Readiness of Zebrafish Brain Neurons to Regenerate a Spinal Axon Correlates with Differential Expression of Specific Cell Recognition Molecules
Open Access
- 1 August 1998
- journal article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 18 (15) , 5789-5803
- https://doi.org/10.1523/jneurosci.18-15-05789.1998
Abstract
We analyzed changes in the expression of mRNAs for the axonal growth-promoting cell recognition molecules L1.1, L1.2, and neural cell adhesion molecule (NCAM) after a rostral (proximal) or caudal (distal) spinal cord transection in adult zebrafish. One class of cerebrospinal projection nuclei (represented by the nucleus of the medial longitudinal fascicle, the intermediate reticular formation, and the magnocellular octaval nucleus) showed a robust regenerative response after both types of lesions as determined by retrograde tracing and/orin situhybridization for GAP-43. A second class (represented by the nucleus ruber, the nucleus of the lateral lemniscus, and the tangential nucleus) showed a regenerative response only after proximal lesion. After distal lesion, upregulation of L1.1 and L1.2 mRNAs, but not NCAM mRNA expression, was observed in the first class of nuclei. The second class of nuclei did not show any changes in their mRNA expression after distal lesion. After proximal lesion, both classes of brain nuclei upregulated L1.1 mRNA expression (L1.2 and NCAM were not tested after proximal lesion). In the glial environment distal to the spinal lesion, labeling for L1.2 mRNA but not L1.1 or NCAM mRNAs was increased. These results, combined with findings in the lesioned retinotectal system of zebrafish (Bernhardt et al., 1996), indicate that the neuron-intrinsic regulation of cell recognition molecules after axotomy depends on the cell type as well as on the proximity of the lesion to the neuronal soma. Glial reactions differ for different regions of the CNS.Keywords
This publication has 59 references indexed in Scilit:
- Target contact regulates GAP-43 and ?-tubulin mRNA levels in regenerating retinal ganglion cellsJournal of Neuroscience Research, 1998
- Colocalization of the Homophilic Binding Site and the Neuritogenic Activity of the Cell Adhesion Molecule L1 to Its Second Ig-like DomainPublished by Elsevier ,1995
- Molecular basis of interactions between regenerating adult rat thalamic axons and Schwann cells in peripheral nerve grafts I. Neural cell adhesion moleculesJournal of Comparative Neurology, 1995
- Tenascin-C expression by neurons and glial cells in the rat spinal cord: Changes during postnatal development and after dorsal root or sciatic nerve injuryJournal of Neurocytology, 1995
- Failure of Axon Regeneration in Postnatal Rat Entorhino‐hippocampal Slice Coculture is Due to Maturation of the Axon, not that of the Pathway or TargetEuropean Journal of Neuroscience, 1995
- Long Distance Axonal Regeneration of Identified Lamprey Reticulospinal NeuronsExperimental Neurology, 1994
- Expression and functional roles of neural cell surface molecules and extracellular matrix components during development and regeneration of peripheral nervesJournal of Neurocytology, 1994
- Expression of the growth-associated protein GAP-43 in adult rat retinal ganglion cells following axon injuryNeuron, 1991
- Altered expression of neuronal cell adhesion molecules induced by nerve injury and repair.The Journal of cell biology, 1986
- Regeneration of long spinal axons in the ratJournal of Neurocytology, 1984