Trk Receptors Function As Rapid Retrograde Signal Carriers in the Adult Nervous System
Open Access
- 15 September 1997
- journal article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 17 (18) , 7007-7016
- https://doi.org/10.1523/jneurosci.17-18-07007.1997
Abstract
During development target-derived neurotrophins promote the survival of neurons. However, mature neurons no longer depend on the target for survival. Do target-derived neurotrophins retain retrograde signaling functions in mature neurons, and, if so, how are they executed? We addressed this question by using a phosphotyrosine-directed antibody to locate activated Trk receptors in adult rat sciatic nerve. We show that catalytically active Trk receptors are located within the axon of adult rat sciatic nerve and that they are distributed throughout the length of the axons. These catalytically active receptors are phosphorylated on tyrosine at a position that couples them to the signal-generating proteins Ras and PI3 kinase. Neurotrophin applied at sciatic nerve terminals increases both catalytic activity and phosphorylation state of Trk receptors at distant points within the axons. Trk activation initiated at the nerve terminals propagates through the axon toward the nerve cell body at an initial rate that exceeds that of conventional vesicular transport. However, our data suggest that this rapid signal is nevertheless vesicle-associated. Thus, in mature nerves, activated Trk receptors function as rapid retrograde signal carriers to execute remote responses to target-derived neurotrophins.Keywords
This publication has 57 references indexed in Scilit:
- Control of EGF Receptor Signaling by Clathrin-Mediated EndocytosisScience, 1996
- NGF-stimulated retrograde transport of trkA in the mammalian nervous system.The Journal of cell biology, 1995
- The Trk family of neurotrophin receptorsJournal of Neurobiology, 1994
- p75 nerve growth factor receptor modulates p140trkA kinase activity, but not ligand internalization, in PC12 cellsJournal of Neuroscience Research, 1994
- Endocytosis of growth factor receptorsBioEssays, 1993
- Induction by NGF of Meiotic Maturation of Xenopus Oocytes Expressing the trk Proto-Oncogene ProductScience, 1991
- Oncogenes, Growth Factors, and Signal TransductionNew England Journal of Medicine, 1989
- Local control of neurite sprouting in cultured sympathetic neurons by nerve growth factorDevelopmental Brain Research, 1987
- Development of sympathetic neurons in compartmentalized culturesDevelopmental Biology, 1982
- Destruction of the sympathetic nervous system in neonatal rats and hamsters by vinblastine: prevention by concomitant administration of nerve growth factorBrain Research, 1978