Delta-Notch signaling regulates oligodendrocyte specification
- 15 August 2003
- journal article
- Published by The Company of Biologists in Development
- Vol. 130 (16) , 3747-3755
- https://doi.org/10.1242/dev.00576
Abstract
Oligodendrocytes, the myelinating cell type of the central nervous system, arise from a ventral population of precursors that also produces motoneurons. Although the mechanisms that specify motoneuron development are well described, the mechanisms that generate oligodendrocytes from the same precursor population are largely unknown. By analysing mutant zebrafish embryos, we found that Delta-Notch signaling is required for spinal cord oligodendrocyte specification. Using a transgenic, conditional expression system, we also learned that constitutive Notch activity could promote formation of excess oligodendrocyte progenitor cells (OPCs). However, excess OPCs are induced only in ventral spinal cord at the time that OPCs normally develop. Our data provide evidence that Notch signaling maintains subsets of ventral spinal cord precursors during neuronal birth and, acting with other temporally and spatially restricted factors, specifies them for oligodendrocyte fate.Keywords
This publication has 48 references indexed in Scilit:
- Mind Bomb Is a Ubiquitin Ligase that Is Essential for Efficient Activation of Notch Signaling by DeltaDevelopmental Cell, 2003
- Notch1 control of oligodendrocyte differentiation in the spinal cordThe Journal of cell biology, 2002
- Proneural genes and the specification of neural cell typesNature Reviews Neuroscience, 2002
- The bHLH Transcription Factors OLIG2 and OLIG1 Couple Neuronal and Glial Subtype SpecificationPublished by Elsevier ,2002
- Coordinate Regulation of Motor Neuron Subtype Identity and Pan-Neuronal Properties by the bHLH Repressor Olig2Neuron, 2001
- A Turn of the Helix: Preventing the Glial FateNeuron, 2001
- Transient Notch Activation Initiates an Irreversible Switch from Neurogenesis to Gliogenesis by Neural Crest Stem CellsCell, 2000
- Identification of a Novel Family of Oligodendrocyte Lineage-Specific Basic Helix–Loop–Helix Transcription FactorsNeuron, 2000
- Expression of an extracellular deletion of Xotch diverts cell fate in Xenopus embryosCell, 1993
- The growth cones of identified motoneurons in embryonic zebrafish select appropriate pathways in the absence of specific cellular interactionsNeuron, 1989