Both activating and null mutations of proteins required for canonical WNT signaling have revealed the importance of this pathway for normal skeletal development. However, tissue-specific transcriptional mechanisms through which WNT signaling promotes the differentiation of bone-forming cells have yet to be identified. Here, we address the hypothesis that canonical WNT signaling and the bone-related transcription factor RUNX2/CBFA1/AML3 are functionally linked components of a pathway required for the onset of osteoblast differentiation. Our findings show that, in bone of the SFRP1 (secreted frizzled-related protein-1)-null mouse, which exhibits activated WNT signaling and a high bone mass phenotype, there is a significant increase in express...
Bone morphogenetic protein 2 (BMP2)-induced osteogenic differentiation has been shown to occur throu...
Identifying the genetic pathways that regulate skeletal development is necessary to correct a variet...
Canonical Wnt signaling (beta-catenin/TCF) has emerged as a key regulator of skeletogenesis. In this...
SummaryInactivation of β-catenin in mesenchymal progenitors prevents osteoblast differentiation; ina...
Inactivation of beta-catenin in mesenchymal progenitors prevents osteoblast differentiation; inactiv...
To examine early events in osteoblast differentiation, we analyzed the expression of about 9,400 gen...
The Runt-related transcription factor, Runx2, is essential for osteogenesis and is controlled by bot...
The vertebrate skeleton forms via two distinct modes of ossification, membranous and endochondral. O...
Wnt signaling has been implicated in regulating bone formation by controlling osteoblast proliferati...
Reports implicating Wnt signalling in the regulation of bone mass have prompted widespread interest ...
Wnt1 is one of the several glycoproteins activating Wnt signaling, critical for normal skeletal deve...
Because of their pluripotent nature, as defined by their self-renewal and differentiation capacity, ...
Fibroblast growth factor (FGF) and Wnt signals are both critical for proper bone development. We pre...
SummaryWnt proteins (Wnts) are palmitoylated and glycosylated ligands that play a central role in th...
Abstract. Wnt signaling is involved not only in embryonic development but also in maintenance of hom...
Bone morphogenetic protein 2 (BMP2)-induced osteogenic differentiation has been shown to occur throu...
Identifying the genetic pathways that regulate skeletal development is necessary to correct a variet...
Canonical Wnt signaling (beta-catenin/TCF) has emerged as a key regulator of skeletogenesis. In this...
SummaryInactivation of β-catenin in mesenchymal progenitors prevents osteoblast differentiation; ina...
Inactivation of beta-catenin in mesenchymal progenitors prevents osteoblast differentiation; inactiv...
To examine early events in osteoblast differentiation, we analyzed the expression of about 9,400 gen...
The Runt-related transcription factor, Runx2, is essential for osteogenesis and is controlled by bot...
The vertebrate skeleton forms via two distinct modes of ossification, membranous and endochondral. O...
Wnt signaling has been implicated in regulating bone formation by controlling osteoblast proliferati...
Reports implicating Wnt signalling in the regulation of bone mass have prompted widespread interest ...
Wnt1 is one of the several glycoproteins activating Wnt signaling, critical for normal skeletal deve...
Because of their pluripotent nature, as defined by their self-renewal and differentiation capacity, ...
Fibroblast growth factor (FGF) and Wnt signals are both critical for proper bone development. We pre...
SummaryWnt proteins (Wnts) are palmitoylated and glycosylated ligands that play a central role in th...
Abstract. Wnt signaling is involved not only in embryonic development but also in maintenance of hom...
Bone morphogenetic protein 2 (BMP2)-induced osteogenic differentiation has been shown to occur throu...
Identifying the genetic pathways that regulate skeletal development is necessary to correct a variet...
Canonical Wnt signaling (beta-catenin/TCF) has emerged as a key regulator of skeletogenesis. In this...