Activation of tissue-specific genes is a tightly controlled process that normally involves the combined action of several transcription factors and transcriptional co-regulators. The bone-specific osteoca1cin gene (OC) has been used as a prototype to study both tissue-specific and hormonal responsiveness. In this study we have examined the role of Runx2, VDR and C/EBP factors in the regulation of OC gene transcription. Contributions of the Runx and VDRE motifs to OC promoter activity were addressed by introducing point mutations within the context of the rat (-1.1 kb) osteocalcin promoter fused to a CAT-reporter gene. The functional significance of these mutations was assayed following transient transfection and after genomic integration in...
Three Cbfa motifs are strategically positioned in the bone-specific rat osteocalcin (rOC) promoter. ...
The OC box of the rat osteocalcin promoter (nt -99 to -76) is the principal proximal regulatory elem...
The observation that vitamin D-mediated enhancement of osteocalcin (OC) gene expression is dependent...
Bone-specific transcription of the osteocalcin (OC) gene is regulated principally by the Runx2 trans...
Vitamin D receptor (VDR) and Runx2 are key regulators of tissue-specific gene transcription. Using t...
Osteocalcin (OC) is a bone-specific vitamin D- responsive protein that is developmentally expressed ...
The runt homology transcription factor Runx2/Cbfa1 is essential for bone development and osteoblast ...
CCAAT/enhancer-binding proteins (C/EBP) are critical determinants for cellular differentiation and c...
Development of the osteoblast phenotype requires transcriptional mechanisms that regulate induction ...
Tissue-specific activation of the osteocalcin (OC) gene is associated with changes in chromatin stru...
Transcription of the osteocalcin gene, which encodes a bone-specific 10 kDa protein, is controlled b...
p300 is a multifunctional transcriptional coactivator that serves as an adapter for several transcri...
The vitamin D response element in the bone tissue-specific osteocalcin gene has served as a prototyp...
Characterization of regulatory sequences and their cognate binding factors in the bone-specific oste...
The Osteocalcin (OC) gene encodes a 10 Kda hone-specific protein which is expressed with the onset o...
Three Cbfa motifs are strategically positioned in the bone-specific rat osteocalcin (rOC) promoter. ...
The OC box of the rat osteocalcin promoter (nt -99 to -76) is the principal proximal regulatory elem...
The observation that vitamin D-mediated enhancement of osteocalcin (OC) gene expression is dependent...
Bone-specific transcription of the osteocalcin (OC) gene is regulated principally by the Runx2 trans...
Vitamin D receptor (VDR) and Runx2 are key regulators of tissue-specific gene transcription. Using t...
Osteocalcin (OC) is a bone-specific vitamin D- responsive protein that is developmentally expressed ...
The runt homology transcription factor Runx2/Cbfa1 is essential for bone development and osteoblast ...
CCAAT/enhancer-binding proteins (C/EBP) are critical determinants for cellular differentiation and c...
Development of the osteoblast phenotype requires transcriptional mechanisms that regulate induction ...
Tissue-specific activation of the osteocalcin (OC) gene is associated with changes in chromatin stru...
Transcription of the osteocalcin gene, which encodes a bone-specific 10 kDa protein, is controlled b...
p300 is a multifunctional transcriptional coactivator that serves as an adapter for several transcri...
The vitamin D response element in the bone tissue-specific osteocalcin gene has served as a prototyp...
Characterization of regulatory sequences and their cognate binding factors in the bone-specific oste...
The Osteocalcin (OC) gene encodes a 10 Kda hone-specific protein which is expressed with the onset o...
Three Cbfa motifs are strategically positioned in the bone-specific rat osteocalcin (rOC) promoter. ...
The OC box of the rat osteocalcin promoter (nt -99 to -76) is the principal proximal regulatory elem...
The observation that vitamin D-mediated enhancement of osteocalcin (OC) gene expression is dependent...