SummaryBackgroundIn preimplantation mouse embryos, the first cell fate specification to the trophectoderm or inner cell mass occurs by the early blastocyst stage. The cell fate is controlled by cell position-dependent Hippo signaling, although the mechanisms underlying position-dependent Hippo signaling are unknown.ResultsWe show that a combination of cell polarity and cell-cell adhesion establishes position-dependent Hippo signaling, where the outer and inner cells are polar and nonpolar, respectively. The junction-associated proteins angiomotin (Amot) and angiomotin-like 2 (Amotl2) are essential for Hippo pathway activation and appropriate cell fate specification. In the nonpolar inner cells, Amot localizes to adherens junctions (AJs), an...
Currently, it is not known how cell polarity influences tissue size control during development and i...
Human placenta development and a successful pregnancy is incumbent upon precise oxygendependent cont...
SummaryLineage decisions in development are thought to be primarily due to differential activation o...
SummaryBackgroundIn preimplantation mouse embryos, the first cell fate specification to the trophect...
Extra ViEw The Hippo signaling pathway regu-lates a number of cellular events, including the control...
Cell identity is specified in the early mammalian embryo by the generation of precursors for two cel...
Angiomotin (AMOT) is a scaffolding protein involved in cell polarity regulation, cell migration and ...
Preimplantation mouse embryos form two types of cells by the blastocyst stage: trophectoderm (TE) an...
AbstractSpecification of the trophectoderm (TE) and inner cell mass (ICM) lineages in the mouse blas...
International audienceBACKGROUND: During mammalian preimplantation development, lineage divergence s...
In the mouse embryo, asymmetric divisions at the 8-cell stage generate two cell types, polar and apo...
During mammalian development, the first two lineages to be specified are trophectoderm (TE) and inne...
Although the mechanisms underlying the divergence of the first cell types in the mouse, the trophect...
Background: During mammalian preimplantation development, lineage divergence seems to be controlled ...
The Hippo tumor suppressor pathway plays important roles in organ size control through Lats1/2 media...
Currently, it is not known how cell polarity influences tissue size control during development and i...
Human placenta development and a successful pregnancy is incumbent upon precise oxygendependent cont...
SummaryLineage decisions in development are thought to be primarily due to differential activation o...
SummaryBackgroundIn preimplantation mouse embryos, the first cell fate specification to the trophect...
Extra ViEw The Hippo signaling pathway regu-lates a number of cellular events, including the control...
Cell identity is specified in the early mammalian embryo by the generation of precursors for two cel...
Angiomotin (AMOT) is a scaffolding protein involved in cell polarity regulation, cell migration and ...
Preimplantation mouse embryos form two types of cells by the blastocyst stage: trophectoderm (TE) an...
AbstractSpecification of the trophectoderm (TE) and inner cell mass (ICM) lineages in the mouse blas...
International audienceBACKGROUND: During mammalian preimplantation development, lineage divergence s...
In the mouse embryo, asymmetric divisions at the 8-cell stage generate two cell types, polar and apo...
During mammalian development, the first two lineages to be specified are trophectoderm (TE) and inne...
Although the mechanisms underlying the divergence of the first cell types in the mouse, the trophect...
Background: During mammalian preimplantation development, lineage divergence seems to be controlled ...
The Hippo tumor suppressor pathway plays important roles in organ size control through Lats1/2 media...
Currently, it is not known how cell polarity influences tissue size control during development and i...
Human placenta development and a successful pregnancy is incumbent upon precise oxygendependent cont...
SummaryLineage decisions in development are thought to be primarily due to differential activation o...