Epigenetic mechanisms have been proposed to play crucial roles in mammalian development, but their precise functions are only partially understood. To investigate epigenetic regulation of embryonic development, we differentiated human embryonic stem cells into mesendoderm, neural progenitor cells, trophoblast-like cells, and mesenchymal stem cells and systematically characterized DNA methylation, chromatin modifications, and the transcriptome in each lineage. We found that promoters that are active in early developmental stages tend to be CG rich and mainly engage H3K27me3 upon silencing in nonexpressing lineages. By contrast, promoters for genes expressed preferentially at later stages are often CG poor and primarily employ DNA methylation...
The molecular mechanisms underlying pluripotency and lineage specification from embryonic stem cells...
<div><p>Human embryonic stem cells (hESCs) undergo epigenetic changes <i>in vitro</i> which may comp...
Measuring gene expression in individual cells is crucial for understanding the gene regulatory netwo...
SummaryEpigenetic mechanisms have been proposed to play crucial roles in mammalian development, but ...
Differentiation of human embryonic stem cells (hESCs) provides a unique opportunity to study the reg...
SummaryDifferentiation of human embryonic stem cells (hESCs) provides a unique opportunity to study ...
Embryogenesis is tightly regulated by multiple levels of epigenetic regulation such as DNA methylati...
BACKGROUND: The therapeutic use of multipotent stem cells depends on their differentiation potential...
Background: The therapeutic use of multipotent stem cells depends on their differentiation potential...
BACKGROUND: The therapeutic use of multipotent stem cells depends on their differentiation potential...
DNA methylation is a tightly regulated epigenetic mark associated with transcriptional repression. N...
Development is a well-defined stage-to-stage process that allows the coordination and maintenance of...
© 2012 Dr. Christian OrlowskiThe epigenetic mechanisms underlying the nuclear plasticity of embryoni...
The regulatory capacities of epigenetic mechanisms including DNA methylation, histone modifications,...
Epigenetic genome modifications are thought to be important for specifying the lineage and developme...
The molecular mechanisms underlying pluripotency and lineage specification from embryonic stem cells...
<div><p>Human embryonic stem cells (hESCs) undergo epigenetic changes <i>in vitro</i> which may comp...
Measuring gene expression in individual cells is crucial for understanding the gene regulatory netwo...
SummaryEpigenetic mechanisms have been proposed to play crucial roles in mammalian development, but ...
Differentiation of human embryonic stem cells (hESCs) provides a unique opportunity to study the reg...
SummaryDifferentiation of human embryonic stem cells (hESCs) provides a unique opportunity to study ...
Embryogenesis is tightly regulated by multiple levels of epigenetic regulation such as DNA methylati...
BACKGROUND: The therapeutic use of multipotent stem cells depends on their differentiation potential...
Background: The therapeutic use of multipotent stem cells depends on their differentiation potential...
BACKGROUND: The therapeutic use of multipotent stem cells depends on their differentiation potential...
DNA methylation is a tightly regulated epigenetic mark associated with transcriptional repression. N...
Development is a well-defined stage-to-stage process that allows the coordination and maintenance of...
© 2012 Dr. Christian OrlowskiThe epigenetic mechanisms underlying the nuclear plasticity of embryoni...
The regulatory capacities of epigenetic mechanisms including DNA methylation, histone modifications,...
Epigenetic genome modifications are thought to be important for specifying the lineage and developme...
The molecular mechanisms underlying pluripotency and lineage specification from embryonic stem cells...
<div><p>Human embryonic stem cells (hESCs) undergo epigenetic changes <i>in vitro</i> which may comp...
Measuring gene expression in individual cells is crucial for understanding the gene regulatory netwo...