Reconstitution of Runx2/Cbfa1‐null cells identifies a requirement for BMP2 signaling through a Runx2 functional domain during osteoblast differentiation
- 22 August 2006
- journal article
- research article
- Published by Wiley in Journal of Cellular Biochemistry
- Vol. 100 (2) , 434-449
- https://doi.org/10.1002/jcb.21039
Abstract
The Runx2/Cbfa1 transcription factor is a scaffolding protein that promotes osteoblast differentiation; however, the specific Runx2-functional domains required for induction of the osteogenic lineage remain to be identified. We approached this question using a TERT-immortalized cell line derived from calvaria of Runx2-null mice by reconstituting the osteogenic activity with wild-type and deletion mutants of Runx2. The presence or absence of osteogenic media (β-glycerol phosphate and ascorbic acid) and/or with BMP2 did not stimulate osteoblastic gene expression in the Runx2-null cells. However, cells infected with wild-type Runx2 adenovirus showed a robust temporal increase in the expression of osteoblast marker genes and were competent to respond to BMP2. Early markers (i.e., collagen type-1, alkaline phosphatase) were induced (four- to eightfold) at Days 4 and 8 of culture. Genes representing mature osteoblasts (e.g., Runx2, osteopontin, bone sialoprotein, osteocalcin) were temporally expressed and induced from 18- to 36-fold at Days 8 and 12. Interestingly, TGFβ and Vitamin D-mediated transcription of osteoblast genes (except for osteopontin) required the presence of Runx2. Runx2 lacking the C-terminal 96 amino acids (Runx2 Δ432) showed a pattern of gene expression similar to wild-type protein, demonstrating the Groucho interaction and part of the activation domain are dispensable for Runx2 osteogenic activity. Upon further deletion of the Runx2 C-terminus containing the nuclear matrix targeting signal and Smad-interacting domain (Δ391), we find none of the osteoblast markers are expressed. Therefore, the Runx2 391-432 domain is essential for execution of the BMP2 osteogenic signal. J. Cell. Biochem. 100: 434–449, 2007.Keywords
This publication has 68 references indexed in Scilit:
- Histone Deacetylase 3 Interacts with Runx2 to Repress the Osteocalcin Promoter and Regulate Osteoblast DifferentiationJournal of Biological Chemistry, 2004
- Groucho homologue Grg5 interacts with the transcription factor Runx2–Cbfa1 and modulates its activity during postnatal growth in miceDevelopmental Biology, 2004
- Regulatory Controls for Osteoblast Growth and Differentiation: Role of Runx/Cbfa/AML FactorsCritical Reviews™ in Eukaryotic Gene Expression, 2004
- Runx2 Integrates Estrogen Activity in OsteoblastsJournal of Biological Chemistry, 2003
- Phenotype discovery by gene expression profiling: Mapping of biological processes linked to BMP‐2‐mediated osteoblast differentiationJournal of Cellular Biochemistry, 2003
- Cbfβ interacts with Runx2 and has a critical role in bone developmentNature Genetics, 2002
- Telomerase expression extends the proliferative life-span and maintains the osteogenic potential of human bone marrow stromal cellsNature Biotechnology, 2002
- Physical Interaction of the Activator Protein-1 Factors c-Fos and c-Jun with Cbfa1 for Collagenase-3 Promoter ActivationJournal of Biological Chemistry, 2002
- Multilineage Differentiation of Cbfa1-Deficient Calvarial Cells in VitroBiochemical and Biophysical Research Communications, 2000
- 1,25-Dihydroxyvitamin D3 Inhibits Osteocalcin Expression in Mouse through an Indirect MechanismJournal of Biological Chemistry, 1997