The Signaling Pathways Mediated by P2Y Nucleotide Receptors in the Formation and Maintenance of the Skeletal Neuromuscular Junction
- 1 January 2002
- journal article
- research article
- Published by S. Karger AG in Neurosignals
- Vol. 11 (1) , 58-64
- https://doi.org/10.1159/000057322
Abstract
The motor neuron, the Schwann cell and the muscle cell are highly specialized at the vertebrate skeletal neuromuscular junction (NMJ). The muscle cell surface contains a high local density of acetylcholine (ACh) receptors (AChRs), acetylcholinesterase (ACNE) and their interacting macromolecules at the NMJ, forming the postsynaptic specializations. During the early stages of development, the incoming nerve terminal induces the formation of these postsynaptic specializations; the nerve secretes agrin and neuregulin (NRG), which are known to aggregate existing AChRs and to increase the expression of AChR at the synaptic region, respectively. In addition, adenosine 5'-triphosphate (ATP) is stored at the motor nerve terminals and is coreleased with ACh during muscle contraction. Recent evidence suggests that ATP can play a role in forming and maintaining the postsynaptic specializations by activating its corresponding receptors. In particular, one of the nucleotide receptor subtypes, the P2Y(1) receptor, is specifically localized at the NMJs. The gene expression of AChR and ACNE is upregulated after the activation of P2Y(1) receptors. Thus, the synaptic ATP together with agrin and NRG can act as a synapse-organizing factor to induce the expression of postsynaptic functional effectors. Copyright (C) 2002 S. KargerAG, Basel.Keywords
This publication has 3 references indexed in Scilit:
- Expression of the P2Y1Nucleotide Receptor in Chick Muscle: Its Functional Role in the Regulation of Acetylcholinesterase and Acetylcholine ReceptorJournal of Neuroscience, 2001
- DEVELOPMENT OF THE VERTEBRATE NEUROMUSCULAR JUNCTIONAnnual Review of Neuroscience, 1999
- Stabilization of Acetylcholine Receptors by Exogenous ATP and Its Reversal by cAMP and CalciumThe Journal of cell biology, 1997