AbstractCell shape changes are critical for morphogenetic events such as gastrulation, neurulation, and organogenesis. However, the cell biology driving cell shape changes is poorly understood, especially in vertebrates. The beginning of Xenopus laevis gastrulation is marked by the apical constriction of bottle cells in the dorsal marginal zone, which bends the tissue and creates a crevice at the blastopore lip. We found that bottle cells contribute significantly to gastrulation, as their shape change can generate the force required for initial blastopore formation. As actin and myosin are often implicated in contraction, we examined their localization and function in bottle cells. F-actin and activated myosin accumulate apically in bottle ...
The cytoskeleton is a major determinant of cell-shape changes that drive the formation of complex ti...
AbstractBlastopore closure in the amphibian embryo involves large scale tissue reorganization driven...
The cytoskeleton is a major determinant of cell-shape changes that drive the formation of complex ti...
SummaryCoordinated apical constriction (AC) in epithelial sheets drives tissue invagination [1, 2] a...
SummaryCoordinated apical constriction (AC) in epithelial sheets drives tissue invagination [1, 2] a...
Apical constriction changes cell shapes, driving critical morphogenetic events, including gastrulati...
Apical constriction changes cell shapes, driving critical morphogenetic events including gastrulatio...
Apical constriction changes cell shapes, driving critical morphogenetic events including gastrulatio...
Actomyosin networks linked to the micro-environment through the plasma membrane are thought to be ke...
Actomyosin networks linked to the micro-environment through the plasma membrane are thought to be ke...
The cytoskeleton is a major determinant of cell-shape changes that drive the formation of complex ti...
The cytoskeleton is a major determinant of cell-shape changes that drive the formation of complex ti...
The cytoskeleton is a major determinant of cell-shape changes that drive the formation of complex ti...
The cytoskeleton is a major determinant of cell-shape changes that drive the formation of complex ti...
The cytoskeleton is a major determinant of cell-shape changes that drive the formation of complex ti...
The cytoskeleton is a major determinant of cell-shape changes that drive the formation of complex ti...
AbstractBlastopore closure in the amphibian embryo involves large scale tissue reorganization driven...
The cytoskeleton is a major determinant of cell-shape changes that drive the formation of complex ti...
SummaryCoordinated apical constriction (AC) in epithelial sheets drives tissue invagination [1, 2] a...
SummaryCoordinated apical constriction (AC) in epithelial sheets drives tissue invagination [1, 2] a...
Apical constriction changes cell shapes, driving critical morphogenetic events, including gastrulati...
Apical constriction changes cell shapes, driving critical morphogenetic events including gastrulatio...
Apical constriction changes cell shapes, driving critical morphogenetic events including gastrulatio...
Actomyosin networks linked to the micro-environment through the plasma membrane are thought to be ke...
Actomyosin networks linked to the micro-environment through the plasma membrane are thought to be ke...
The cytoskeleton is a major determinant of cell-shape changes that drive the formation of complex ti...
The cytoskeleton is a major determinant of cell-shape changes that drive the formation of complex ti...
The cytoskeleton is a major determinant of cell-shape changes that drive the formation of complex ti...
The cytoskeleton is a major determinant of cell-shape changes that drive the formation of complex ti...
The cytoskeleton is a major determinant of cell-shape changes that drive the formation of complex ti...
The cytoskeleton is a major determinant of cell-shape changes that drive the formation of complex ti...
AbstractBlastopore closure in the amphibian embryo involves large scale tissue reorganization driven...
The cytoskeleton is a major determinant of cell-shape changes that drive the formation of complex ti...