AbstractEmbryonic stem (ES) cells undergo extended proliferation while remaining poised for multilineage differentiation. A unique network of transcription factors may characterize self-renewal and simultaneously suppress differentiation. We applied expression cloning in mouse ES cells to isolate a self-renewal determinant. Nanog is a divergent homeodomain protein that directs propagation of undifferentiated ES cells. Nanog mRNA is present in pluripotent mouse and human cell lines, and absent from differentiated cells. In preimplantation embryos, Nanog is restricted to founder cells from which ES cells can be derived. Endogenous Nanog acts in parallel with cytokine stimulation of Stat3 to drive ES cell self-renewal. Elevated Nanog expressio...
Pluripotent stem cells derived from preimplantation embryos, primordial germ cells or teratocarcinom...
The pluripotent state in embryonic stem (ES) cells is controlled by a core network of transcription ...
The pluripotent state in embryonic stem (ES) cells is controlled by a core network of transcription ...
AbstractEmbryonic stem (ES) cells undergo extended proliferation while remaining poised for multilin...
AbstractIn this issue of Cell, Chambers et al. (2003) and Mitsui et al. (2003) add a new transcripti...
Mouse embryonic stem (ES) cells are derived from the pre-implantation blastocyst and are able to mai...
Mouse embryonic stem (ES) cells are derived from the pre-implantation blastocyst and are able to mai...
SummaryThe homeodomain transcription factor Nanog is a central part of the core pluripotency transcr...
The homeodomain transcription factor Nanog is a central part of the core pluripotency transcriptiona...
SummaryThe homeodomain transcription factor Nanog is a central part of the core pluripotency transcr...
International audienceTranscription factor networks, together with histone modifications and signall...
AbstractA comprehensive understanding of the functional network of transcription factors establishin...
AbstractEmbryonic stem (ES) cells derived from the inner cell mass (ICM) of blastocysts grow infinit...
Pluripotent stem cells derived from preimplantation embryos, primordial germ cells or teratocarcinom...
International audienceTranscription factor networks, together with histone modifications and signall...
Pluripotent stem cells derived from preimplantation embryos, primordial germ cells or teratocarcinom...
The pluripotent state in embryonic stem (ES) cells is controlled by a core network of transcription ...
The pluripotent state in embryonic stem (ES) cells is controlled by a core network of transcription ...
AbstractEmbryonic stem (ES) cells undergo extended proliferation while remaining poised for multilin...
AbstractIn this issue of Cell, Chambers et al. (2003) and Mitsui et al. (2003) add a new transcripti...
Mouse embryonic stem (ES) cells are derived from the pre-implantation blastocyst and are able to mai...
Mouse embryonic stem (ES) cells are derived from the pre-implantation blastocyst and are able to mai...
SummaryThe homeodomain transcription factor Nanog is a central part of the core pluripotency transcr...
The homeodomain transcription factor Nanog is a central part of the core pluripotency transcriptiona...
SummaryThe homeodomain transcription factor Nanog is a central part of the core pluripotency transcr...
International audienceTranscription factor networks, together with histone modifications and signall...
AbstractA comprehensive understanding of the functional network of transcription factors establishin...
AbstractEmbryonic stem (ES) cells derived from the inner cell mass (ICM) of blastocysts grow infinit...
Pluripotent stem cells derived from preimplantation embryos, primordial germ cells or teratocarcinom...
International audienceTranscription factor networks, together with histone modifications and signall...
Pluripotent stem cells derived from preimplantation embryos, primordial germ cells or teratocarcinom...
The pluripotent state in embryonic stem (ES) cells is controlled by a core network of transcription ...
The pluripotent state in embryonic stem (ES) cells is controlled by a core network of transcription ...