Home LiteratureArticle Details
PMID: 12657660 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Coexistence of excitatory and inhibitory GABA synapses in the cerebellar interneuron network.

Chavas J, Marty A

Abstract

Functional GABA synapses are usually assumed to be inhibitory. However, we show here that inhibitory and excitatory GABA connections coexist in the cerebellar interneuron network. The reversal potential of GABAergic currents (E(GABA)) measured in interneurons is relatively depolarized and contrasts with the hyperpolarized value found in Purkinje cells (-58 and -85 mV respectively). This finding is not correlated to a specific developmental stage and is maintained in the adult animal. E(GABA) in interneurons is close to the mean membrane potential (-56.5 mV, as measured with a novel "equal firing potential" method), and both parameters vary enough among cells so that the driving force for GABA currents can be either inward or outward. Indeed, using noninvasive cell-attached recordings, we demonstrate inhibitory, excitatory, and sequential inhibitory and excitatory responses to interneuron stimulation [results obtained both in juvenile (postnatal days 12-14) and subadult (postnatal days 20-25) animals]. In hyperpolarized cells, single synaptic GABA currents can trigger spikes or trains of spikes, and subthreshold stimulations enhance the responsiveness to subsequent excitatory stimulation over at least 30 msec. We suggest that the coexistence of excitatory and inhibitory GABA synapses could either buffer the mean firing rate of the interneuron network or introduce different types of correlation between neighboring interneurons, or both.

