Active Src expression is induced after rat peripheral nerve injury
- 18 March 2003
- Vol. 42 (2) , 184-193
- https://doi.org/10.1002/glia.10223
Abstract
The non–receptor‐type Src tyrosine kinases are key components of intracellular signal transduction that are expressed at high levels in the nervous system. To improve understanding of the cascades of molecular events underlying peripheral nerve regeneration, we analyzed active Src expression in the crushed or cut rat sciatic nerves using a monoclonal antibody (clone 28) that recognizes the active form of Src tyrosine kinases, including c‐Src and c‐Fyn. Western blots showed that active Src expressed in the normal sciatic nerve transiently increased up to threefolds after both types of injury. Immunohistochemistry using clone 28 showed that axonal components are the primary sites of active Src expression in the normal sciatic nerve. Soon after both types of injury, active Src was abundantly expressed in Schwann cells of the segments distal to the injury site. The expression of active Src in the cells decreased with restoration of the axon‐Schwann cell relationship and eventually became depleted to very low levels after crushing, but was sustained at high levels in the cut model until the end of the experiment. Regenerated axons consistently expressed active Src throughout nerve regeneration and these eventually became the major sites of active Src expression in the crushed nerve. Among the Src tyrosine kinases, active c‐Src selectively increased after crushing according to immunoprecipitation and immunoblotting analyses. Due to its potent biological activity, the increased amounts of the active form of Src probably enhance axonal regrowth, the Schwann cell response, and axon‐Schwann cell contact for peripheral nerve regeneration. GLIA 42:184–193, 2003.Keywords
This publication has 33 references indexed in Scilit:
- Expression of Neuregulins and their Putative Receptors, ErbB2 and ErbB3, Is Induced during Wallerian DegenerationJournal of Neuroscience, 1997
- The cellular and molecular basis of peripheral nerve regenerationMolecular Neurobiology, 1997
- Adhesion in cell migrationCurrent Opinion in Cell Biology, 1995
- NCAM-dependent neurite outgrowth is inhibited in neurons from Fyn-minus mice.The Journal of cell biology, 1994
- Expanding roles for the Schwann cell: ensheathment, myelination, trophism and regenerationCurrent Opinion in Neurobiology, 1993
- The when and how of Src regulationCell, 1993
- Neural cell adhesion molecules modulate tyrosine phosphorylation of tubulin in nerve growth cone membranesNeuron, 1992
- Platelet-derived growth factor induces multisite phosphorylation of pp60c-src and increases its protein-tyrosine kinase activity.Molecular and Cellular Biology, 1988
- pp60c-src in the developing cerebellum.Molecular and Cellular Biology, 1985
- The role of non-resident cells in Wallerian degenerationJournal of Neurocytology, 1984