Ephrin-B1 forward and reverse signaling are required during mouse development
Open Access
- 1 March 2004
- journal article
- Published by Cold Spring Harbor Laboratory in Genes & Development
- Vol. 18 (5), 572-583
- https://doi.org/10.1101/gad.1171704
Abstract
Eph receptors and ephrin ligands are key players in many developmental processes including embryo patterning, angiogenesis, and axon guidance. Eph/ephrin interactions lead to the generation of a bidirectional signal, in which both the Eph receptors and the ephrins activate downstream signaling cascades simultaneously. To understand the role of ephrin-B1 and the importance of ephrin-B1-induced reverse signaling during embryonic development, we have generated mouse lines carrying mutations in the efnb1 gene. Complete ablation of ephrin-B1 resulted in perinatal lethality associated with a range of phenotypes, including defects in neural crest cell (NCC)-derived tissues, incomplete body wall closure, and abnormal skeletal patterning. Conditional deletion of ephrin-B1 demonstrated that ephrin-B1 acts autonomously in NCCs, and controls their migration. Last, a mutation in the PDZ binding domain indicated that ephrin-B1-induced reverse signaling is required in NCCs. Our results demonstrate that ephrin-B1 acts both as a ligand and as a receptor in a tissue-specific manner during embryogenesis.Keywords
This publication has 49 references indexed in Scilit:
- EphB–ephrinB bi-directional endocytosis terminates adhesion allowing contact mediated repulsionNature Cell Biology, 2003
- Multiple roles of ephrins in morphogenesis, neuronal networking, and brain functionGenes & Development, 2003
- Cell autonomous requirement for PDGFRα in populations of cranial and cardiac neural crest cellsDevelopment, 2003
- EphrinB Phosphorylation and Reverse SignalingMolecular Cell, 2002
- Vascular patterning by Eph receptor tyrosine kinases and ephrinsSeminars in Cell & Developmental Biology, 2002
- Tyrosine Phosphorylation of Transmembrane Ligands for Eph ReceptorsScience, 1997
- Eph Family Transmembrane Ligands Can Mediate Repulsive Guidance of Trunk Neural Crest Migration and Motor Axon OutgrowthNeuron, 1997
- AL‐1‐induced Growth Cone Collapse of Rat Cortical Neurons is Correlated with REK7 Expression and Rearrangement of the Actin CytoskeletonEuropean Journal of Neuroscience, 1997
- Bidirectional signalling through the EPH-family receptor Nuk and its transmembrane ligandsNature, 1996
- Nuk Controls Pathfinding of Commissural Axons in the Mammalian Central Nervous SystemCell, 1996