P2Y1 receptors mediate inhibitory purinergic neuromuscular transmission in the human colon
Open Access
- 1 October 2006
- journal article
- Published by American Physiological Society in American Journal of Physiology-Gastrointestinal and Liver Physiology
- Vol. 291 (4) , G584-G594
- https://doi.org/10.1152/ajpgi.00474.2005
Abstract
Indirect evidence suggests that ATP is a neurotransmitter involved in inhibitory pathways in the neuromuscular junction in the gastrointestinal tract. The aim of this study was to characterize purinergic inhibitory neuromuscular transmission in the human colon. Tissue was obtained from colon resections for neoplasm. Muscle bath, microelectrode experiments, and immunohistochemical techniques were performed. 2′-deoxy- N6-methyl adenosine 3′,5′-diphosphate tetraammonium salt (MRS 2179) was used as a selective inhibitor of P2Y1 receptors. We found that 1) ATP (1 mM) and adenosine 5′-β-2-thiodiphosphate (ADPβS) (10 μM), a preferential P2Y agonist, inhibited spontaneous motility and caused smooth muscle hyperpolarization (about −12 mV); 2) MRS 2179 (10 μM) and apamin (1 μM) significantly reduced these effects; 3) both the fast component of the inhibitory junction potential (IJP) and the nonnitrergic relaxation induced by electrical field stimulation were dose dependently inhibited (IC50 ∼1 μM) by MRS 2179; 4) ADPβS reduced the IJP probably by a desensitization mechanism; 5) apamin (1 μM) reduced the fast component of the IJP (by 30–40%) and the inhibitory effect induced by electrical field stimulation; and 6) P2Y1 receptors were localized in smooth muscle cells as well as in enteric neurons. These results show that ATP or a related purine is released by enteric inhibitory motoneurons, causing a fast hyperpolarization and smooth muscle relaxation. The high sensitivity of MRS 2179 has revealed, for the first time in the human gastrointestinal tract, that a P2Y1 receptor present in smooth muscle probably mediates this mechanism through a pathway that partially involves apamin-sensitive calcium-activated potassium channels. P2Y1 receptors can be an important pharmacological target to modulate smooth muscle excitability.Keywords
This publication has 36 references indexed in Scilit:
- Pharmacologic Characterization of Intrinsic Mechanisms Controlling Tone and Relaxation of Porcine Lower Esophageal SphincterThe Journal of Pharmacology and Experimental Therapeutics, 2006
- Functional characterisation of tachykinin receptors in the circular muscle layer of the mouse ileumRegulatory Peptides, 2005
- Guide to Receptors and Channels, 1st Edition (2005 revision)British Journal of Pharmacology, 2005
- Functional evidence that ATP or a related purine is an inhibitory NANC neurotransmitter in the mouse jejunum: study on the identity of P2X and P2Y purinoceptors involvedBritish Journal of Pharmacology, 2003
- Slow excitatory synaptic transmission mediated by P2Y1 receptors in the guinea‐pig enteric nervous systemThe Journal of Physiology, 2003
- Descending inhibitory reflexes involve P2X receptor‐mediated transmission from interneurons to motor neurons in guinea‐pig ileumThe Journal of Physiology, 2000
- Control of motility patterns in the human colonic circular muscle layer by pacemaker activityThe Journal of Physiology, 1998
- Deoxyadenosine Bisphosphate Derivatives as Potent Antagonists at P2Y1 ReceptorsJournal of Medicinal Chemistry, 1998
- Heterogeneity in electrical activity of the canine ileal circular muscle: interaction of two pacemakersNeurogastroenterology & Motility, 1996
- Nitric oxide as an inhibitory non-adrenergic non-cholinergic neurotransmitterNature, 1990