Adenosine A1 receptors modulate high voltage‐activated Ca2+ currents and motor pattern generation in the Xenopus embryo
Open Access
- 1 June 2000
- journal article
- Published by Wiley in The Journal of Physiology
- Vol. 525 (3), 655-667
- https://doi.org/10.1111/j.1469-7793.2000.00655.x
Abstract
Adenosine causes voltage- and non-voltage-dependent inhibition of high voltage-activated (HVA) Ca2+ currents in Xenopus laevis embryo spinal neurons. As this inhibition can be blocked by 8-cyclopentyl-1, 3-dipropylxanthine (DPCPX) and mimicked by N6-cyclopentyladenosine (CPA) it appears to be mediated by A1 receptors. Agents active at A2 receptors either were without effect or could be blocked by DPCPX. AMP had no agonist action on these receptors. By using omega-conotoxin GVIA we found that adenosine inhibited an N-type Ca2+ current as well as a further unidentified HVA current that was insensitive to dihydropyridines, omega-agatoxin TK and omega-conotoxin MVIIC. Both types of current were subject to voltage- and non-voltage-dependent inhibition. We used CPA and DPCPX to test whether A1 receptors regulated spinal motor pattern generation in spinalized Xenopus embryos. DPCPX caused a near doubling of, while CPA greatly shortened, the length of swimming episodes. In addition, DPCPX slowed, while CPA greatly speeded up, the rate of run-down of motor activity. Our results demonstrate a novel action of A1 receptors in modulating spinal motor activity. Furthermore they confirm that adenosine is produced continually throughout swimming episodes and acts to cause the eventual termination of activity.Keywords
This publication has 39 references indexed in Scilit:
- Inhibition of Voltage‐Sensitive Calcium Channels by the A2A Adenosine Receptor in PC12 cellsJournal of Neurochemistry, 1998
- Delayed production of adenosine underlies temporal modulation of swimming in frog embryoThe Journal of Physiology, 1998
- Purinoceptors in neuromuscular transmissionPharmacology & Therapeutics, 1997
- Adenosine A2A receptors facilitate 45Ca2+ uptake through class A calcium channels in rat hippocampal CA3 but not CA1 synaptosomesNeuroscience Letters, 1997
- Adenosine A3 Receptors Potentiate Hippocampal Calcium Current by a PKA-dependent/PKC-independent PathwayNeuropharmacology, 1997
- Dual Signalling by the Adenosine A2a Receptor Involves Activation of Both N‐ and P‐Type Calcium Channels by Different G Proteins and Protein Kinases in the Same Striatal Nerve TerminalsJournal of Neurochemistry, 1996
- Purinergic Inhibition of Neurotransmitter Release in the Central Nervous SystemBasic & Clinical Pharmacology & Toxicology, 1995
- Preferential inhibition of oω-conotoxin-sensitive presynaptic Ca2+ channels by adenosine autoreceptorsNature, 1993
- Differential activation of adenosine receptors decreases N-type but potentiates P-type Ca2+ current in hippocampal CA3 neuronsNeuron, 1993
- The development of swimming rhythmicity in post-embryonic Xenopus laevisProceedings Of The Royal Society B-Biological Sciences, 1991