Home LiteratureArticle Details
PMID: 10366614 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Presynaptic mu and delta opioid receptor modulation of GABAA IPSCs in the rat globus pallidus in vitro.

Stanford IM, Cooper AJ

Abstract

The role of enkephalin and the opioid receptors in modulating GABA release within the rat globus pallidus (GP) was investigated using whole-cell patch recordings made from visually identified neurons. Two major GP neuronal subtypes were classified on the basis of intrinsic membrane properties, action potential characteristics, the presence of the anomalous inward rectifier (Ih), and anode break depolarizations. The mu opioid receptor agonist [D-Ala2-N-Me-Phe4-Glycol5]-enkephalin (DAMGO) (1 microM) reduced GABAA receptor-mediated IPSCs evoked by stimulation within the striatum. DAMGO also increased paired-pulse facilitation, indicative of presynaptic mu opioid receptor modulation of striatopallidal input. In contrast, the delta opioid agonist D-Pen-[D-Pen2, 5]-enkephalin (DPDPE) (1 microM) was without effect. IPSCs evoked by stimulation within the GP were depressed by application of [methionine 5']-enkephalin (met-enkephalin) (30 microM). Met-enkephalin also reduced the frequency, but not the amplitude, of miniature IPSCs (mIPSCs) and increased paired-pulse facilitation of evoked IPSCs, indicative of a presynaptic action. Both DAMGO and DPDPE reduced evoked IPSCs and the frequency, but not amplitude, of mIPSCs. However, spontaneous action potential-driven IPSCs were reduced in frequency by met-enkephalin and DAMGO, whereas DPDPE was without effect. Overall, these results indicate that presynaptic mu opioid receptors are located on striatopallidal terminals and pallidopallidal terminals of spontaneously firing GP neurons, whereas presynaptic delta opioid receptors are preferentially located on terminals of quiescent GP cells. Enkephalin, acting at both of these receptor subtypes, serves to reduce GABA release in the GP and may therefore act as an adaptive mechanism, maintaining the inhibitory function of the GP in basal ganglia circuitry.

MeSH Terms
2-Amino-5-phosphonovalerate/pharmacology 6-Cyano-7-nitroquinoxaline-2,3-dione/pharmacology Analgesics/pharmacology Analgesics, Opioid/pharmacology Animals Bicuculline/pharmacology Enkephalin, Ala(2)-MePhe(4)-Gly(5)- Enkephalin, D-Penicillamine (2,5)- Enkephalin, Methionine/pharmacology Enkephalins/pharmacology Excitatory Amino Acid Antagonists/pharmacology GABA Antagonists/pharmacology Globus Pallidus/chemistry,cytology,metabolism In Vitro Techniques Male Membrane Potentials/drug effects,physiology Neostriatum/cytology Neurons/chemistry,metabolism Patch-Clamp Techniques Presynaptic Terminals/chemistry,drug effects,physiology Rats Rats, Wistar Receptors, GABA-A/physiology Receptors, Opioid, delta/metabolism Receptors, Opioid, mu/metabolism Somatostatin/analogs & derivatives,pharmacology Synaptic Transmission/drug effects,physiology Tetrodotoxin/pharmacology
Chemicals
Analgesics Analgesics, Opioid Enkephalins Excitatory Amino Acid Antagonists GABA Antagonists Receptors, GABA-A Receptors, Opioid, delta Receptors, Opioid, mu Enkephalin, Ala(2)-MePhe(4)-Gly(5)- phenylalanyl-cyclo(cysteinyltyrosyl-tryptophyl-ornithyl-threonyl-penicillamine)threoninamide Tetrodotoxin Somatostatin Enkephalin, Methionine 6-Cyano-7-nitroquinoxaline-2,3-dione 2-Amino-5-phosphonovalerate Enkephalin, D-Penicillamine (2,5)- Bicuculline
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Stanford I M
The Department of Pharmacology, The Division of Neuroscience, The Medical School, The University of Birmingham, Edgbaston, Birmingham B15 2TT, United Kingdom.
