Recruitment of transcription factors (TFs) to repressed genes in euchromatin is essential to activate new transcriptional programs during cell differentiation. However, recruitment of all TFs, including pioneer factors, is impeded by condensed H3K27me3-containing chromatin. Single-cell and gene-specific analyses revealed that, during the first hours of induction of differentiation of mammalian embryonic stem cells (ESCs), accumulation of the repressive histone mark H3K27me3 is delayed after DNA replication, indicative of a decondensed chromatin structure in all regions of the replicating genome. This delay provides a critical “window of opportunity” for recruitment of lineage-specific TFs to DNA. Increasing the levels of post-replicative H3...
SummaryEpigenetic regulation serves as the basis for stem cell differentiation into distinct cell ty...
© 2012 Dr. Christian OrlowskiThe epigenetic mechanisms underlying the nuclear plasticity of embryoni...
Mammalian development requires the creation of hundreds of cell types, each with distinct patterns o...
Recruitment of transcription factors (TFs) to repressed genes in euchromatin is essential to activat...
The role of chromatin structure in lineage commitment of multipotent hematopoietic progenitors (HPCs...
Introduction Pluripotent stem cells (PSCs) have been useful to generate differentiated progenies for...
The role of chromatin structure in lineage commitment of multipotent hematopoietic progenitors (HPCs...
SummaryDespite rapid progress in characterizing transcription factor-driven reprogramming of somatic...
SummaryWe describe the results of a genome-wide analysis of human cells that suggests that most prot...
SummaryThe most highly conserved noncoding elements (HCNEs) in mammalian genomes cluster within regi...
Indexación: Web of Science; Scopus.Stem cell phenotypes are reflected by posttranslational histone m...
Stem and progenitor cells undergo a global elevation of nascent transcription, or hyper- transcripti...
BACKGROUND: Epigenetic mechanisms regulate gene expression patterns affecting cell function and diff...
Background The time of locus replication during S-phase is tightly regulated and correlates with chr...
SummaryWe mapped Polycomb-associated H3K27 trimethylation (H3K27me3) and Trithorax-associated H3K4 t...
SummaryEpigenetic regulation serves as the basis for stem cell differentiation into distinct cell ty...
© 2012 Dr. Christian OrlowskiThe epigenetic mechanisms underlying the nuclear plasticity of embryoni...
Mammalian development requires the creation of hundreds of cell types, each with distinct patterns o...
Recruitment of transcription factors (TFs) to repressed genes in euchromatin is essential to activat...
The role of chromatin structure in lineage commitment of multipotent hematopoietic progenitors (HPCs...
Introduction Pluripotent stem cells (PSCs) have been useful to generate differentiated progenies for...
The role of chromatin structure in lineage commitment of multipotent hematopoietic progenitors (HPCs...
SummaryDespite rapid progress in characterizing transcription factor-driven reprogramming of somatic...
SummaryWe describe the results of a genome-wide analysis of human cells that suggests that most prot...
SummaryThe most highly conserved noncoding elements (HCNEs) in mammalian genomes cluster within regi...
Indexación: Web of Science; Scopus.Stem cell phenotypes are reflected by posttranslational histone m...
Stem and progenitor cells undergo a global elevation of nascent transcription, or hyper- transcripti...
BACKGROUND: Epigenetic mechanisms regulate gene expression patterns affecting cell function and diff...
Background The time of locus replication during S-phase is tightly regulated and correlates with chr...
SummaryWe mapped Polycomb-associated H3K27 trimethylation (H3K27me3) and Trithorax-associated H3K4 t...
SummaryEpigenetic regulation serves as the basis for stem cell differentiation into distinct cell ty...
© 2012 Dr. Christian OrlowskiThe epigenetic mechanisms underlying the nuclear plasticity of embryoni...
Mammalian development requires the creation of hundreds of cell types, each with distinct patterns o...