A central challenge in embryonic stem (ES) cell biology is to understand how to impose direction on primary lineage commitment. In basal culture conditions, the majority of ES cells convert asynchronously into neural cells. However, many cells resist differentiation and others adopt nonneural fates. Mosaic activation of the neural reporter Sox-green fluorescent protein suggests regulation by cell-cell interactions. We detected expression of Notch receptors and ligands in mouse ES cells and investigated the role of this pathway. Genetic manipulation to activate Notch constitutively does not alter the stem cell phenotype. However, upon withdrawal of self-renewal stimuli, differentiation is directed rapidly and exclusively into the neural line...
Notch activation has been widely observed to regulate cell fate determination in the nervous system ...
SummaryThe Notch signaling pathway plays important roles in cell-fate determination during embryonic...
Notch receptor signaling controls developmental cell fates in a cell-context dependent manner. Altho...
International audienceA central challenge in embryonic stem (ES) cell biology is to understand how t...
International audienceA central challenge in embryonic stem (ES) cell biology is to understand how t...
International audienceA central challenge in embryonic stem (ES) cell biology is to understand how t...
International audienceA central challenge in embryonic stem (ES) cell biology is to understand how t...
SummaryThe Notch signaling pathway plays important roles in cell-fate determination during embryonic...
The Notch signaling pathway controls cell fate choices at multiple steps during cell lineage progres...
AbstractThe Notch signaling pathway controls cell fate choices at multiple steps during cell lineage...
Embryonic stem cells represent an attractive source of cardiomyocytes for cell-replacement therapies...
Embryonic stem cells represent an attractive source of cardiomyocytes for cell-replacement therapies...
International audienceNOTCH signalling is an evolutionarily conserved pathway involved in intercellu...
role of Notch signaling in governing cell-fate choices in human embryonic stem cells (hESCs). Using ...
Notch activation has been widely observed to regulate cell fate determination in the nervous system ...
Notch activation has been widely observed to regulate cell fate determination in the nervous system ...
SummaryThe Notch signaling pathway plays important roles in cell-fate determination during embryonic...
Notch receptor signaling controls developmental cell fates in a cell-context dependent manner. Altho...
International audienceA central challenge in embryonic stem (ES) cell biology is to understand how t...
International audienceA central challenge in embryonic stem (ES) cell biology is to understand how t...
International audienceA central challenge in embryonic stem (ES) cell biology is to understand how t...
International audienceA central challenge in embryonic stem (ES) cell biology is to understand how t...
SummaryThe Notch signaling pathway plays important roles in cell-fate determination during embryonic...
The Notch signaling pathway controls cell fate choices at multiple steps during cell lineage progres...
AbstractThe Notch signaling pathway controls cell fate choices at multiple steps during cell lineage...
Embryonic stem cells represent an attractive source of cardiomyocytes for cell-replacement therapies...
Embryonic stem cells represent an attractive source of cardiomyocytes for cell-replacement therapies...
International audienceNOTCH signalling is an evolutionarily conserved pathway involved in intercellu...
role of Notch signaling in governing cell-fate choices in human embryonic stem cells (hESCs). Using ...
Notch activation has been widely observed to regulate cell fate determination in the nervous system ...
Notch activation has been widely observed to regulate cell fate determination in the nervous system ...
SummaryThe Notch signaling pathway plays important roles in cell-fate determination during embryonic...
Notch receptor signaling controls developmental cell fates in a cell-context dependent manner. Altho...