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A Role of Tyrosine Phosphatase in Acetylcholine Receptor Cluster Dispersal and Formation

Innervation of the skeletal muscle involves local signaling, leading to acetylcholine receptor (AChR) clustering, and global signaling, manifested by the dispersal of preexisting AChR clusters (hot spots). Receptor tyrosine kinase (RTK) activation has been shown to mediate AChR clustering. In this s...

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Detalles Bibliográficos
Autores principales: Dai, Zhengshan, Benjamin Peng, H.
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 1998
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2133005/
https://www.ncbi.nlm.nih.gov/pubmed/9647653
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author Dai, Zhengshan
Benjamin Peng, H.
author_facet Dai, Zhengshan
Benjamin Peng, H.
author_sort Dai, Zhengshan
collection PubMed
description Innervation of the skeletal muscle involves local signaling, leading to acetylcholine receptor (AChR) clustering, and global signaling, manifested by the dispersal of preexisting AChR clusters (hot spots). Receptor tyrosine kinase (RTK) activation has been shown to mediate AChR clustering. In this study, the role of tyrosine phosphatase (PTPase) in the dispersal of hot spots was examined. Hot spot dispersal in cultured Xenopus muscle cells was initiated immediately upon the presentation of growth factor–coated beads that induce both AChR cluster formation and dispersal. Whereas the density of AChRs decreased with time, the fine structure of the hot spot remained relatively constant. Although AChR, rapsyn, and phosphotyrosine disappeared, a large part of the original hot spot–associated cytoskeleton remained. This suggests that the dispersal involves the removal of a key linkage between the receptor and its cytoskeletal infrastructure. The rate of hot spot dispersal is inversely related to its distance from the site of synaptic stimulation, implicating the diffusible nature of the signal. PTPase inhibitors, such as pervanadate or phenylarsine oxide, inhibited hot spot dispersal. In addition, they also affected the formation of new clusters in such a way that AChR microclusters extended beyond the boundary set by the clustering stimuli. Furthermore, by introducing a constitutively active PTPase into cultured muscle cells, hot spots were dispersed in a stimulus- independent fashion. This effect of exogenous PTPase was also blocked by pervanadate. These results implicate a role of PTPase in AChR cluster dispersal and formation. In addition to RTK activation, synaptic stimulation may also activate PTPase which acts globally to destabilize preexisting AChR hot spots and locally to facilitate AChR clustering in a spatially discrete manner by countering the action of RTKs.
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spelling pubmed-21330052008-05-01 A Role of Tyrosine Phosphatase in Acetylcholine Receptor Cluster Dispersal and Formation Dai, Zhengshan Benjamin Peng, H. J Cell Biol Articles Innervation of the skeletal muscle involves local signaling, leading to acetylcholine receptor (AChR) clustering, and global signaling, manifested by the dispersal of preexisting AChR clusters (hot spots). Receptor tyrosine kinase (RTK) activation has been shown to mediate AChR clustering. In this study, the role of tyrosine phosphatase (PTPase) in the dispersal of hot spots was examined. Hot spot dispersal in cultured Xenopus muscle cells was initiated immediately upon the presentation of growth factor–coated beads that induce both AChR cluster formation and dispersal. Whereas the density of AChRs decreased with time, the fine structure of the hot spot remained relatively constant. Although AChR, rapsyn, and phosphotyrosine disappeared, a large part of the original hot spot–associated cytoskeleton remained. This suggests that the dispersal involves the removal of a key linkage between the receptor and its cytoskeletal infrastructure. The rate of hot spot dispersal is inversely related to its distance from the site of synaptic stimulation, implicating the diffusible nature of the signal. PTPase inhibitors, such as pervanadate or phenylarsine oxide, inhibited hot spot dispersal. In addition, they also affected the formation of new clusters in such a way that AChR microclusters extended beyond the boundary set by the clustering stimuli. Furthermore, by introducing a constitutively active PTPase into cultured muscle cells, hot spots were dispersed in a stimulus- independent fashion. This effect of exogenous PTPase was also blocked by pervanadate. These results implicate a role of PTPase in AChR cluster dispersal and formation. In addition to RTK activation, synaptic stimulation may also activate PTPase which acts globally to destabilize preexisting AChR hot spots and locally to facilitate AChR clustering in a spatially discrete manner by countering the action of RTKs. The Rockefeller University Press 1998-06-29 /pmc/articles/PMC2133005/ /pubmed/9647653 Text en This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Articles
Dai, Zhengshan
Benjamin Peng, H.
A Role of Tyrosine Phosphatase in Acetylcholine Receptor Cluster Dispersal and Formation
title A Role of Tyrosine Phosphatase in Acetylcholine Receptor Cluster Dispersal and Formation
title_full A Role of Tyrosine Phosphatase in Acetylcholine Receptor Cluster Dispersal and Formation
title_fullStr A Role of Tyrosine Phosphatase in Acetylcholine Receptor Cluster Dispersal and Formation
title_full_unstemmed A Role of Tyrosine Phosphatase in Acetylcholine Receptor Cluster Dispersal and Formation
title_short A Role of Tyrosine Phosphatase in Acetylcholine Receptor Cluster Dispersal and Formation
title_sort role of tyrosine phosphatase in acetylcholine receptor cluster dispersal and formation
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2133005/
https://www.ncbi.nlm.nih.gov/pubmed/9647653
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