Effect of Presynaptic P2Receptor Stimulation on Transmitter Release
- 1 May 1991
- journal article
- Published by Wiley in Journal of Neurochemistry
- Vol. 56 (5) , 1466-1470
- https://doi.org/10.1111/j.1471-4159.1991.tb02039.x
Abstract
Because ATP is degraded to adenosine, its effect could be mediated by both P] and P2 receptors. Hence, the actions of an ATP analogue, resistant to enzymatic breakdown (α,β‐methylene ATP), were studied on the resting and electrically evoked release of radioactivity from longitudinal muscle strips of guinea pig ileum, preloaded either with [3H]choline or with [3H]noradrenaline. Their effects were compared with the actions of adenosine and ATP. Although adenosine and ATP markedly decreased the [3H]acetylcholine release evoked by field stimulation, α,β‐methylene‐ATP, a potent and selective agonist of P2x receptors, enhanced’ this release. However, 2‐methyl‐2‐thio‐ATP, an agonist of the P2y receptors, neither enhanced nor inhibited the [3H]‐acetylcholine release. 8‐Phenyltheophylline, an antagonist of PI receptors, increased the stimulation‐evoked release of acetylcholine, indicating that the release of acetylcholine is ton‐ically controlled by endogenous adenosine via PI receptors. When α,β‐methylene‐ATP and 8‐phenyltheophylline were added together, their potentiating effect on the acetylcholine release proved to be additive. Because α,β‐methylene‐ATP failed to antagonize the presynaptic effect of adenosine on PI purinoceptors, it seems very likely that its effect to enhance transmitter release is mediated via separate receptors, i.e., via P2x receptors, located on the axon terminals. Similarly, the stimulation‐evoked release of [3H]noradrenaline was enhanced slightly by α,β‐methylene‐ATP. Our results suggest that both cholinergic and noradrenergic axon terminals are equipped with P2 receptors through which the stimulation‐evoked release of transmitter can be modulated by ATP in a positive manner. Because α,β‐methylene‐ATP had an effect on it and 2‐methyl‐2‐thio‐ATP was without action, it is suggested that presynaptic P2x purinoceptors are involved. Therefore, it is concluded that if ATP is coreleased with a transmitter or released from another source, it might exert per se a positive influence on transmitter release evoked by axonal firing. Subsequently, adenosine, its breakdown product, might reduce transmitter release via presynaptic PI receptors.Keywords
This publication has 35 references indexed in Scilit:
- P2‐purinoceptors of two subtypes in the rabbit mesenteric artery: reactive blue 2 selectively inhibits responses mediated via the P2y‐ but not the P2x‐purinoceptorBritish Journal of Pharmacology, 1987
- Actions of α, β‐methylene ATP and 6‐hydroxydopamine on sympathetic neurotransmission in the vas deferens of the guinea‐pig, rat and mouse: support for co‐transmissionBritish Journal of Pharmacology, 1986
- Further comparison of contractions of the smooth muscle of the guinea-pig isolated vas deferens induced by ATP and related analogsEuropean Journal of Pharmacology, 1986
- Arylazido aminopropionyl ATP (ANAPP3): Interaction with adenosine receptors in longitudinal smooth muscle of the guinea-pig ileumEuropean Journal of Pharmacology, 1986
- Cytochemical localization of 5?-nucleotidase in the enteric ganglia and in smooth muscle cells of the guinea-pigJournal of Neurocytology, 1985
- Comparison of contractions of the smooth muscle of the guinea-pig vas deferens induced by ATP and related nucleotidesEuropean Journal of Pharmacology, 1982
- Review lecture. Neurotransmitters and trophic factors in the autonomic nervous system.The Journal of Physiology, 1981
- Direct evidence for ATP release from non-adrenergic, non-cholinergic (“purinergic”) nerves in the guinea-pig taenia coli and bladderEuropean Journal of Pharmacology, 1978
- Three new adenosine triphosphate analogs. Synthesis and effects on isolated gutJournal of Medicinal Chemistry, 1973
- Outflux of various phosphates during membrane depolarization of excitable tissuesAmerican Journal of Physiology-Legacy Content, 1962