Glial Control of Neuronal Development
- 1 March 2001
- journal article
- review article
- Published by Annual Reviews in Annual Review of Neuroscience
- Vol. 24 (1) , 87-105
- https://doi.org/10.1146/annurev.neuro.24.1.87
Abstract
▪ Abstract Reciprocal interactions between differentiating glial cells and neurons define the course of nervous system development even before the point at which these two cell types become definitively recognizable. Glial cells control the survival of associated neurons in both Drosophila and mammals, but this control is dependent on the prior neuronal triggering of glial cell fate commitment and trophic factor expression. In mammals, the growth factor neuregulin-1 and its receptors of the ErbB family play crucial roles in both events. Similarly, early differentiating neurons and their associated glia rely on reciprocal signaling to establish the basic axon scaffolds from which neuronal connections evolve. The importance of this interactive signaling is illustrated by the action of glial transcription factors and of glial axon guidance cues such as netrin and slit, which together regulate the commissural crossing of pioneer axons at the neural midline. In these and related events, the defining principle is one of mutually reinforced and mutually dependent signaling that occurs in a network of developing neurons and glia.Keywords
This publication has 84 references indexed in Scilit:
- Attraction versus Repulsion: Modular Receptors Make the Difference in Axon GuidanceCell, 1999
- Neuregulin and erbB Receptors Play a Critical Role in Neuronal MigrationNeuron, 1997
- UNC-40, a C. elegans Homolog of DCC (Deleted in Colorectal Cancer), Is Required in Motile Cells Responding to UNC-6 Netrin CuesCell, 1996
- Deleted in Colorectal Cancer (DCC) Encodes a Netrin ReceptorCell, 1996
- The Muddle with MAGMolecular and Cellular Neuroscience, 1996
- Microglia: a sensor for pathological events in the CNSTrends in Neurosciences, 1996
- Nuk Controls Pathfinding of Commissural Axons in the Mammalian Central Nervous SystemCell, 1996
- The netrins define a family of axon outgrowth-promoting proteins homologous to C. elegans UNC-6Cell, 1994
- A neu acquaintance for ErbB3 and ErbB4: A role for receptor heterodimerization in growth signalingCell, 1994
- Mouse P0 gene disruption leads to hypomyelination, abnormal expression of recognition molecules, and degeneration of myelin and axonsCell, 1992