SummaryWnt signaling regulates a variety of developmental processes in animals. Although the β-catenin-dependent (canonical) pathway is known to control cell fate, a similar role for noncanonical Wnt signaling has not been established in mammals. Moreover, the intracellular cascades for noncanonical Wnt signaling remain to be elucidated. Here, we delineate a pathway in which Wnt3a signals through the Gαq/11 subunits of G proteins to activate phosphatidylinositol signaling and PKCδ in the murine ST2 cells. Gαq/11-PKCδ signaling is required for Wnt3a-induced osteoblastogenesis in these cells, and PKCδ homozygous mutant mice exhibit a deficit in embryonic bone formation. Furthermore, Wnt7b, expressed by osteogenic cells in vivo, induces osteob...
Developmental signals in metazoans play critical roles in inducing cell differentiation from multipo...
SummaryChondrocytes and osteoblasts are two primary cell types in the skeletal system that are diffe...
Human mesenchymal stem cells (hMSCs) from bone marrow are a source of osteoblast progenitors in vivo...
SummaryWnt signaling regulates a variety of developmental processes in animals. Although the β-caten...
WNT signaling has been implicated in both embryonic and postnatal bone formation. However, the perti...
Mesenchymal stem cells (MSCs) are multipotent cells that can be differentiated into osteoblasts and ...
SummaryWnt proteins (Wnts) are palmitoylated and glycosylated ligands that play a central role in th...
SummaryInactivation of β-catenin in mesenchymal progenitors prevents osteoblast differentiation; ina...
The Wnt signaling pathway is an important regulator of cellular differentiation in a variety of cell...
Reports implicating Wnt signalling in the regulation of bone mass have prompted widespread interest ...
Bone formation is critically needed in orthopedic clinical practice. We found that, bone morphogenet...
The Wnt signalling pathway is one of the central signalling pathways in bone development, homeostasi...
The Wnt signalling pathway is one of the central signalling pathways in bone development, homeostasi...
Inactivation of beta-catenin in mesenchymal progenitors prevents osteoblast differentiation; inactiv...
In view of the complex roles of the canonical Wnt signaling during skeletal devel-opment and disease...
Developmental signals in metazoans play critical roles in inducing cell differentiation from multipo...
SummaryChondrocytes and osteoblasts are two primary cell types in the skeletal system that are diffe...
Human mesenchymal stem cells (hMSCs) from bone marrow are a source of osteoblast progenitors in vivo...
SummaryWnt signaling regulates a variety of developmental processes in animals. Although the β-caten...
WNT signaling has been implicated in both embryonic and postnatal bone formation. However, the perti...
Mesenchymal stem cells (MSCs) are multipotent cells that can be differentiated into osteoblasts and ...
SummaryWnt proteins (Wnts) are palmitoylated and glycosylated ligands that play a central role in th...
SummaryInactivation of β-catenin in mesenchymal progenitors prevents osteoblast differentiation; ina...
The Wnt signaling pathway is an important regulator of cellular differentiation in a variety of cell...
Reports implicating Wnt signalling in the regulation of bone mass have prompted widespread interest ...
Bone formation is critically needed in orthopedic clinical practice. We found that, bone morphogenet...
The Wnt signalling pathway is one of the central signalling pathways in bone development, homeostasi...
The Wnt signalling pathway is one of the central signalling pathways in bone development, homeostasi...
Inactivation of beta-catenin in mesenchymal progenitors prevents osteoblast differentiation; inactiv...
In view of the complex roles of the canonical Wnt signaling during skeletal devel-opment and disease...
Developmental signals in metazoans play critical roles in inducing cell differentiation from multipo...
SummaryChondrocytes and osteoblasts are two primary cell types in the skeletal system that are diffe...
Human mesenchymal stem cells (hMSCs) from bone marrow are a source of osteoblast progenitors in vivo...