The TGFβ pathway has essential roles in embryonic development, organ homeostasis, tissue repair and disease1,2. These diverse effects are mediated through the intracellular effectors SMAD2 and SMAD3 (hereafter SMAD2/3), whose canonical function is to control the activity of target genes by interacting with transcriptional regulators3. Therefore, a complete description of the factors that interact with SMAD2/3 in a given cell type would have broad implications for many areas of cell biology. Here we describe the interactome of SMAD2/3 in human pluripotent stem cells. This analysis reveals that SMAD2/3 is involved in multiple molecular processes in addition to its role in transcription. In particular, we identify a functional interaction with...
The Transforming Growth Factor (TGF) beta signalling family includes morphogens, such as Nodal and A...
AbstractFollowing TGFβ receptor–mediated phosphorylation and association with Smad4, Smad2 moves int...
The mechanisms controlling self-renewal versus lineage commitment in human embryonic stem (hES) cell...
The TGFβ pathway has essential roles in embryonic development, organ homeostasis, tissue repair and ...
Transforming growth factor beta (TGF-β) signaling, mediated through the transcription factors Smad2 ...
SummaryTransforming growth factor beta (TGF-β) signaling, mediated through the transcription factors...
AbstractThe canonical TGF-β/Smad signaling pathway was delineated in the mid 90s and enriched over t...
Human pluripotent stem cells (hPSCs) are an invaluable model for cellular and developmental biology,...
SummarySpecific chromatin marks keep master regulators of differentiation silent yet poised for acti...
Transforming growth factor beta (TGF-β) signaling, mediated through the transcription factors Smad2 ...
The Transforming Growth Factor (TGF) β signalling family includes morphogens, such as Nodal and Acti...
NODAL/Activin signalling regulates key processes during embryonic development via SMAD2. How SMAD2 a...
Ligands of the TGF-β/Activin/Nodal family signal through SMAD2/3 transcription factors, which recogn...
AbstractSma and MAD-related protein 3 (Smad3) plays a key role in the intracellular signaling of the...
The signalling pathways that maintain primed human pluripotent stem cells (hPSCs) have been well cha...
The Transforming Growth Factor (TGF) beta signalling family includes morphogens, such as Nodal and A...
AbstractFollowing TGFβ receptor–mediated phosphorylation and association with Smad4, Smad2 moves int...
The mechanisms controlling self-renewal versus lineage commitment in human embryonic stem (hES) cell...
The TGFβ pathway has essential roles in embryonic development, organ homeostasis, tissue repair and ...
Transforming growth factor beta (TGF-β) signaling, mediated through the transcription factors Smad2 ...
SummaryTransforming growth factor beta (TGF-β) signaling, mediated through the transcription factors...
AbstractThe canonical TGF-β/Smad signaling pathway was delineated in the mid 90s and enriched over t...
Human pluripotent stem cells (hPSCs) are an invaluable model for cellular and developmental biology,...
SummarySpecific chromatin marks keep master regulators of differentiation silent yet poised for acti...
Transforming growth factor beta (TGF-β) signaling, mediated through the transcription factors Smad2 ...
The Transforming Growth Factor (TGF) β signalling family includes morphogens, such as Nodal and Acti...
NODAL/Activin signalling regulates key processes during embryonic development via SMAD2. How SMAD2 a...
Ligands of the TGF-β/Activin/Nodal family signal through SMAD2/3 transcription factors, which recogn...
AbstractSma and MAD-related protein 3 (Smad3) plays a key role in the intracellular signaling of the...
The signalling pathways that maintain primed human pluripotent stem cells (hPSCs) have been well cha...
The Transforming Growth Factor (TGF) beta signalling family includes morphogens, such as Nodal and A...
AbstractFollowing TGFβ receptor–mediated phosphorylation and association with Smad4, Smad2 moves int...
The mechanisms controlling self-renewal versus lineage commitment in human embryonic stem (hES) cell...