MeSH Terms
Action Potentials/physiology Age Factors Animals Cerebellum/cytology,physiology Electric Stimulation Excitatory Postsynaptic Potentials/drug effects,physiology Gramicidin In Vitro Techniques Interneurons/physiology Membrane Potentials/physiology Nerve Net/cytology,physiology Neural Inhibition/physiology Patch-Clamp Techniques/methods Potassium/metabolism Purkinje Cells/physiology Rats Receptors, GABA-A/metabolism Sodium/metabolism Synapses/physiology gamma-Aminobutyric Acid/metabolism
Chemicals
Receptors, GABA-A Gramicidin gamma-Aminobutyric Acid Sodium Potassium
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Chavas Joël
Laboratoire de Physiologie Cérébrale, Université Paris 5, 75270 Paris, France.
Marty Alain
References (45)
45 references, click to expand
  1. Somatic recording of GABAergic autoreceptor current in cerebellar stellate and basket cells.
    J Neurosci. 1999 Mar 1;19(5):1675-90 PMID: 10024354
  2. Noninvasive measurements of the membrane potential and GABAergic action in hippocampal interneurons.
    J Neurosci. 1999 Apr 1;19(7):2546-55 PMID: 10087068
  3. Electrotonic coupling interacts with intrinsic properties to generate synchronized activity in cerebellar networks of inhibitory interneurons.
    J Neurosci. 1999 May 1;19(9):3298-306 PMID: 10212289
  4. Regulation of the rebound depolarization and spontaneous firing patterns of deep nuclear neurons in slices of rat cerebellum.
    J Neurophysiol. 1999 Oct;82(4):1697-709 PMID: 10515960
  5. A network of fast-spiking cells in the neocortex connected by electrical synapses.
    Nature. 1999 Nov 4;402(6757):72-5 PMID: 10573418
  6. Two networks of electrically coupled inhibitory neurons in neocortex.
    Nature. 1999 Nov 4;402(6757):75-9 PMID: 10573419
  7. Synaptic GABA(A) activation inhibits AMPA-kainate receptor-mediated bursting in the newborn (P0-P2) rat hippocampus.
    J Neurophysiol. 2000 Jan;83(1):359-66 PMID: 10634879
  8. GABAergic inhibition in nucleus magnocellularis: implications for phase locking in the avian auditory brainstem.
    J Neurosci. 2000 Apr 15;20(8):2954-63 PMID: 10751448
  9. Evidence that different cation chloride cotransporters in retinal neurons allow opposite responses to GABA.
    J Neurosci. 2000 Oct 15;20(20):7657-63 PMID: 11027226
  10. Interneurons unbound.
    Nat Rev Neurosci. 2001 Jan;2(1):11-23 PMID: 11253355
  11. Parallel fibre receptive fields of Purkinje cells and interneurons are climbing fibre-specific.
    Eur J Neurosci. 2001 Apr;13(7):1303-10 PMID: 11298790
  12. Mixed excitatory and inhibitory GABA-mediated transmission in chick cochlear nucleus.
    J Physiol. 2001 Aug 15;535(Pt 1):125-31 PMID: 11507163
  13. GABA-mediated Ca2+ signalling in developing rat cerebellar Purkinje neurones.
    J Physiol. 2001 Oct 15;536(Pt 2):429-37 PMID: 11600678
  14. Cell-type-specific GABA responses and chloride homeostasis in the cortex and amygdala.
    J Neurophysiol. 2001 Dec;86(6):2887-95 PMID: 11731545
  15. Jittery trains induced by synaptic-like currents in cerebellar inhibitory interneurons.
    J Neurophysiol. 2002 Jan;87(1):149-56 PMID: 11784737
  16. Reciprocal bidirectional plasticity of parallel fiber receptive fields in cerebellar Purkinje cells and their afferent interneurons.
    Neuron. 2002 May 30;34(5):797-806 PMID: 12062025
  17. Inhibitory synaptic currents in rat cerebellar Purkinje cells: modulation by postsynaptic depolarization.
    J Physiol. 1992 Oct;456:453-71 PMID: 1293282
  18. Membrane properties and synaptic responses of Golgi cells and stellate cells in the turtle cerebellum in vitro.
    J Physiol. 1992 Nov;457:329-54 PMID: 1338460
  19. Shunting of excitatory input to dentate gyrus granule cells by a depolarizing GABAA receptor-mediated postsynaptic conductance.
    J Neurophysiol. 1992 Jul;68(1):197-212 PMID: 1381418
  20. Mechanism of anion permeation through channels gated by glycine and gamma-aminobutyric acid in mouse cultured spinal neurones.
    J Physiol. 1987 Apr;385:243-86 PMID: 2443667
  21. Giant synaptic potentials in immature rat CA3 hippocampal neurones.
    J Physiol. 1989 Sep;416:303-25 PMID: 2575165
  22. Activity-dependent disinhibition. I. Repetitive stimulation reduces IPSP driving force and conductance in the hippocampus in vitro.
    J Neurophysiol. 1989 Mar;61(3):501-11 PMID: 2709096
  23. Electrophysiology of guinea-pig cerebellar nuclear cells in the in vitro brain stem-cerebellar preparation.
    J Physiol. 1988 Oct;404:241-58 PMID: 2855348
  24. Postsynaptic fall in intracellular pH induced by GABA-activated bicarbonate conductance.
    Nature. 1987 Nov 12-18;330(6144):163-5 PMID: 3670401
  25. Activity patterns of cerebellar cortical neurones and climbing fibre afferents in the awake cat.
    J Physiol. 1979 Apr;289:425-48 PMID: 458677
  26. The inhibitory interneurones within the cerebellar cortex.
    Exp Brain Res. 1966;1(1):1-16 PMID: 5910941
  27. Inhibitory synaptic currents in stellate cells of rat cerebellar slices.
    J Physiol. 1993 Aug;468:177-200 PMID: 7504726
  28. Perforated-patch recording with gramicidin avoids artifactual changes in intracellular chloride concentration.
    J Neurosci Methods. 1995 Mar;57(1):27-35 PMID: 7540702
  29. Ionic mechanisms of neuronal excitation by inhibitory GABAA receptors.
    Science. 1995 Aug 18;269(5226):977-81 PMID: 7638623
  30. GABAA receptor activation and the excitability of nerve terminals in the rat posterior pituitary.
    J Physiol. 1995 Mar 15;483 ( Pt 3):583-95 PMID: 7776245
  31. Synaptic and membrane mechanisms underlying synchronized oscillations in the ferret lateral geniculate nucleus in vitro.
    J Physiol. 1995 Mar 15;483 ( Pt 3):641-63 PMID: 7776249
  32. GABA-activated chloride channels in secretory nerve endings.
    Science. 1993 Jan 22;259(5094):531-4 PMID: 8380942
  33. Context-dependent synaptic action of glycinergic and GABAergic inputs in the dorsal cochlear nucleus.
    J Neurosci. 1996 Apr 1;16(7):2208-19 PMID: 8601801
  34. Excitatory GABA responses in embryonic and neonatal cortical slices demonstrated by gramicidin perforated-patch recordings and calcium imaging.
    J Neurosci. 1996 Oct 15;16(20):6414-23 PMID: 8815920
  35. Development of a tonic form of synaptic inhibition in rat cerebellar granule cells resulting from persistent activation of GABAA receptors.
    J Physiol. 1996 Dec 15;497 ( Pt 3):753-9 PMID: 9003560
  36. A pacemaker current in dye-coupled hilar interneurons contributes to the generation of giant GABAergic potentials in developing hippocampus.
    J Neurosci. 1997 Feb 15;17(4):1435-46 PMID: 9006985
  37. Ca2+ oscillations mediated by the synergistic excitatory actions of GABA(A) and NMDA receptors in the neonatal hippocampus.
    Neuron. 1997 Feb;18(2):243-55 PMID: 9052795
  38. Long-lasting GABA-mediated depolarization evoked by high-frequency stimulation in pyramidal neurons of rat hippocampal slice is attributable to a network-driven, bicarbonate-dependent K+ transient.
    J Neurosci. 1997 Oct 15;17(20):7662-72 PMID: 9315888
  39. Tonic synaptic inhibition modulates neuronal output pattern and spatiotemporal synaptic integration.
    Neuron. 1997 Sep;19(3):665-78 PMID: 9331356
  40. GABA-dependent firing of glutamate-evoked action potentials at AMPA/kainate receptors in developing hypothalamic neurons.
    J Neurophysiol. 1998 Feb;79(2):716-26 PMID: 9463435
  41. Synaptic currents at individual connections among stellate cells in rat cerebellar slices.
    J Physiol. 1998 May 15;509 ( Pt 1):221-32 PMID: 9547395
  42. Differential effects of noradrenaline on evoked, spontaneous and miniature IPSCs in rat cerebellar stellate cells.
    J Physiol. 1998 May 15;509 ( Pt 1):233-43 PMID: 9547396
  43. Quantitative Golgi study of the rat cerebellar molecular layer interneurons using principal component analysis.
    J Comp Neurol. 1998 Apr 13;393(3):353-73 PMID: 9548555
  44. Autaptic inhibitory currents recorded from interneurones in rat cerebellar slices.
    J Physiol. 1998 Jun 15;509 ( Pt 3):777-83 PMID: 9596799
  45. The K+/Cl- co-transporter KCC2 renders GABA hyperpolarizing during neuronal maturation.
    Nature. 1999 Jan 21;397(6716):251-5 PMID: 9930699
Article Info
Journal
The Journal of neuroscience : the official journal of the Society for Neuroscience
Abbr.
J Neurosci
ISSN
1529-2401
Published
2003-03-15
Pages
2019-31
Language
English
Region
United States
NLM ID
8102140
PMCID
PMC6742031
Subset
IM
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