The Actin-Driven Movement and Formation of Acetylcholine Receptor Clusters
Open Access
- 18 September 2000
- journal article
- Published by Rockefeller University Press in The Journal of cell biology
- Vol. 150 (6) , 1321-1334
- https://doi.org/10.1083/jcb.150.6.1321
Abstract
A new method was devised to visualize actin polymerization induced by postsynaptic differentiation signals in cultured muscle cells. This entails masking myofibrillar filamentous (F)-actin with jasplakinolide, a cell-permeant F-actin–binding toxin, before synaptogenic stimulation, and then probing new actin assembly with fluorescent phalloidin. With this procedure, actin polymerization associated with newly induced acetylcholine receptor (AChR) clustering by heparin-binding growth-associated molecule–coated beads and by agrin was observed. The beads induced local F-actin assembly that colocalized with AChR clusters at bead–muscle contacts, whereas both the actin cytoskeleton and AChR clusters induced by bath agrin application were diffuse. By expressing a green fluorescent protein–coupled version of cortactin, a protein that binds to active F-actin, the dynamic nature of the actin cytoskeleton associated with new AChR clusters was revealed. In fact, the motive force generated by actin polymerization propelled the entire bead-induced AChR cluster with its attached bead to move in the plane of the membrane. In addition, actin polymerization is also necessary for the formation of both bead and agrin-induced AChR clusters as well as phosphotyrosine accumulation, as shown by their blockage by latrunculin A, a toxin that sequesters globular (G)-actin and prevents F-actin assembly. These results show that actin polymerization induced by synaptogenic signals is necessary for the movement and formation of AChR clusters and implicate a role of F-actin as a postsynaptic scaffold for the assembly of structural and signaling molecules in neuromuscular junction formation.Keywords
This publication has 95 references indexed in Scilit:
- DEVELOPMENT OF THE VERTEBRATE NEUROMUSCULAR JUNCTIONAnnual Review of Neuroscience, 1999
- DEFINING ACTIN FILAMENT LENGTH IN STRIATED MUSCLE: Rulers and Caps or Dynamic Stability?Annual Review of Cell and Developmental Biology, 1998
- Recruitment of a Nicotinic Acetylcholine Receptor Mutant Lacking Cytoplasmic Tyrosine Residues in Its β Subunit into Agrin-Induced AggregatesMolecular and Cellular Neuroscience, 1998
- Direct demonstration of MuSK involvement in acetylcholine receptor clustering through identification of agonist ScFvNature Biotechnology, 1997
- Defective Neuromuscular Synaptogenesis in Agrin-Deficient Mutant MiceCell, 1996
- Interaction of the 43 kd postsynaptic protein with all subunits of the muscle nicotinic acetylcholine receptorNeuron, 1993
- Cortactin, an 80/85-kilodalton pp60src substrate, is a filamentous actin-binding protein enriched in the cell cortex.The Journal of cell biology, 1993
- Association of the postsynaptic 43K protein with newly formed acetylcholine receptor clusters in cultured muscle cells.The Journal of cell biology, 1985
- Early cytoplasmic specialization at the presumptive acetylcholine receptor cluster: a meshwork of thin filaments.The Journal of cell biology, 1984
- Role of the cytoskeleton in the formation, stabilization, and removal of acetylcholine receptor clusters in cultured muscle cells.The Journal of cell biology, 1984