The Wnt and the bone morphogenic protein (BMP) pathways are evolutionarily conserved and essentially independent signaling mechanisms, which, however, often regulate similar biological processes. Wnt and BMP signaling are functionally integrated in many biological processes, such as embryonic patterning in Drosophila and vertebrates, formation of kidney, limb, teeth and bones, maintenance of stem cells, and cancer progression. Detailed inspection of regulation in these and other tissues reveals that Wnt and BMP signaling are functionally integrated in four fundamentally different ways. The molecular mechanism evolved to mediate this integration can also be summarized in four different ways. However, a fundamental aspect of functional and me...
AbstractMultiple signaling pathways regulate proliferation and differentiation of neural progenitor ...
The past decade has seen significant advances in our understanding of skeletal homeostasis and the m...
Multiple signaling pathways regulate proliferation and differentiation of neural progenitor cells du...
peer reviewedThe in vitro engineering of tissues may be achieved by mimicking in vivo tissue develop...
International audienceMembers of the bone morphogenetic protein (BMP) family of ligands have been id...
Few processes are as complex as development from a one cell embryo to a multicellular adult with spe...
The skeleton as an organ is widely distributed throughout the entire vertebrate body. Wnt signaling ...
It is well established that canonical Wnt signaling in bone regulates bone mass. Much less is known ...
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...
The family of bone morphogenetic proteins (BMPs) comprises approximately 30 secreted cytokines that ...
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...
Wnt signaling occurs through evolutionarily conserved pathways that affect cellular proliferation an...
Wnt signalling has an essential role in regulating bone formation and remodelling during embryonic d...
AbstractMultiple signaling pathways regulate proliferation and differentiation of neural progenitor ...
The past decade has seen significant advances in our understanding of skeletal homeostasis and the m...
Multiple signaling pathways regulate proliferation and differentiation of neural progenitor cells du...
peer reviewedThe in vitro engineering of tissues may be achieved by mimicking in vivo tissue develop...
International audienceMembers of the bone morphogenetic protein (BMP) family of ligands have been id...
Few processes are as complex as development from a one cell embryo to a multicellular adult with spe...
The skeleton as an organ is widely distributed throughout the entire vertebrate body. Wnt signaling ...
It is well established that canonical Wnt signaling in bone regulates bone mass. Much less is known ...
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...
The family of bone morphogenetic proteins (BMPs) comprises approximately 30 secreted cytokines that ...
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...
Wnt signaling occurs through evolutionarily conserved pathways that affect cellular proliferation an...
Wnt signalling has an essential role in regulating bone formation and remodelling during embryonic d...
AbstractMultiple signaling pathways regulate proliferation and differentiation of neural progenitor ...
The past decade has seen significant advances in our understanding of skeletal homeostasis and the m...
Multiple signaling pathways regulate proliferation and differentiation of neural progenitor cells du...