AbstractBefore the nervous system establishes its complex array of cell types and connections, multipotent cells are instructed to adopt a neural fate and an anterior-posterior pattern is established. In this report, we show that Smad10, a member of the Smad family of intracellular transducers of TGFβ signaling, is required for formation of the nervous system. In addition, two types of molecules proposed as key to neural induction and patterning, bone morphogenetic protein (BMP) antagonists and fibroblast growth factor (FGF), require Smad10 for these activities. These data suggest that Smad10 may be a central mediator of the development of the frog nervous system
Abstract TGF-beta (TGFβ) family mediated Smad signaling is involved in mesoderm and endoderm specifi...
Xenopus has provided a powerful system to study cellular, developmental, and neuro-biology. The ava...
[[abstract]]The signals originating from transforming growth factor beta/activin/bone morphogenetic ...
AbstractSmad2 and Smad3, two essential nuclear effectors of transforming growth factor (Tgf)-β signa...
AbstractThe ubiquitin ligase Smurf1 can target a handful of signaling proteins for ubiquitin-mediate...
AbstractDuring vertebrate development, neural crest cells are exposed to multiple extracellular cues...
AbstractSmads are proteins that transduce signals on behalf of members of the TGFβ superfamily of gr...
AbstractSmad4 is the central mediator for TGF-β/BMP signals, which are involved in regulating crania...
Abstract Background Activity of the Transforming growth factor-β (TGFβ) pathway is essential to the ...
International audienceNeural induction is the process that initiates nervous system development in v...
AbstractSmad2 and Smad3, two essential nuclear effectors of transforming growth factor (Tgf)-β signa...
During vertebrate development, neural crest cells are exposed to multiple extracellular cues that dr...
AbstractTGF-beta (TGFβ) family mediated Smad signaling is involved in mesoderm and endoderm specific...
SummaryBMP receptors determine the intensity of BMP signals via Smad1 C-terminal phosphorylations. H...
AbstractSmads are proteins that transduce signals on behalf of members of the TGFβ superfamily of gr...
Abstract TGF-beta (TGFβ) family mediated Smad signaling is involved in mesoderm and endoderm specifi...
Xenopus has provided a powerful system to study cellular, developmental, and neuro-biology. The ava...
[[abstract]]The signals originating from transforming growth factor beta/activin/bone morphogenetic ...
AbstractSmad2 and Smad3, two essential nuclear effectors of transforming growth factor (Tgf)-β signa...
AbstractThe ubiquitin ligase Smurf1 can target a handful of signaling proteins for ubiquitin-mediate...
AbstractDuring vertebrate development, neural crest cells are exposed to multiple extracellular cues...
AbstractSmads are proteins that transduce signals on behalf of members of the TGFβ superfamily of gr...
AbstractSmad4 is the central mediator for TGF-β/BMP signals, which are involved in regulating crania...
Abstract Background Activity of the Transforming growth factor-β (TGFβ) pathway is essential to the ...
International audienceNeural induction is the process that initiates nervous system development in v...
AbstractSmad2 and Smad3, two essential nuclear effectors of transforming growth factor (Tgf)-β signa...
During vertebrate development, neural crest cells are exposed to multiple extracellular cues that dr...
AbstractTGF-beta (TGFβ) family mediated Smad signaling is involved in mesoderm and endoderm specific...
SummaryBMP receptors determine the intensity of BMP signals via Smad1 C-terminal phosphorylations. H...
AbstractSmads are proteins that transduce signals on behalf of members of the TGFβ superfamily of gr...
Abstract TGF-beta (TGFβ) family mediated Smad signaling is involved in mesoderm and endoderm specifi...
Xenopus has provided a powerful system to study cellular, developmental, and neuro-biology. The ava...
[[abstract]]The signals originating from transforming growth factor beta/activin/bone morphogenetic ...