Fast and Slow Inhibition in the Visual Thalamus Is Influenced by Allocating GABAA Receptors with Different γ Subunits
نویسندگان
چکیده
Cell-type specific differences in the kinetics of inhibitory postsynaptic conductance changes (IPSCs) are believed to impact upon network dynamics throughout the brain. Much attention has focused on how GABAA receptor (GABAAR) α and β subunit diversity will influence IPSC kinetics, but less is known about the influence of the γ subunit. We have examined whether GABAAR γ subunit heterogeneity influences IPSC properties in the thalamus. The γ2 subunit gene was deleted from GABAARs selectively in the dorsal lateral geniculate nucleus (dLGN). The removal of the γ2 subunit from the dLGN reduced the overall spontaneous IPSC (sIPSC) frequency across all relay cells and produced an absence of IPSCs in a subset of relay neurons. The remaining slower IPSCs were both insensitive to diazepam and zinc indicating the absence of the γ2 subunit. Because these slower IPSCs were potentiated by methyl-6,7-dimethoxy-4-ethyl-β-carboline-3-carboxylate (DMCM), we propose these IPSCs involve γ1 subunit-containing GABAAR activation. Therefore, γ subunit heterogeneity appears to influence the kinetics of GABAAR-mediated synaptic transmission in the visual thalamus in a cell-selective manner. We suggest that activation of γ1 subunit-containing GABAARs give rise to slower IPSCs in general, while faster IPSCs tend to be mediated by γ2 subunit-containing GABAARs.
منابع مشابه
GABAA Receptor Subunits in Rat Testis and Sperm
Background γ-Aminobutyric acid (GABA) is considered to be the predominant inhibitory neurotransmitter in mammalian central nervous systems (CNS). There are two major classes of GABA receptors: GABAARs and GABABRs. The GABAA receptor is derived from various subunits such as alpha1-alpha 6, beta1-beta 3, gamma1-gamma 4, delta, epsilon, pi, and rho1-3. Intensive research has been performed to und...
متن کاملIs the pain modulatory action of 17β-estradiol in locus coeruleus of male rats is mediated by GABAA receptors?
Introduction: Estradiol is a neuroactive steroid, which is found in several brain areas such as locus coeruleus (LC). Estradiol modulates nociception by binding to its receptors and also by allosteric interaction with other membranebound receptors like glutamate and GABAA receptors. LC is involved in noradrenergic descending pain modulation. Methods: In order to study the effect of 17β-estra...
متن کاملGABAA Receptor 5 Subunits Contribute to GABAA,slow Synaptic Inhibition in Mouse Hippocampus
Zarnowska ED, Keist R, Rudolph U, Pearce RA. GABAA receptor 5 subunits contribute to GABAA,slow synaptic inhibition in mouse hippocampus. J Neurophysiol 101: 1179–1191, 2009. First published December 10, 2008; doi:10.1152/jn.91203.2008. -Aminobutyric acid type A (GABAA) receptor 5 subunits, which are heavily expressed in the hippocampus, are potential drug targets for improving cognitive functi...
متن کاملQuantitative Analysis of GABAA Gamma Receptor Subunits in the Developing Embryonic Chick Forebrain
Objective(s) In this study we investigated the expression of GABAA receptor subunits during brain development. These receptors may change in the embryonic chick forebrain. Materials and Methodes The expression levels of four types of GABAA receptor gamma subunits (γ1, γ2, γ3 and γ4) were quantified in the embryonic chick forebrain at 32 hr, 3, 7, 14, and 20 days of incubation and day one aft...
متن کاملTitle Gaba a Receptor Α5 Subunits Contribute to Gaba A,slow Synaptic Inhibition in Mouse Hippocampus Running Title Gaba a Receptor Α5 Subunits and Slow Synaptic Inhibition
GABAA receptor α5 subunits, which are heavily expressed in the hippocampus, are potential drug targets for improving cognitive function. They are found at synaptic and extrasynaptic sites and have been shown to mediate tonic inhibition in pyramidal neurons. We tested the hypothesis that α5 subunits also contribute to synaptic inhibition by measuring the effect of diazepam (DZ) on spontaneous an...
متن کامل