the expression of the RUNX2 transgene protected the SaOs-2 cells from the antiproliferative and the apoptotic effects induced by TNFalpha. This was accompanied by the inhibition of Bax and activation of Bcl2 expression. Experiments done on SaOs-2 cells transiently transfected with siRNA confirmed that RUNX2 represents a critical link between cell fate, proliferation and growth control. This study also suggested that RUNX2 might control osteoblastic growth depending on the differentiation stage of the cells by regulating expression of elements involved in hormones and cytokines sensitivity.
Insights
The runt-related transcriptional factor RUNX2 (Runt-related transcription factor 2) regulates osteoblast growth and differentiation. This study shows RUNX2 controls cell proliferation and apoptosis, protecting cells from TNF-alpha effects.
Area of Science:
- Molecular Biology
- Cell Biology
- Bone Biology
Background:
- RUNX2 (Runt-related transcription factor 2) is crucial for osteoblast differentiation and phenotype.
- RUNX2 regulates genes involved in osteoblast lineage commitment, proliferation, and apoptosis.
- TNF-alpha influences osteoblast apoptosis and differentiation from mesenchymal precursors.
Purpose of the Study:
- To investigate the effects of serum and TNF-alpha on proliferation and apoptosis in SaOs-2 cells with altered RUNX2 expression.
- To elucidate the role of RUNX2 in controlling osteoblast cell fate, proliferation, and growth.
Main Methods:
- Stable transfection of human osteosarcoma SaOs-2 cells with a dominant-negative RUNX2 construct (DeltaRUNX2).
- Analysis of cell proliferation, apoptosis, and expression of cyclins (A1, B1, E1), p21, Bax, and Bcl2.
- Transient transfection with siRNA to confirm RUNX2's role in cell fate and growth control.
Main Results:
- SaOs-2 cells expressing high levels of DeltaRUNX2 exhibited increased proliferation, associated with altered cyclin and p21 expression.
- RUNX2 transgene expression protected SaOs-2 cells from TNF-alpha-induced antiproliferative and apoptotic effects.
- RUNX2-mediated protection involved inhibition of Bax and activation of Bcl2 expression.
Conclusions:
- RUNX2 is a critical regulator linking cell fate, proliferation, and growth control in osteoblasts.
- RUNX2 influences osteoblastic growth based on differentiation stage by modulating sensitivity to hormones and cytokines.
- RUNX2 plays a protective role against TNF-alpha-induced apoptosis and antiproliferative effects in osteosarcoma cells.
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