Home LiteratureArticle Details
PMID: 2984670 Published · ppublish English Comparative Study Journal Article Research Support, U.S. Gov't, P.H.S.

Mu and kappa opioids inhibit transmitter release by different mechanisms.

Cherubini E, North RA

Abstract

The actions of various opioids were examined on calcium action potentials in the cell somata of guinea pig myenteric neurones and on the release of acetylcholine at synapses onto these cells. The opioids morphine, normorphine, and [D-Ala2, MePhe4, Met5(O)]enkephalin-ol caused membrane hyperpolarizations resulting from an increase in potassium conductance; opioids that are more selective agonists for the kappa receptor subtype (dynorphin, tifluadom, U50488H) did not. Conversely, calcium action potentials were depressed or abolished by the kappa opioids but were not affected by morphine and [D-Ala2, MePhe4, Met(O)5]enkephalin-ol. Both groups of opioids caused presynaptic inhibition of acetylcholine release in the myenteric plexus, depressing the amplitude of the fast excitatory postsynaptic potential. The presynaptic inhibition caused by [D-Ala2, MePhe4, Met(O)5]enkephalin-ol, morphine, and normorphine, but not that caused by the kappa opioids, was prevented by pretreatment with the selective mu site-directed irreversible antagonist beta-funaltrexamine. Furthermore, the presynaptic inhibitory action of morphine and [D-Ala2, MePhe4, Met(O)5]enkephalin-ol, but not that of the kappa-receptor agonists, was reversibly blocked by barium. The results suggest that presynaptic inhibition caused by mu receptor activation probably results from an increase in potassium conductance, whereas kappa-receptor agonists may depress the release of acetylcholine by directly reducing calcium entry into the nerve terminals.

