Axon Withdrawal during Synapse Elimination at the Neuromuscular Junction Is Accompanied by Disassembly of the Postsynaptic Specialization and Withdrawal of Schwann Cell Processes
Open Access
- 1 July 1998
- journal article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 18 (13) , 4953-4965
- https://doi.org/10.1523/jneurosci.18-13-04953.1998
Abstract
Nerve terminal withdrawal is accompanied by a loss of acetylcholine receptors (AChRs) at corresponding postsynaptic sites during the process of synapse elimination at developing (Balice-Gordon and Lichtman, 1993) and reinnervated adult (Rich and Lichtman, 1989a) neuromuscular junctions. Aside from AChR and nerve terminal loss, however, the molecular and cellular alterations that occur at sites of elimination are unknown. To gain a better understanding of the cascade of events that leads to the disassembly of synaptic sites during the synapse elimination process, we surveyed the distribution of molecular elements of the postsynaptic specialization, the basal lamina, and supporting Schwann cells during the process of synapse elimination that occurs after reinnervation. In addition, quantitative techniques were used to determine the temporal order of disappearance of molecules that were lost relative to the loss of postsynaptic AChRs. We found that the dismantling of the postsynaptic specialization was inhomogeneous, with evidence of rapid dissolution of some aspects of the postsynaptic apparatus and slower loss of others. We also observed a loss of Schwann cell processes from sites of synapse elimination, with a time course similar to that seen for nerve terminal retraction. In contrast, all of the extracellular markers that we examined were lost slowly from sites of synapse loss. We therefore conclude that the synapse elimination process is synapse-wide, removing not only nerve terminals but also Schwann cells and many aspects of the postsynaptic apparatus. The disassembly occurs in a stereotyped sequence with some synaptic elements appearing much more stable than others.Keywords
This publication has 46 references indexed in Scilit:
- The Receptor Tyrosine Kinase MuSK Is Required for Neuromuscular Junction Formation In VivoCell, 1996
- Synapse disassembly at the neuromuscular junctionSeminars in Developmental Biology, 1995
- Gradual loss of synaptic cartels precedes axon withdrawal at developing neuromuscular junctionsNeuron, 1993
- The submembrane machinery for nicotinic acetylcholine receptor clustering.The Journal of cell biology, 1991
- Plasticity of presynaptic and postsynaptic elements of neuromuscular junctions repeatedly observed in living adult miceJournal of Neurocytology, 1991
- Regulation of tyrosine phosphorylation of the nicotinic acetylcholine receptor at the rat neuromuscular lunctionNeuron, 1990
- NEUROMUSCULAR BLOCKING AGENTSInternational Anesthesiology Clinics, 1988
- Visualization of the cytoplasmic surface of Torpedo postsynaptic membranes by freeze-etch and immunoelectron microscopy.The Journal of cell biology, 1987
- The distribution of acetylcholine receptors in the normal and denervated neuromuscular junction of the frogJournal of Neurocytology, 1985
- Complex end-plate potentials at the regenerating neuromuscular junction of the ratExperimental Neurology, 1975