Notch Promotes Neural Lineage Entry by Pluripotent Embryonic Stem Cells
Open Access
- 11 April 2006
- journal article
- biotechnology
- Published by Public Library of Science (PLoS) in PLoS Biology
- Vol. 4 (5) , e121
- https://doi.org/10.1371/journal.pbio.0040121
Abstract
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 lineage. Conversely, pharmacological or genetic interference with Notch signalling suppresses the neural fate choice. Notch promotion of neural commitment requires parallel signalling through the fibroblast growth factor receptor. Stromal cells expressing Notch ligand stimulate neural specification of human ES cells, indicating that this is a conserved pathway in pluripotent stem cells. These findings define an unexpected and decisive role for Notch in ES cell fate determination. Limiting activation of endogenous Notch results in heterogeneous lineage commitment. Manipulation of Notch signalling is therefore likely to be a key factor in taking command of ES cell lineage choice.Keywords
This publication has 76 references indexed in Scilit:
- Niche-Independent Symmetrical Self-Renewal of a Mammalian Tissue Stem CellPLoS Biology, 2005
- Self-renewal of teratocarcinoma and embryonic stem cellsOncogene, 2004
- BMP Induction of Id Proteins Suppresses Differentiation and Sustains Embryonic Stem Cell Self-Renewal in Collaboration with STAT3Cell, 2003
- Conversion of embryonic stem cells into neuroectodermal precursors in adherent monocultureNature Biotechnology, 2003
- Functional gene screening in embryonic stem cells implicates Wnt antagonism in neural differentiationNature Biotechnology, 2002
- Changing potency by spontaneous fusionNature, 2002
- Retinoic Acid Promotes Neural and Represses Mesodermal Gene Expression in Mouse Embryonic Stem Cells in CultureBiochemical and Biophysical Research Communications, 1996
- Signalling downstream of activated mammalian NotchNature, 1995
- Efficient selection for high-expression transfectants with a novel eukaryotic vectorGene, 1991
- The choice of cell fate in the epidermis of DrosophilaCell, 1991