AbstractLigands of the transforming growth factor-beta (TGF-beta) superfamily are involved in numerous developmental and disease processes. TGF-beta, activins, and nodal ligands operate through the highly homologous Smad2 and Smad3 intracellular mediators. Smad2 mutants exhibit early embryonic lethality, while Smad3 mutants are viable, but show a plethora of postnatal phenotypes, including immune dysfunction and skeletal abnormalities. Previously, we have shown that the Smad2 and Smad3 genes function cooperatively during liver morphogenesis. Here we show that Smad2 and Smad3 are required at a full dosage for normal embryonic development. Animals lacking one allele of each gene exhibit a variably penetrant phenotype in which structures in th...
TGFβ signalling via Smad transcription factors is essential for axis patterning and subsequent cell ...
AbstractTGF-beta (TGFβ) family mediated Smad signaling is involved in mesoderm and endoderm specific...
TGFβ signalling via Smad transcription factors is essential for axis patterning and subsequent cell...
AbstractLigands of the transforming growth factor-beta (TGF-beta) superfamily are involved in numero...
TGFbeta growth factors specify cell fate and establish the body plan during early vertebrate develop...
AbstractSmad2 and Smad3, two essential nuclear effectors of transforming growth factor (Tgf)-β signa...
Smad2 is an intracellular mediator of the transforming growth factor beta (TGF-β) signaling pathway,...
AbstractThe Smad family of intracellular signaling intermediates transduce signals downstream from t...
The anterior–posterior axis of the mouse embryo is established by formation of distal visceral endod...
TGFbeta/activin/Nodal receptors activate both Smad2 and Smad3 intracellular effector proteins. The f...
Background: Smad4 mutant embryos arrest shortly after implantation and display a characteristic sho...
International audienceTGFbeta/activin/Nodal receptors activate both Smad2 and Smad3 intracellular ef...
The Transforming Growth Factor (TGF) β signalling family includes morphogens, such as Nodal and Acti...
The Transforming Growth Factor (TGF) beta signalling family includes morphogens, such as Nodal and A...
SummaryThe embryonic body plan is established through positive and negative control of various signa...
TGFβ signalling via Smad transcription factors is essential for axis patterning and subsequent cell ...
AbstractTGF-beta (TGFβ) family mediated Smad signaling is involved in mesoderm and endoderm specific...
TGFβ signalling via Smad transcription factors is essential for axis patterning and subsequent cell...
AbstractLigands of the transforming growth factor-beta (TGF-beta) superfamily are involved in numero...
TGFbeta growth factors specify cell fate and establish the body plan during early vertebrate develop...
AbstractSmad2 and Smad3, two essential nuclear effectors of transforming growth factor (Tgf)-β signa...
Smad2 is an intracellular mediator of the transforming growth factor beta (TGF-β) signaling pathway,...
AbstractThe Smad family of intracellular signaling intermediates transduce signals downstream from t...
The anterior–posterior axis of the mouse embryo is established by formation of distal visceral endod...
TGFbeta/activin/Nodal receptors activate both Smad2 and Smad3 intracellular effector proteins. The f...
Background: Smad4 mutant embryos arrest shortly after implantation and display a characteristic sho...
International audienceTGFbeta/activin/Nodal receptors activate both Smad2 and Smad3 intracellular ef...
The Transforming Growth Factor (TGF) β signalling family includes morphogens, such as Nodal and Acti...
The Transforming Growth Factor (TGF) beta signalling family includes morphogens, such as Nodal and A...
SummaryThe embryonic body plan is established through positive and negative control of various signa...
TGFβ signalling via Smad transcription factors is essential for axis patterning and subsequent cell ...
AbstractTGF-beta (TGFβ) family mediated Smad signaling is involved in mesoderm and endoderm specific...
TGFβ signalling via Smad transcription factors is essential for axis patterning and subsequent cell...