Cooper A J
References (44)
44 references, click to expand
  1. D1 and D2 dopamine receptor-regulated gene expression of striatonigral and striatopallidal neurons.
    Science. 1990 Dec 7;250(4986):1429-32 PMID: 2147780
  2. Responses of pallidal neurons to striatal stimulation in monkeys with MPTP-induced parkinsonism.
    Brain Res. 1989 Sep 25;498(1):17-33 PMID: 2790469
  3. Dopamine receptors in the ventral pallidum regulate circling induced by opioids injected into the ventral pallidum.
    Neuropharmacology. 1992 Nov;31(11):1127-36 PMID: 1475022
  4. Effects of opioid agonist drugs on the in vitro release of 3H-GABA, 3H-dopamine and 3H-5HT from slices of rat globus pallidus.
    Biochem Pharmacol. 1987 May 15;36(10):1738-41 PMID: 3297065
  5. Patch-clamp recordings from the soma and dendrites of neurons in brain slices using infrared video microscopy.
    Pflugers Arch. 1993 Jun;423(5-6):511-8 PMID: 8351200
  6. Systemic morphine-induced Fos protein in the rat striatum and nucleus accumbens is regulated by mu opioid receptors in the substantia nigra and ventral tegmental area.
    J Neurosci. 1997 Nov 1;17(21):8596-612 PMID: 9334431
  7. The striatum and the globus pallidus send convergent synaptic inputs onto single cells in the entopeduncular nucleus of the rat: a double anterograde labelling study combined with postembedding immunocytochemistry for GABA.
    J Comp Neurol. 1992 Jul 15;321(3):456-76 PMID: 1380517
  8. Primate models of movement disorders of basal ganglia origin.
    Trends Neurosci. 1990 Jul;13(7):281-5 PMID: 1695404
  9. Topographical and Synaptic Organization of the GABA-Containing Pallidosubthalamic Projection in the Rat.
    Eur J Neurosci. 1990;2(6):500-511 PMID: 12106020
  10. Expression of mu opioid receptor mRNA in rat brain: an in situ hybridization study at the single cell level.
    J Comp Neurol. 1994 Jul 1;345(1):46-68 PMID: 8089277
  11. Projection from the external pallidum to the reticular thalamic nucleus in the squirrel monkey.
    Brain Res. 1991 May 31;550(1):142-6 PMID: 1716174
  12. Enkephalinergic and GABAergic modulation of motor activity in the ventral pallidum.
    J Pharmacol Exp Ther. 1990 Mar;252(3):1370-7 PMID: 2319472
  13. Evidence for the presynaptic localization of opiate binding sites on striatal efferent fibers.
    Brain Res. 1984 Dec 3;323(1):21-9 PMID: 6098334
  14. Activity of pallidal neurons during movement.
    J Neurophysiol. 1971 May;34(3):414-27 PMID: 4997823
  15. Basal ganglia and movement disorders: an update.
    Trends Neurosci. 1996 Oct;19(10):417-22 PMID: 8888518
  16. Effects of dopamine denervation on striatal peptide expression in parkinsonian monkeys.
    Can J Neurol Sci. 1991 Aug;18(3 Suppl):373-5 PMID: 1933683
  17. The morphology of globus pallidus projection neurons in the rat: an intracellular staining study.
    Brain Res. 1994 Feb 14;636(2):308-19 PMID: 8012814
  18. Endogenous monoamines inhibit glutamate transmission in the spinal trigeminal nucleus of the guinea-pig.
    J Physiol. 1996 Feb 15;491 ( Pt 1):177-85 PMID: 9011609
  19. Presynaptic versus postsynaptic localization of mu and delta opioid receptors in dorsal and ventral striatopallidal pathways.
