In human embryonic stem cells (ESCs) the transcription factor Zeb2 regulates neuroectoderm versus mesendoderm formation, but it is unclear how Zeb2 affects the global transcriptional regulatory network in these cell-fate decisions. We generated Zeb2 knockout (KO) mouse ESCs, subjected them as embryoid bodies (EBs) to neural and general differentiation and carried out temporal RNA-sequencing (RNA-seq) and reduced representation bisulfite sequencing (RRBS) analysis in neural differentiation. This shows that Zeb2 acts preferentially as a transcriptional repressor associated with developmental progression and that Zeb2 KO ESCs can exit from their naïve state. However, most cells in these EBs stall in an early epiblast-like state and are impaire...
The ZEB family of zinc finger transcription factors are essential players during normal embryonic de...
peer reviewedThe transcription factor Zeb2 controls fate specification and subsequent differentiatio...
SummaryCell fate decisions are fundamental for development, but we do not know how transcriptional n...
In human embryonic stem cells (ESCs) the transcription factor Zeb2 regulates neuroectoderm versus me...
The transcription factor zinc finger E-box binding protein 2 (ZEB2) controls embryonic and adult cel...
The transcriptional repressor ZEB2 regulates development of many cell fates among somatic, neural, a...
Summary: Zinc-finger E-box binding homeobox 1 (Zeb1) is a key regulator of epithelial-mesenchymal tr...
Zeb2 (Sip1/Zfhx1b) is a member of the zinc-finger E-box-binding (ZEB) family of transcriptional repr...
Zeb2 (Sip1/Zfhx1b) is a member of the zinc-finger E-box-binding (ZEB) family of transcriptional repr...
After its publication in 1999 as a DNA-binding and SMAD-binding transcription factor (TF) that co-de...
After its publication in 1999 as a DNA-binding and SMAD-binding transcription factor (TF) that co-de...
Zeb1 is a zinc finger transcription factor that plays a critical role in embryonic development, tis...
The transcription factor Zeb2 controls fate specification and subsequent differentiation and maturat...
Neural stem cells (NSCs) persist within neurogenic niches in the adult mammalian central nervous sys...
Objectives: Mammalian DNA methyltransferases are essential to re-establish global DNA methylation pa...
The ZEB family of zinc finger transcription factors are essential players during normal embryonic de...
peer reviewedThe transcription factor Zeb2 controls fate specification and subsequent differentiatio...
SummaryCell fate decisions are fundamental for development, but we do not know how transcriptional n...
In human embryonic stem cells (ESCs) the transcription factor Zeb2 regulates neuroectoderm versus me...
The transcription factor zinc finger E-box binding protein 2 (ZEB2) controls embryonic and adult cel...
The transcriptional repressor ZEB2 regulates development of many cell fates among somatic, neural, a...
Summary: Zinc-finger E-box binding homeobox 1 (Zeb1) is a key regulator of epithelial-mesenchymal tr...
Zeb2 (Sip1/Zfhx1b) is a member of the zinc-finger E-box-binding (ZEB) family of transcriptional repr...
Zeb2 (Sip1/Zfhx1b) is a member of the zinc-finger E-box-binding (ZEB) family of transcriptional repr...
After its publication in 1999 as a DNA-binding and SMAD-binding transcription factor (TF) that co-de...
After its publication in 1999 as a DNA-binding and SMAD-binding transcription factor (TF) that co-de...
Zeb1 is a zinc finger transcription factor that plays a critical role in embryonic development, tis...
The transcription factor Zeb2 controls fate specification and subsequent differentiation and maturat...
Neural stem cells (NSCs) persist within neurogenic niches in the adult mammalian central nervous sys...
Objectives: Mammalian DNA methyltransferases are essential to re-establish global DNA methylation pa...
The ZEB family of zinc finger transcription factors are essential players during normal embryonic de...
peer reviewedThe transcription factor Zeb2 controls fate specification and subsequent differentiatio...
SummaryCell fate decisions are fundamental for development, but we do not know how transcriptional n...