Proceedings of the National Academy of Sciences · 2009 · 86 citations · 29 references
Cell EpithelializationCytoskeletonCellular PhysiologyTissue SegregationTissue DevelopmentSignaling PathwayIntercellular CommunicationCell SignalingEarly MorphogenesisGap FormationSomite SegmentationMorphogenesisEpithelial-mesenchymal InteractionsCell BiologyMorphological BoundaryDevelopmental BiologySignal TransductionSystems BiologyMedicineCell DevelopmentExtracellular Matrix
During early morphogenesis, tissue segregation is often accompanied by changes in cell shape. To understand how such coordination is regulated, somitogenesis was used as a model. When a somite forms in the anterior end of the presomitic mesoderm, an intersomitic boundary (gap) emerges, and it is rapidly followed by cell epithelialization at this border. It has been known that the gap formation is regulated by intercellular signals. We here demonstrate that cMeso-1, the chicken homolog of mouse Mesp2, up-regulates EphA4 in the cells located posteriorly to a forming boundary. This in turn activates EphrinB2-reverse signals in the anteriorly juxtaposed cells, where the EphrinB2 signal is sufficient to cause a gap formation and cell epithelialization cell-autonomously. During these processes, Cdc42 needs to be repressed via tyrosine phosphorylation of EphrinB2. This is the first demonstration that Ephrin-reverse signal acts as a platform that couples distinct morphogenetic changes in cell polarity and tissue shape.
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Site-directed mutagenesis by overlap extension using the polymerase chain reaction
Steffan N. Ho, Henry D. Hunt, Robert M. Horton et al. · Gene · 1989 · 7.5K citations
Induction of filopodium formation by a WASP-related actin-depolymerizing protein N-WASP
Hiroaki Miki, Takuya Sasaki, Yoshimi Takai et al. · Nature · 1998 · 647 citations