Summary Embryonic Stem (ES) cells are able to give rise to the three germ layers of the embryo but are prevented from contributing to the trophoblast. The molecular nature of this barrier between embryonic and trophectodermal cell fates is not clear, but is known to involve DNA methylation. Here we demonstrate that the Nucleosome Remodeling and Deacetylation (NuRD) co-repressor complex maintains the developmental barrier between embryonic and trophectodermal cell fates by maintaining transcriptional silencing of trophectoderm determinant genes in ES cells. We further show that NuRD activity facilitates DNA methylation of several of its target promoters, where it acts non-redundantly with DNA methylation to enforce transcriptional silencing....
The first cell differentiation event in mammalian embryo development is the formation of trophoecto...
SummaryCritical roles for DNA methylation in embryonic development are well established, but less is...
Reprogramming of somatic cells into induced pluripotent stem cells (iPSCs) by overexpression of a de...
Embryonic Stem (ES) cells are able to give rise to the three germ layers of the embryo but are preve...
Embryonic Stem (ES) cells are able to give rise to the three germ layers of the embryo but are preve...
Embryonic stem cells (ES cells) can differentiate into cells derived from all three germ layers and ...
Embryonic stem cells (ES cells) can differentiate into cells derived from all three germ layers and ...
Transcriptional heterogeneity within embryonic stem cell (ESC) populations has been suggested as a m...
Differentiation of mammalian pluripotent cells involves large-scale changes in transcription and, am...
Mouse ES cells can differentiate into all three germ layers of the embryo but are generally excluded...
SummaryTranscriptional heterogeneity within embryonic stem cell (ESC) populations has been suggested...
Embryonic stem cells (ESCs) are defined by two essential features—pluripotency and self-renewal—whos...
SummaryDNA methylation regulates development and many epigenetic processes in mammals [1], and it is...
Genome remethylation is essential for mammalian development but specific reasons are unclear. Here w...
Background: DNA methylation is reprogrammed during early embryogenesis by active and passive mechani...
The first cell differentiation event in mammalian embryo development is the formation of trophoecto...
SummaryCritical roles for DNA methylation in embryonic development are well established, but less is...
Reprogramming of somatic cells into induced pluripotent stem cells (iPSCs) by overexpression of a de...
Embryonic Stem (ES) cells are able to give rise to the three germ layers of the embryo but are preve...
Embryonic Stem (ES) cells are able to give rise to the three germ layers of the embryo but are preve...
Embryonic stem cells (ES cells) can differentiate into cells derived from all three germ layers and ...
Embryonic stem cells (ES cells) can differentiate into cells derived from all three germ layers and ...
Transcriptional heterogeneity within embryonic stem cell (ESC) populations has been suggested as a m...
Differentiation of mammalian pluripotent cells involves large-scale changes in transcription and, am...
Mouse ES cells can differentiate into all three germ layers of the embryo but are generally excluded...
SummaryTranscriptional heterogeneity within embryonic stem cell (ESC) populations has been suggested...
Embryonic stem cells (ESCs) are defined by two essential features—pluripotency and self-renewal—whos...
SummaryDNA methylation regulates development and many epigenetic processes in mammals [1], and it is...
Genome remethylation is essential for mammalian development but specific reasons are unclear. Here w...
Background: DNA methylation is reprogrammed during early embryogenesis by active and passive mechani...
The first cell differentiation event in mammalian embryo development is the formation of trophoecto...
SummaryCritical roles for DNA methylation in embryonic development are well established, but less is...
Reprogramming of somatic cells into induced pluripotent stem cells (iPSCs) by overexpression of a de...