Abstract Background Pluripotency, the capacity for indefinite self-renewal and differentiation into diverse cell types is a unique state exhibited by embryonic stem (ES) cells. Transcriptional regulators, such as Oct4, are critical for pluripotency, but the role of epigenetic modifiers remains to be fully elucidated. Results Here, we show that ERG-associated protein with SET domain (ESET), a histone methyltransferase enzyme, maintains pluripotency through repression of Cdx2, a key trophectoderm determinant, by histone H3 lysine 9 trimethylation (H3K9me3) of the promoter region. Notably, this repression is mediated through the synergistic function of small ubiquitin-related modifier (SUMO)ylated ESET and Oct4. ESET localises to the promyeloc...
SummaryMouse embryonic stem cells (ESCs) and the inner cell mass (ICM)-derived epiblast exhibit naiv...
The interplay between polycomb and trithorax complexes has been implicated in embryonic stem cell (E...
SummaryNanog, Oct4, and Sox2 are the core regulators of mouse (m)ESC pluripotency. Although their ba...
BACKGROUND: Pluripotency, the capacity for indefinite self-renewal and differentiation into diverse ...
Background: Pluripotency, the capacity for indefinite self-renewal and differentiation into diverse ...
Embryonic stem cells (ESCs) are characterized by their unlimited capacity for self-renewal and the a...
Summary: Transcription factors and chromatin-remodeling complexes are key determinants of embryonic ...
SummaryTranscription factors and chromatin-remodeling complexes are key determinants of embryonic st...
Embryonic stem cell (ESC) pluripotency is controlled by defined transcription factors. During cellul...
The POU domain transcription factor OCT4 is a key regulator of pluripotency in the early mammalian e...
SummaryWe demonstrate that the pluripotency gene OCT4 has a role in regulating differentiation via W...
SummaryEmbryonic stem cell (ESC) pluripotency is controlled by defined transcription factors. During...
SummaryThe relationship between chromatin organization and transcriptional regulation is an area of ...
Summary The relationship between chromatin organization and transcriptional regulation is an area of...
Embryonic stem cell (ESC) pluripotency is maintained by core transcriptional circuits whereby critic...
SummaryMouse embryonic stem cells (ESCs) and the inner cell mass (ICM)-derived epiblast exhibit naiv...
The interplay between polycomb and trithorax complexes has been implicated in embryonic stem cell (E...
SummaryNanog, Oct4, and Sox2 are the core regulators of mouse (m)ESC pluripotency. Although their ba...
BACKGROUND: Pluripotency, the capacity for indefinite self-renewal and differentiation into diverse ...
Background: Pluripotency, the capacity for indefinite self-renewal and differentiation into diverse ...
Embryonic stem cells (ESCs) are characterized by their unlimited capacity for self-renewal and the a...
Summary: Transcription factors and chromatin-remodeling complexes are key determinants of embryonic ...
SummaryTranscription factors and chromatin-remodeling complexes are key determinants of embryonic st...
Embryonic stem cell (ESC) pluripotency is controlled by defined transcription factors. During cellul...
The POU domain transcription factor OCT4 is a key regulator of pluripotency in the early mammalian e...
SummaryWe demonstrate that the pluripotency gene OCT4 has a role in regulating differentiation via W...
SummaryEmbryonic stem cell (ESC) pluripotency is controlled by defined transcription factors. During...
SummaryThe relationship between chromatin organization and transcriptional regulation is an area of ...
Summary The relationship between chromatin organization and transcriptional regulation is an area of...
Embryonic stem cell (ESC) pluripotency is maintained by core transcriptional circuits whereby critic...
SummaryMouse embryonic stem cells (ESCs) and the inner cell mass (ICM)-derived epiblast exhibit naiv...
The interplay between polycomb and trithorax complexes has been implicated in embryonic stem cell (E...
SummaryNanog, Oct4, and Sox2 are the core regulators of mouse (m)ESC pluripotency. Although their ba...