The Journal of Cell Biology · 2016 · 141 citations · 67 references
Neural Crest CellsSpatial ConfinementCytoskeletonCellular PhysiologyMatrix BiologyNeural CrestCollective Cell MigrationCell TraffickingMorphogenesisNeural Tissue EngineeringCell BiologyDevelopmental BiologyCell-matrix InteractionCell MigrationCell MotilitySystems BiologyMedicineNeural Stem CellExtracellular Matrix
Collective cell migration is fundamental throughout development and in many diseases. Spatial confinement using micropatterns has been shown to promote collective cell migration in vitro, but its effect in vivo remains unclear. Combining computational and experimental approaches, we show that the in vivo collective migration of neural crest cells (NCCs) depends on such confinement. We demonstrate that confinement may be imposed by the spatiotemporal distribution of a nonpermissive substrate provided by versican, an extracellular matrix molecule previously proposed to have contrasting roles: barrier or promoter of NCC migration. We resolve the controversy by demonstrating that versican works as an inhibitor of NCC migration and also acts as a guiding cue by forming exclusionary boundaries. Our model predicts an optimal number of cells in a given confinement width to allow for directional migration. This optimum coincides with the width of neural crest migratory streams analyzed across different species, proposing an explanation for the highly conserved nature of NCC streams during development.
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Quantification of protein half-lives in the budding yeast proteome
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Collective Chemotaxis Requires Contact-Dependent Cell Polarity
Eric Théveneau, Lorena Marchant, Sei Kuriyama et al. · Developmental Cell · 2010 · 530 citations · Full text