MeSH Terms
Acetylcholine/metabolism Animals Calcium/metabolism Endorphins/pharmacology Guinea Pigs In Vitro Techniques Membrane Potentials/drug effects Neurons/drug effects Receptors, Opioid/drug effects Receptors, Opioid, kappa Receptors, Opioid, mu Synapses/drug effects,physiology
Chemicals
Endorphins Receptors, Opioid Receptors, Opioid, kappa Receptors, Opioid, mu Acetylcholine Calcium
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Cherubini E
North R A
References (38)
38 references, click to expand
  1. Intracellular recording from the myenteric plexus of the guinea-pig ileum.
    J Physiol. 1973 Jun;231(3):471-91 PMID: 4783093
  2. The calcium-dependent slow after-hyperpolarization in myenteric plexus neurones with tetrodotoxin-resistant action potentials.
    Br J Pharmacol. 1973 Dec;49(4):709-11 PMID: 4788043
  3. Endogenous opioid peptides: multiple agonists and receptors.
    Nature. 1977 Jun 9;267(5611):495-9 PMID: 195217
  4. Enkephalin inhibits release of substance P from sensory neurons in culture and decreases action potential duration.
    Proc Natl Acad Sci U S A. 1979 Jan;76(1):526-30 PMID: 218204
  5. Nucleotide sequence of cloned cDNA for bovine corticotropin-beta-lipotropin precursor.
    Nature. 1979 Mar 29;278(5703):423-7 PMID: 221818
  6. A novel opioid receptor site directed alkylating agent with irreversible narcotic antagonistic and reversible agonistic activities.
    J Med Chem. 1980 Mar;23(3):233-4 PMID: 6245210
  7. Opiates and opioid peptides hyperpolarize locus coeruleus neurons in vitro.
    Science. 1980 Jul 18;209(4454):394-5 PMID: 7384811
  8. Opioid binding properties of brain and peripheral tissues: evidence for heterogeneity in opioid ligand binding sites.
    J Pharmacol Exp Ther. 1980 Aug;214(2):395-402 PMID: 6248635
  9. Distribution of peptide- and catecholamine-containing neurons in the gastro-intestinal tract of rat and guinea-pig: immunohistochemical studies with antisera to substance P, vasoactive intestinal polypeptide, enkephalins, somatostatin, gastrin/cholecystokinin, neurotensin and dopamine beta-hydroxylase.
    Neuroscience. 1980;5(4):689-744 PMID: 6156425
  10. Mechanism of calcium current modulation underlying presynaptic facilitation and behavioral sensitization in Aplysia.
    Proc Natl Acad Sci U S A. 1980 Nov;77(11):6912-6 PMID: 6256770
  11. Dynorphin immunocytochemical localization in brain and peripheral nervous system: preliminary studies.
    Proc Natl Acad Sci U S A. 1981 Feb;78(2):1260-3 PMID: 6112743
  12. Dynorphin-immunoreactive neurons in the autonomic nervous system.
    Neuroscience. 1984 Apr;11(4):973-87 PMID: 6146115
  13. Opiate-receptor interactions on single locus coeruleus neurones.
    Mol Pharmacol. 1984 Nov;26(3):489-97 PMID: 6092898
  14. Calcium action potentials in mammalian peripheral neurones.
    Nat New Biol. 1973 May 9;243(123):54-6 PMID: 17315369
  15. Demonstration of a specific dynorphin receptor in guinea pig ileum myenteric plexus.
    Nature. 1981 Jun 18;291(5816):591-3 PMID: 6264311
  16. Calcium and the control of synaptic strength by learning.
    Nature. 1981 Oct 29;293(5835):697-700 PMID: 7290207
  17. Two types of gamma-aminobutyric acid receptor on embryonic sensory neurones.
    Br J Pharmacol. 1981 Nov;74(3):579-85 PMID: 6271320
  18. Specific receptor for the opioid peptide dynorphin: structure--activity relationships.
    Proc Natl Acad Sci U S A. 1981 Oct;78(10):6543-7 PMID: 6118865
  19. Cloning and sequence analysis of cDNA for bovine adrenal preproenkephalin.
    Nature. 1982 Jan 21;295(5846):202-6 PMID: 6276759
  20. Isolation and structure of dynorphin, an opioid peptide, from porcine duodenum.
    Nature. 1982 Jan 28;295(5847):339-40 PMID: 6120465
  21. Dynorphin is a specific endogenous ligand of the kappa opioid receptor.
    Science. 1982 Jan 22;215(4531):413-5 PMID: 6120570
  22. Pharmacological characterization in vivo of the novel opiate, beta-funaltrexamine.
    J Pharmacol Exp Ther. 1982 Mar;220(3):494-8 PMID: 6121045
  23. Physiological correlates of multiple subtypes of enteric opiate receptor; functional analysis of myenteric delta receptors.
    Brain Res. 1982 Apr 22;238(1):254-9 PMID: 6282395
  24. Cloning and sequence analysis of cDNA for porcine beta-neo-endorphin/dynorphin precursor.
    Nature. 1982 Jul 15;298(5871):245-9 PMID: 6123953
  25. Opioid peptides decrease calcium-dependent action potential duration of mouse dorsal root ganglion neurons in cell culture.
    Brain Res. 1982 May 6;239(1):315-21 PMID: 7093688
  26. Opiate activation of potassium conductance in myenteric neurons: inhibition by calcium ion.
    Brain Res. 1982 Jun 17;242(1):145-50 PMID: 7104724
  27. Pharmacological profiles of beta-funaltrexamine (beta-FNA) and beta-chlornaltrexamine (beta-CNA) on the mouse vas deferens preparation.
    Eur J Pharmacol. 1982 Jun 4;80(4):377-84 PMID: 6286325
  28. Enkephalin opens potassium channels on mammalian central neurones.
    Nature. 1982 Sep 2;299(5878):74-7 PMID: 6287281
  29. Dynorphin and dynorphin are ligands for the kappa-subtype of opiate receptor.
    Nature. 1982 Sep 2;299(5878):79-81 PMID: 6125893
  30. Improved assays for the assessment of kappa- and delta-properties of opioid ligands.
    Eur J Pharmacol. 1982 Nov 19;85(2):163-70 PMID: 6295778
  31. Enkephalin reduces calcium action potentials in Rohon-Beard neurons in vivo.
    J Neurosci. 1983 May;3(5):1014-8 PMID: 6842279
  32. Muscarinic synaptic potentials in guinea-pig myenteric plexus neurones.
    J Physiol. 1982 Dec;333:151-6 PMID: 7182464
  33. Substantia gelatinosa neurones hyperpolarized in vitro by enkephalin.
    Nature. 1983 Oct 6-12;305(5934):529-30 PMID: 6621700
  34. Opiate activation of potassium conductance inhibits calcium action potentials in rat locus coeruleus neurones.
    Br J Pharmacol. 1983 Oct;80(2):225-8 PMID: 6652378
  35. Morphine augments calcium-dependent potassium conductance in guinea-pig myenteric neurones.
    Br J Pharmacol. 1984 Apr;81(4):617-22 PMID: 6722392
  36. Site-directed alkylation of multiple opioid receptors. I. Binding selectivity.
    Mol Pharmacol. 1984 May;25(3):337-42 PMID: 6328259
  37. Site-directed alkylation of multiple opioid receptors. II. Pharmacological selectivity.
    Mol Pharmacol. 1984 May;25(3):343-8 PMID: 6328260
  38. Inhibition of calcium spikes and transmitter release by gamma-aminobutyric acid in the guinea-pig myenteric plexus.
    Br J Pharmacol. 1984 May;82(1):101-5 PMID: 6145464
Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
0027-8424
Published
1985-03-00
Pages
1860-3
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC397375
Subset
IM
Grants
NIADDK NIH HHS · AM/NS 32979 · United States
NIDA NIH HHS · DA03160 · United States
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: product@genelibs.com