A Functional Role for Specific Spliced Variants of the α7β1 Integrin in Acetylcholine Receptor Clustering
Open Access
- 16 November 1998
- journal article
- Published by Rockefeller University Press in The Journal of cell biology
- Vol. 143 (4) , 1067-1075
- https://doi.org/10.1083/jcb.143.4.1067
Abstract
The clustering of acetylcholine receptors (AChR) on skeletal muscle fibers is an early event in the formation of neuromuscular junctions. Recent studies show that laminin as well as agrin can induce AChR clustering. Since the α7β1 integrin is a major laminin receptor in skeletal muscle, we determined if this integrin participates in laminin and/or agrin-induced AChR clustering. The alternative cytoplasmic domain variants, α7A and α7B, and the extracellular spliced forms, α7X1 and α7X2, were studied for their ability to engage in AChR clustering. Immunofluorescence microscopy of C2C12 myofibers shows that the α7β1 integrin colocalizes with laminin-induced AChR clusters and to a much lesser extent with agrin-induced AChR clusters. However, together laminin and agrin promote a synergistic response and all AChR colocalize with the integrin. Laminin also induces the physical association of the integrin and AChR. High concentrations of anti-α7 antibodies inhibit colocalization of the integrin with AChR clusters as well as the enhanced response promoted by both laminin and agrin. Engaging the integrin with low concentrations of anti-α7 antibody initiates cluster formation in the absence of agrin or laminin. Whereas both the α7A and α7B cytoplasmic domain variants cluster with AChR, only those isoforms containing the α7X2 extracellular domain were active. These results demonstrate that the α7β1 integrin has a physiologic role in laminin-induced AChR clustering, that alternative splicing is integral to this function of the α7 chain, and that laminin, agrin, and the α7β1 integrin interact in a common or convergent pathway in the formation of neuromuscular junctions.Keywords
This publication has 39 references indexed in Scilit:
- Electron microscopic structure of agrin and mapping of its binding site in laminin-1The EMBO Journal, 1998
- Defective Neuromuscular Synaptogenesis in Agrin-Deficient Mutant MiceCell, 1996
- The Receptor Tyrosine Kinase MuSK Is Required for Neuromuscular Junction Formation In VivoCell, 1996
- Specific Induction of Cell Motility on Laminin by α7 IntegrinJournal of Biological Chemistry, 1996
- Novel Isoform of β1 Integrin Expressed in Skeletal and Cardiac MuscleBiochemical and Biophysical Research Communications, 1995
- A novel β1 integrin isoform produced by alternative splicing: unique expression in cardiac and skeletal muscleFEBS Letters, 1995
- Synaptic structure and development: The neuromuscular junctionCell, 1993
- Membrane-cytoskeleton associations during myogenesis deviate from traditional definitionsExperimental Cell Research, 1989
- A laminin substrate promotes myogenesis in rat skeletal muscle cultures: Analysis of replication and development using antidesmin and anti-BrdUrd monoclonal antibodiesDevelopmental Biology, 1987
- Extracellular matrix organization in developing muscle: correlation with acetylcholine receptor aggregates.The Journal of cell biology, 1984