Contains fulltext : 168894.pdf (preprint version ) (Open Access)Mouse embryonic stem (ES) cells are locked into self-renewal by shielding from inductive cues. Release from this ground state in minimal conditions offers a system for delineating developmental progression from naive pluripotency. Here we examined the initial transition process. The ES cell population behaves asynchronously. We therefore exploited a short-half-life Rex1::GFP reporter to isolate cells either side of exit from naive status. Extinction of ES cell identity in single cells is acute. It occurs only after near-complete elimination of naïve pluripotency factors, but precedes appearance of lineage specification markers. Cells newly departed from the ES...
A short G1 phase is a characteristic feature of mouse embryonic stem cells (ESCs). To determine if t...
Background: Commitment in embryonic stem cells is often depicted as a binary choice between alternat...
Pluripotent stem cells of different embryonic origin respond to distinct signaling pathways. Embryon...
Mouse embryonic stem (ES) cells are locked into self-renewal by shielding from inductive cues. Relea...
Mouse embryonic stem (ES) cells are locked into self-renewal by shielding from inductive cues. Relea...
Mouse embryonic stem (ES) cells are locked into self-renewal by shielding from inductive cues. Relea...
In the mammalian embryo, epiblast cells must exit the naive state and acquire formative pluripotency...
In the mammalian embryo, epiblast cells must exit the naïve state and acquire formative pluripotency...
Pluripotency is defined as the ability to develop into all tissues of the adult organism. In vivo, p...
Pluripotency is defined as the ability to develop into all tissues of the adult organism. In vivo, p...
International audienceA short G1 phase is a characteristic feature of mouse embryonic stem cells (ES...
International audienceA short G1 phase is a characteristic feature of mouse embryonic stem cells (ES...
BACKGROUND: Commitment in embryonic stem cells is often depicted as a binary choice between alternat...
Pluripotent stem cells of different embryonic origin respond to distinct signaling pathways. Embryon...
International audienceA short G1 phase is a characteristic feature of mouse embryonic stem cells (ES...
A short G1 phase is a characteristic feature of mouse embryonic stem cells (ESCs). To determine if t...
Background: Commitment in embryonic stem cells is often depicted as a binary choice between alternat...
Pluripotent stem cells of different embryonic origin respond to distinct signaling pathways. Embryon...
Mouse embryonic stem (ES) cells are locked into self-renewal by shielding from inductive cues. Relea...
Mouse embryonic stem (ES) cells are locked into self-renewal by shielding from inductive cues. Relea...
Mouse embryonic stem (ES) cells are locked into self-renewal by shielding from inductive cues. Relea...
In the mammalian embryo, epiblast cells must exit the naive state and acquire formative pluripotency...
In the mammalian embryo, epiblast cells must exit the naïve state and acquire formative pluripotency...
Pluripotency is defined as the ability to develop into all tissues of the adult organism. In vivo, p...
Pluripotency is defined as the ability to develop into all tissues of the adult organism. In vivo, p...
International audienceA short G1 phase is a characteristic feature of mouse embryonic stem cells (ES...
International audienceA short G1 phase is a characteristic feature of mouse embryonic stem cells (ES...
BACKGROUND: Commitment in embryonic stem cells is often depicted as a binary choice between alternat...
Pluripotent stem cells of different embryonic origin respond to distinct signaling pathways. Embryon...
International audienceA short G1 phase is a characteristic feature of mouse embryonic stem cells (ES...
A short G1 phase is a characteristic feature of mouse embryonic stem cells (ESCs). To determine if t...
Background: Commitment in embryonic stem cells is often depicted as a binary choice between alternat...
Pluripotent stem cells of different embryonic origin respond to distinct signaling pathways. Embryon...