Tissue morphogenesis requires force-generating mechanisms to organize cells into complex structures. Although many such mechanisms have been characterized, we know little about how forces are integrated across developing tissues. We provide evidence that integrin-mediated cell-extracellular matrix (ECM) adhesion modulates the transmission of apically generated tension during dorsal closure (DC) in Drosophila. Integrin-containing adhesive structures resembling focal adhesions were identified on the basal surface of the amnioserosa (AS), an extraembryonic epithelium essential for DC. Genetic modulation of integrin-mediated adhesion results in defective DC. Quantitative image analysis and laser ablation experiments reveal that basal cell-ECM a...
Cell-extra cellular matrix (ECM) adhesion through the integrin family of receptors is required for m...
<div><p>Mechanics has an important role during morphogenesis, both in the generation of forces drivi...
AbstractMuscle development involves a series of morphogenetic events including cell fusion, migratio...
Tissue morphogenesis requires force-generating mechanisms to drive the organization of cells into co...
Tissue morphogenesis relies on the coordinated action of actin networks, cell–cell adhesions, and ce...
AbstractDorsal closure during Drosophila embryogenesis provides a valuable model for epithelial morp...
AbstractDuring development cells interact mechanically with their microenvironment through cell–cell...
During morphogenesis tissue-scale forces drive large-scale deformations, yet how these forces arise ...
Cell shape changes within epithelia require the regulation of adhesive molecules that maintain tissu...
Cells in an organism are subjected to numerous sources of external and internal forces, and are able...
Contractile forces generated by the actomyosin cytoskeleton within individual cells collectively gen...
During the morphogenesis of multicellular organisms, cells undergo rearrangements and morphological ...
The molecular and cellular bases of cell shape change and movement during morphogenesis and wound he...
AbstractDorsal closure in Drosophila embryogenesis involves expansion of the dorsal epidermis, follo...
Tissue patterning relies on cellular reorganization through the interplay between signaling pathways...
Cell-extra cellular matrix (ECM) adhesion through the integrin family of receptors is required for m...
<div><p>Mechanics has an important role during morphogenesis, both in the generation of forces drivi...
AbstractMuscle development involves a series of morphogenetic events including cell fusion, migratio...
Tissue morphogenesis requires force-generating mechanisms to drive the organization of cells into co...
Tissue morphogenesis relies on the coordinated action of actin networks, cell–cell adhesions, and ce...
AbstractDorsal closure during Drosophila embryogenesis provides a valuable model for epithelial morp...
AbstractDuring development cells interact mechanically with their microenvironment through cell–cell...
During morphogenesis tissue-scale forces drive large-scale deformations, yet how these forces arise ...
Cell shape changes within epithelia require the regulation of adhesive molecules that maintain tissu...
Cells in an organism are subjected to numerous sources of external and internal forces, and are able...
Contractile forces generated by the actomyosin cytoskeleton within individual cells collectively gen...
During the morphogenesis of multicellular organisms, cells undergo rearrangements and morphological ...
The molecular and cellular bases of cell shape change and movement during morphogenesis and wound he...
AbstractDorsal closure in Drosophila embryogenesis involves expansion of the dorsal epidermis, follo...
Tissue patterning relies on cellular reorganization through the interplay between signaling pathways...
Cell-extra cellular matrix (ECM) adhesion through the integrin family of receptors is required for m...
<div><p>Mechanics has an important role during morphogenesis, both in the generation of forces drivi...
AbstractMuscle development involves a series of morphogenetic events including cell fusion, migratio...