    J Neurosci. 1997 Oct 1;17(19):7471-9 PMID: 9295393
  20. Cellular localisation of enkephalin gene expression in MPTP-treated cynomolgus monkeys.
    Brain Res Mol Brain Res. 1989 Jul;6(1):85-92 PMID: 2788792
  21. Mu, delta, and kappa opioid receptor mRNA expression in the rat CNS: an in situ hybridization study.
    J Comp Neurol. 1994 Dec 15;350(3):412-38 PMID: 7884049
  22. Functional architecture of basal ganglia circuits: neural substrates of parallel processing.
    Trends Neurosci. 1990 Jul;13(7):266-71 PMID: 1695401
  23. Abnormal spontaneous activity of globus pallidus neurons in monkeys with MPTP-induced parkinsonism.
    Brain Res. 1991 Apr 26;547(1):142-51 PMID: 1677607
  24. On the role of enkephalin cotransmission in the GABAergic striatal efferents to the globus pallidus.
    Exp Neurol. 1994 Jan;125(1):65-71 PMID: 8307125
  25. Electrophysiology of globus pallidus neurons in vitro.
    J Neurophysiol. 1994 Sep;72(3):1127-39 PMID: 7807199
  26. Morphology of globus pallidus neurons: its correlation with electrophysiology in guinea pig brain slices.
    J Comp Neurol. 1997 Jan 6;377(1):85-94 PMID: 8986874
  27. Selective innervation of neostriatal interneurons by a subclass of neuron in the globus pallidus of the rat.
    J Neurosci. 1998 Nov 15;18(22):9438-52 PMID: 9801382
  28. The striatopallidal projection displays a high degree of anatomical specificity in the primate.
    Brain Res. 1992 Oct 2;592(1-2):213-27 PMID: 1450912
  29. Functional anatomy of the basal ganglia. II. The place of subthalamic nucleus and external pallidum in basal ganglia circuitry.
    Brain Res Brain Res Rev. 1995 Jan;20(1):128-54 PMID: 7711765
  30. Afferent projections to the reticular thalamic nucleus from the globus pallidus and the substantia nigra in the rat.
    Brain Res Bull. 1993;32(4):351-8 PMID: 7693305
  31. Opioid-receptor mRNA expression in the rat CNS: anatomical and functional implications.
    Trends Neurosci. 1995 Jan;18(1):22-9 PMID: 7535487
  32. Dual topographic representation of neostriatum in the globus pallidus of rats.
    Brain Res. 1982 Jul 15;243(2):354-9 PMID: 6179575
  33. Evidence for a projection from the globus pallidus to the entopeduncular nucleus in the rat.
    Neurosci Lett. 1991 Jul 8;128(1):121-5 PMID: 1656332
  34. Neurons of the substantia nigra reticulata receive a dense GABA-containing input from the globus pallidus in the rat.
    Brain Res. 1989 Jul 24;493(1):160-7 PMID: 2476197
  35. Immunocytochemical localization of delta opioid receptors in mouse brain.
    J Chem Neuroanat. 1995 Mar;8(3):175-89 PMID: 7598816
  36. Compartmental distribution of parvalbumin and calbindin D-28k in rat globus pallidus.
    Neuroreport. 1994 Nov 21;5(17):2269-72 PMID: 7881043
  37. Paired-pulse depression of monosynaptic GABA-mediated inhibitory postsynaptic responses in rat hippocampus.
    J Physiol. 1990 May;424:513-31 PMID: 2167975
  38. Basal ganglia pathophysiology. A critical review.
    Adv Neurol. 1997;74:3-18 PMID: 9348398
  39. Immunohistochemical localization of mu-opioid receptors in the central nervous system of the rat.
    J Comp Neurol. 1996 Apr 08;367(3):375-402 PMID: 8698899
  40. Expression of mu, kappa, and delta opioid receptor messenger RNA in the human CNS: a 33P in situ hybridization study.
    Neuroscience. 1999;88(4):1093-135 PMID: 10336124
  41. Extrinsic connections of the basal ganglia.
    Trends Neurosci. 1990 Jul;13(7):254-8 PMID: 1695399
  42. Projections to the rostral reticular thalamic nucleus in the rat.
    Exp Brain Res. 1990;80(1):157-71 PMID: 2358025
  43. Striatal changes in preproenkephalin mRNA levels in parkinsonian monkeys.
    Neuroreport. 1994 Oct 27;5(16):2137-40 PMID: 7865763
  44. Distribution of striatonigral and striatopallidal peptidergic neurons in both patch and matrix compartments: an in situ hybridization histochemistry and fluorescent retrograde tracing study.
    Brain Res. 1988 Sep 13;460(1):161-7 PMID: 2464402
Article Info
Journal
The Journal of neuroscience : the official journal of the Society for Neuroscience
Abbr.
J Neurosci
ISSN
1529-2401
Published
1999-06-15
Pages
4796-803
Language
English
Region
United States
NLM ID
8102140
PMCID
PMC6782644
Subset
IM
Grants
Wellcome Trust · United Kingdom
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