SummaryThe relationship between chromatin organization and transcriptional regulation is an area of intense investigation. We characterized the spatial relationships between alleles of the Oct4, Sox2, and Nanog genes in single cells during the earliest stages of mouse embryonic stem cell (ESC) differentiation and during embryonic development. We describe homologous pairing of the Oct4 alleles during ESC differentiation and embryogenesis, and we present evidence that pairing is correlated with the kinetics of ESC differentiation. Importantly, we identify critical DNA elements within the Oct4 promoter/enhancer region that mediate pairing of Oct4 alleles. Finally, we show that mutation of OCT4/SOX2 binding sites within this region abolishes in...
Abstract SOX2 and OCT4 are pioneer transcription factors playing a key role in embryonic stem (ES) c...
SOX2 and OCT4 are pioneer transcription factors playing a key role in embryonic stem (ES) cell self‐...
Recent ChIP experiments of human and mouse embryonic stem cells have elucidated the architecture of ...
Summary The relationship between chromatin organization and transcriptional regulation is an area of...
SummaryThe relationship between chromatin organization and transcriptional regulation is an area of ...
Transcription factors are proteins that regulate gene expression by binding to cis-regulatory sequen...
Transcription factors are proteins that regulate gene expression by binding to cis-regulatory sequen...
Transcription factors are proteins that regulate gene expression by binding to cis-regulatory sequen...
Pluripotency factors Oct4, Sox2, and Nanog orchestrate an elaborate hierarchy of gene regulation gov...
SummaryThe transcription factors OCT4, SOX2, and NANOG have essential roles in early development and...
Pluripotency factors Oct4, Sox2, and Nanog orchestrate an elaborate hierarchy of gene regulation gov...
The transcription factor (TF) Oct4 is essential for maintaining pluripotency in vitro as well as in ...
Pairing of homologous alleles is a phenomenon generally associated with imprinted and mono-allelical...
SummaryCell fate decisions are fundamental for development, but we do not know how transcriptional n...
BACKGROUND: Oct4 is a key factor of an expanded transcriptional network (Oct4-TN) that governs pluri...
Abstract SOX2 and OCT4 are pioneer transcription factors playing a key role in embryonic stem (ES) c...
SOX2 and OCT4 are pioneer transcription factors playing a key role in embryonic stem (ES) cell self‐...
Recent ChIP experiments of human and mouse embryonic stem cells have elucidated the architecture of ...
Summary The relationship between chromatin organization and transcriptional regulation is an area of...
SummaryThe relationship between chromatin organization and transcriptional regulation is an area of ...
Transcription factors are proteins that regulate gene expression by binding to cis-regulatory sequen...
Transcription factors are proteins that regulate gene expression by binding to cis-regulatory sequen...
Transcription factors are proteins that regulate gene expression by binding to cis-regulatory sequen...
Pluripotency factors Oct4, Sox2, and Nanog orchestrate an elaborate hierarchy of gene regulation gov...
SummaryThe transcription factors OCT4, SOX2, and NANOG have essential roles in early development and...
Pluripotency factors Oct4, Sox2, and Nanog orchestrate an elaborate hierarchy of gene regulation gov...
The transcription factor (TF) Oct4 is essential for maintaining pluripotency in vitro as well as in ...
Pairing of homologous alleles is a phenomenon generally associated with imprinted and mono-allelical...
SummaryCell fate decisions are fundamental for development, but we do not know how transcriptional n...
BACKGROUND: Oct4 is a key factor of an expanded transcriptional network (Oct4-TN) that governs pluri...
Abstract SOX2 and OCT4 are pioneer transcription factors playing a key role in embryonic stem (ES) c...
SOX2 and OCT4 are pioneer transcription factors playing a key role in embryonic stem (ES) cell self‐...
Recent ChIP experiments of human and mouse embryonic stem cells have elucidated the architecture of ...