The molecular mechanisms controlling inductive events leading to the specification and terminal differentiation of cardiomyocytes are still largely unknown. We have investigated the role of Cripto, an EGF-CFC factor, in the earliest stages of cardiomyogenesis. We find that both the timing of initiation and the duration of Cripto signaling are crucial for priming differentiation of embryonic stem (ES) cells into cardiomyocytes, indicating that Cripto acts early to determine the cardiac fate. Furthermore, we show that failure to activate Cripto signaling in this early window of time results in a direct conversion of ES cells into a neural fate. Moreover, the induction of Cripto activates the Smad2 pathway, and overexpression of activated form...
Embryonic stem cells represent an attractive source of cardiomyocytes for cell-replacement therapies...
Cripto-1 is a glycophosphatidylinositol (GPI) anchored signaling protein of epidermal growth factor ...
Cripto is one of the key regulators of embryonic stem cells (ESCs) differentiation into cardiomyocit...
The molecular mechanisms controlling inductive events leading to the specification and terminal diff...
Embryonic stem (ES) cells have been suggested as candidate therapeutic tools for regenerative medici...
The EGF-CFC proteins have been recently recognized as a novel family of extracellular factors requir...
International audienceKnown molecular determinants of developmental plasticity are mainly transcript...
AbstractThe molecular events of cardiac lineage specification and differentiation are largely unknow...
AbstractDuring early mouse development, the TGFβ-related protein Nodal specifies the organizing cent...
The EGF-CFC gene cripto governs anterior-posterior (A-P) axis specification in the vertebrate embryo...
The TGFβ family member Nodal is essential during development to allocate pluripotent cells to distin...
The use of human pluripotent stem cells in basic and translational cardiac research requires efficie...
Rationale: The transforming growth factor- (TGF) family member Nodal promotes cardiogenesis, but th...
Cripto is a multifunctional protein with key roles during embryonic development and tumorigenesis. C...
AbstractDuring early mouse embryogenesis, multiple patterning and differentiation events require the...
Embryonic stem cells represent an attractive source of cardiomyocytes for cell-replacement therapies...
Cripto-1 is a glycophosphatidylinositol (GPI) anchored signaling protein of epidermal growth factor ...
Cripto is one of the key regulators of embryonic stem cells (ESCs) differentiation into cardiomyocit...
The molecular mechanisms controlling inductive events leading to the specification and terminal diff...
Embryonic stem (ES) cells have been suggested as candidate therapeutic tools for regenerative medici...
The EGF-CFC proteins have been recently recognized as a novel family of extracellular factors requir...
International audienceKnown molecular determinants of developmental plasticity are mainly transcript...
AbstractThe molecular events of cardiac lineage specification and differentiation are largely unknow...
AbstractDuring early mouse development, the TGFβ-related protein Nodal specifies the organizing cent...
The EGF-CFC gene cripto governs anterior-posterior (A-P) axis specification in the vertebrate embryo...
The TGFβ family member Nodal is essential during development to allocate pluripotent cells to distin...
The use of human pluripotent stem cells in basic and translational cardiac research requires efficie...
Rationale: The transforming growth factor- (TGF) family member Nodal promotes cardiogenesis, but th...
Cripto is a multifunctional protein with key roles during embryonic development and tumorigenesis. C...
AbstractDuring early mouse embryogenesis, multiple patterning and differentiation events require the...
Embryonic stem cells represent an attractive source of cardiomyocytes for cell-replacement therapies...
Cripto-1 is a glycophosphatidylinositol (GPI) anchored signaling protein of epidermal growth factor ...
Cripto is one of the key regulators of embryonic stem cells (ESCs) differentiation into cardiomyocit...