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Updated: Aug 23, 2026

Paired Patch Clamp Recordings from Motor-neuron and Target Skeletal Muscle in Zebrafish
Published on: November 20, 2010
Acetylcholine receptors direct rapsyn clusters to the neuromuscular synapse in zebrafish
Fumihito Ono1, Gail Mandel, Paul Brehm
1The Whitney Laboratory, University of Florida, St. Augustine, Florida 32080, USA. fono@whitney.ufl.edu
Abstract:
Clustering of nicotinic muscle acetylcholine receptors (AChRs) requires association with intracellular rapsyn, a protein with an intrinsic ability to self-cluster. Previous studies on sofa potato (sop), an AChR null line of zebrafish, have suggested that AChRs may play an active role in subsynaptic localization of rapsyn clusters. To test this proposal directly, we identified and cloned the gene responsible for the sop phenotype and then attempted to rescue subsynaptic localization of the receptor-rapsyn complex in mutant fish. sop contains a leucine to proline mutation at position 28, near the N terminus of the zebrafish AChR delta subunit. Transient expression of mutant delta subunit in sop fish was unable to restore surface expression of muscle AChRs. In contrast, expression of wild-type delta subunit restored the ability of muscle to assemble surface receptors along with the ability of fish to swim. Most importantly, the ability of rapsyn clusters to localize effectively to subsynaptic sites also was rescued in large part. Our results point to direct involvement of the AChR molecule in restricting receptor-rapsyn clusters to the synapse.
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