International audienceZIC2 mutation is known to cause holoprosencephaly (HPE). A subset of ZIC2 HPE probands harbour cardiovascular and visceral anomalies suggestive of laterality defects. 3D-imaging of novel mouse Zic2 mutants uncovers, in addition to HPE, laterality defects in lungs, heart, vasculature and viscera. A strong bias towards right isomerism indicates a failure to establish left identity in the lateral plate mesoderm (LPM), a phenotype that cannot be explained simply by the defective ciliogenesis previously noted in Zic2 mutants. Gene expression analysis showed that the left-determining NODAL-dependent signalling cascade fails to be activated in the LPM, and that the expression of Nodal at the node, which normally triggers this...
Summary: The first molecular herald of organ asymmetry during murine embryogenesis is found at the p...
Left-right (L-R) asymmetry in the mouse embryo is generated in the node and is dependent on cilia-dr...
Leftward fluid flow in the mouse node is generated by cilia and is critical for initiating asymmetry...
ZIC2 mutation is known to cause holoprosencephaly (HPE). A subset of ZIC2 HPE probands harbour cardi...
ZIC2 mutation is known to cause holoprosencephaly (HPE). A subset of ZIC2 HPE probands harbour cardi...
ZIC2 mutation is known to cause holoprosencephaly (HPE). A subset of ZIC2 HPE probands harbour cardi...
ZIC2 mutation is known to cause holoprosencephaly (HPE). A subset of ZIC2 HPE probands harbour cardi...
The ZIC2 transcription factor is one of the genes most commonly mutated in Holoprosencephaly (HPE) p...
The putative transcription factor ZIC2 is associated with a defect of forebrain development, known a...
AbstractInitial determination of left–right (L-R) polarity in mammalian embryos takes place in the n...
International audienceIn all vertebrates, invariant left/right (L/R) positioning and organization of...
AbstractZic family zinc-finger proteins play various roles in animal development. In mice, five Zic ...
ZIC2 is a transcription factor that, when mutated in humans, causes holoprosencephaly type 5 (HPE5) ...
In all vertebrates, invariant left/right (L/R) positioning and organization of the internal viscera ...
AbstractDuring vertebrate embryogenesis, a left–right axis is established. The heart, associated ves...
Summary: The first molecular herald of organ asymmetry during murine embryogenesis is found at the p...
Left-right (L-R) asymmetry in the mouse embryo is generated in the node and is dependent on cilia-dr...
Leftward fluid flow in the mouse node is generated by cilia and is critical for initiating asymmetry...
ZIC2 mutation is known to cause holoprosencephaly (HPE). A subset of ZIC2 HPE probands harbour cardi...
ZIC2 mutation is known to cause holoprosencephaly (HPE). A subset of ZIC2 HPE probands harbour cardi...
ZIC2 mutation is known to cause holoprosencephaly (HPE). A subset of ZIC2 HPE probands harbour cardi...
ZIC2 mutation is known to cause holoprosencephaly (HPE). A subset of ZIC2 HPE probands harbour cardi...
The ZIC2 transcription factor is one of the genes most commonly mutated in Holoprosencephaly (HPE) p...
The putative transcription factor ZIC2 is associated with a defect of forebrain development, known a...
AbstractInitial determination of left–right (L-R) polarity in mammalian embryos takes place in the n...
International audienceIn all vertebrates, invariant left/right (L/R) positioning and organization of...
AbstractZic family zinc-finger proteins play various roles in animal development. In mice, five Zic ...
ZIC2 is a transcription factor that, when mutated in humans, causes holoprosencephaly type 5 (HPE5) ...
In all vertebrates, invariant left/right (L/R) positioning and organization of the internal viscera ...
AbstractDuring vertebrate embryogenesis, a left–right axis is established. The heart, associated ves...
Summary: The first molecular herald of organ asymmetry during murine embryogenesis is found at the p...
Left-right (L-R) asymmetry in the mouse embryo is generated in the node and is dependent on cilia-dr...
Leftward fluid flow in the mouse node is generated by cilia and is critical for initiating asymmetry...