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Updated: May 28, 2026

Isolation of Mesenchymal Stem Cells from Human Alveolar Periosteum and Effects of Vitamin D on Osteogenic Activity of Periosteum-derived Cells
Published on: May 4, 2018
Osteoblast-specific transcription factor Osterix increases vitamin D receptor gene expression in osteoblasts
Chi Zhang1, Wanjin Tang, Yang Li
1Bone Research Laboratory, Texas Scottish Rite Hospital for Children, University of Texas Southwestern Medical Center at Dallas, Dallas, Texas, United States of America. Chi5.Zhang@utsouthwestern.edu
Abstract:
Osterix (Osx) is an osteoblast-specific transcription factor required for osteoblast differentiation from mesenchymal stem cells. In Osx knock-out mice, no bone formation occurs. The vitamin D receptor (VDR) is a member of the nuclear hormone receptor superfamily that regulates target gene transcription to ensure appropriate control of calcium homeostasis and bone development. Here, we provide several lines of evidence that show that the VDR gene is a target for transcriptional regulation by Osx in osteoblasts. For example, calvaria obtained from Osx-null embryos displayed dramatic reductions in VDR expression compared to wild-type calvaria. Stable overexpression of Osx stimulated VDR expression in C2C12 mesenchymal cells. Inhibition of Osx expression by siRNA led to downregulation of VDR. In contrast, Osx levels remained unchanged in osteoblasts in VDR-null mice. Mechanistic approaches using transient transfection assays showed that Osx directly activated a 1 kb fragment of the VDR promoter in a dose-dependent manner. To define the region of the VDR promoter that was responsive to Osx, a series of VDR promoter deletion mutants were examined and the minimal Osx-responsive region was refined to the proximal 120 bp of the VDR promoter. Additional point mutants were used to identify two GC-rich regions that were responsible for VDR promoter activation by Osx. Chromatin immunoprecipitation assays demonstrated that endogenous Osx was associated with the native VDR promoter in primary osteoblasts in vivo. Cumulatively, these data strongly support a direct regulatory role for Osx in VDR gene expression. They further provide new insight into potential mechanisms and pathways that Osx controls in osteoblasts and during the process of osteoblastic cell differentiation.
Insights
Osterix (Osx) directly regulates vitamin D receptor (VDR) gene expression in osteoblasts. This Osx-mediated VDR regulation is crucial for bone development and osteoblast differentiation.
Area of Science:
- Molecular Biology
- Genetics
- Cell Biology
Background:
- Osterix (Osx) is a critical transcription factor for osteoblast differentiation and bone formation.
- The vitamin D receptor (VDR) plays a key role in calcium homeostasis and bone development.
Purpose of the Study:
- To investigate whether the VDR gene is a direct transcriptional target of Osx in osteoblasts.
- To elucidate the regulatory mechanisms by which Osx influences VDR expression.
Main Methods:
- Analysis of VDR expression in Osx-null and wild-type mouse calvaria.
- Overexpression and siRNA-mediated knockdown of Osx in cell cultures.
- VDR promoter-reporter assays with deletion and point mutants.
- Chromatin immunoprecipitation (ChIP) assays in primary osteoblasts.
Main Results:
- Osx-null embryos showed significantly reduced VDR expression.
- Osx overexpression increased VDR expression, while Osx knockdown decreased it.
- Osx directly activated the VDR promoter, with the minimal responsive region identified in the proximal 120 bp.
- Two GC-rich regions within the VDR promoter were found essential for Osx-mediated activation.
- Endogenous Osx was shown to bind the native VDR promoter in vivo.
Conclusions:
- Osx directly regulates VDR gene expression in osteoblasts.
- This Osx-VDR interaction provides new insights into the molecular pathways controlling osteoblast differentiation and bone development.
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