Promotion of proliferation in the developing cerebral cortex by EphA4 forward signaling
Open Access
- 15 July 2009
- journal article
- Published by The Company of Biologists in Development
- Vol. 136 (14) , 2467-2476
- https://doi.org/10.1242/dev.034405
Abstract
Eph receptors are widely expressed during cerebral cortical development, yet a role for Eph signaling in the generation of cells during corticogenesis has not been shown. Cortical progenitor cells selectively express one receptor, EphA4, and reducing EphA4 signaling in cultured progenitors suppressed proliferation, decreasing cell number. In vivo, EphA4-/- cortex had a reduced area, fewer cells and less cell division compared with control cortex. To understand the effects of EphA4 signaling in corticogenesis, EphA4-mediated signaling was selectively depressed or elevated in cortical progenitors in vivo. Compared with control cells, cells with reduced EphA4 signaling were rare and mitotically inactive. Conversely, overexpression of EphA4 maintained cells in their progenitor states at the expense of subsequent maturation, enlarging the progenitor pool. These results support a role for EphA4 in the autonomous promotion of cell proliferation during corticogenesis. Although most ephrins were undetectable in cortical progenitors, ephrin B1 was highly expressed. Our analyses demonstrate that EphA4 and ephrin B1 bind to each other, thereby initiating signaling. Furthermore, overexpression of ephrin B1 stimulated cell division of neighboring cells, supporting the hypothesis that ephrin B1-initiated forward signaling of EphA4 promotes cortical cell division.Keywords
This publication has 75 references indexed in Scilit:
- EphA4 promotes cell proliferation and migration through a novel EphA4-FGFR1 signaling pathway in the human glioma U251 cell lineMolecular Cancer Therapeutics, 2008
- EphB Receptors Couple Dendritic Filopodia Motility to Synapse FormationNeuron, 2008
- Regulation of neural progenitor cell state by ephrin-BThe Journal of cell biology, 2008
- Eph/ephrin signaling: networksGenes & Development, 2008
- Nck adaptor proteins control the organization of neuronal circuits important for walkingProceedings of the National Academy of Sciences, 2007
- α2-Chimaerin interacts with EphA4 and regulates EphA4-dependent growth cone collapseProceedings of the National Academy of Sciences, 2007
- The EphA4 receptor regulates dendritic spine remodeling by affecting β1-integrin signaling pathwaysThe Journal of cell biology, 2007
- Differential Notch signalling distinguishes neural stem cells from intermediate progenitorsNature, 2007
- Retinal Axon Response to Ephrin-As Shows a Graded, Concentration-Dependent Transition from Growth Promotion to InhibitionNeuron, 2004
- Repelling class discrimination: ephrin-A5 binds to and activates EphB2 receptor signalingNature Neuroscience, 2004