Influences of promoter regulatory elements that are responsive to basal and tissue-restricted transactivation factors, steroid hormones, growth factors and other physiologic mediators has provided the basis for understanding regulatory mechanisms contributing to developmental expression of osteocalcin, tissue specificity and biological activity (reviewed in [1-3]). These regulatory elements and cognate transcription factors support postproliferative transcriptional activation and steroid hormone (e.g. vitamin D) enhancement at the onset of extracellular matrix mineralization during osteoblast differentiation. Three parameters of nuclear structure contribute to osteocalcin gene transcriptional control. The linear representation of promoter e...
Osteocalcin (OC) is a bone specific protein expressed during differentiation and mineralization of t...
ABSTRACT: The combined application of molecular, biochemical, histochemical, and ultrastructural ap-...
The observation that vitamin D-mediated enhancement of osteocalcin (OC) gene expression is dependent...
Three parameters of nuclear structure contribute to transcriptional control. The linear representati...
Several lines of evidence are presented which support involvement of the nuclear matrix in regulatin...
Characterization of regulatory sequences and their cognate binding factors in the bone-specific oste...
During the past several years it has become increasingly evident that the three-dimensional organiza...
Osteoblast differentiation is a multistep series of events modulated by an integrated cascade of gen...
The vitamin D response element in the bone tissue-specific osteocalcin gene has served as a prototyp...
The rat osteocalcin gene encodes a 6-kD osteoblast-specific protein that is expressed post-prolifera...
The nuclear matrix appears to play an important role in developmental gene expression during osteobl...
Transcription of the osteocalcin gene, which encodes a bone-specific 10 kDa protein, is controlled b...
The bone tissue-specific osteocalcin gene remains one of a few genes that exhibits osteoblast-restri...
We have examined the contribution of transcriptional mechanisms to the pleiotropic effects of glucoc...
Osteocalcin, a bone-specific protein and marker of the mature osteoblast, is expressed only in nonpr...
Osteocalcin (OC) is a bone specific protein expressed during differentiation and mineralization of t...
ABSTRACT: The combined application of molecular, biochemical, histochemical, and ultrastructural ap-...
The observation that vitamin D-mediated enhancement of osteocalcin (OC) gene expression is dependent...
Three parameters of nuclear structure contribute to transcriptional control. The linear representati...
Several lines of evidence are presented which support involvement of the nuclear matrix in regulatin...
Characterization of regulatory sequences and their cognate binding factors in the bone-specific oste...
During the past several years it has become increasingly evident that the three-dimensional organiza...
Osteoblast differentiation is a multistep series of events modulated by an integrated cascade of gen...
The vitamin D response element in the bone tissue-specific osteocalcin gene has served as a prototyp...
The rat osteocalcin gene encodes a 6-kD osteoblast-specific protein that is expressed post-prolifera...
The nuclear matrix appears to play an important role in developmental gene expression during osteobl...
Transcription of the osteocalcin gene, which encodes a bone-specific 10 kDa protein, is controlled b...
The bone tissue-specific osteocalcin gene remains one of a few genes that exhibits osteoblast-restri...
We have examined the contribution of transcriptional mechanisms to the pleiotropic effects of glucoc...
Osteocalcin, a bone-specific protein and marker of the mature osteoblast, is expressed only in nonpr...
Osteocalcin (OC) is a bone specific protein expressed during differentiation and mineralization of t...
ABSTRACT: The combined application of molecular, biochemical, histochemical, and ultrastructural ap-...
The observation that vitamin D-mediated enhancement of osteocalcin (OC) gene expression is dependent...