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Channel opening of gamma-aminobutyric acid receptor from rat brain: molecular mechanisms of the receptor responses.

The function of gamma-aminobutyric acid (GABA) receptors, which mediate transmembrane chloride flux, can be studied by use of 36Cl- isotope tracer with membrane from mammalian brain by quench-flow technique, with reaction times that allow resolution of the receptor desensitization rates from the ion flux rates. The rates of chloride exchange into the vesicles in the absence and presence of GABA were characterized with membrane from rat cerebral cortex. Unspecific 36Cl- influx was completed in three phases of ca. 3% (t 1/2 = 0.6 s), 56% (t 1/2 = 82 s), and 41% (t 1/2 = 23 min). GABA-mediated, specific chloride exchange occurred with 6.5% of the total vesicular internal volume. The GABA-dependent 36Cl- influx proceeded in two phases, each progressively slowed by desensitization. The measurements supported the presence of two distinguishable active GABA receptors on the same membrane mediating chloride exchange into the vesicles with initial first-order rate constants of 9.5 s-1 and 2.3 s-1 and desensitizing with first-order rate constants of 21 s-1 and 1.4 s-1, respectively, at saturation. The half-response concentrations were similar for both receptors, 150 microM and 114 microM GABA for desensitization and 105 microM and 82 microM for chloride exchange, for the faster and slower desensitizing receptors, respectively. The two receptors were present in the activity ratio of ca. 4/1, similar to the ratio of "low-affinity" to "high-affinity" GABA sites found in ligand binding experiments. The desensitization rates have a different dependence on GABA concentration than the channel-opening equilibria.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Participation of gamma-aminobutyric acid in the negative feedback mechanisms of the hypothalamohypophyseotesticular complex.

It is known that gamma-aminobutyric acid (GABA) participates in the regulation of the secretion of many adenohypophyseal hormones [2, 9]. In addition, GABAergic mechanisms may be involved in the regulation of testosterone-dependent aggressive [5] and sexual [8] behavior. A substantial number of studies suggest that GABA and its receptors are capable of participating in the regulation of the secretions of luteinizing hormone (LH). However, its role in this process is not entirely clear, since according to the data of various authors, GABA exerts both inhibitory and activating influences on the secretion of LH [3, 12]. Still less is known of the role of GABA and its receptors in the regulation of the secretion of LH by the negative feedback mechanism, which has been studied in bilaterally castrated rats [3]. However, such a model offers the possibility of investigating only a separate link of this mechanism which regulates the hypothalamohypophyseotesticular complex (HHTC). With regard to the study of the neurochemical regulation of the integral negative feedback system, the use of unilaterally castrated rats is more appropriate for this purpose. In such animals the compensation of the insufficiency of androgens is determined by negative feedback stimulation, and not by the administration of exogenous steroids. In addition, the level of testosterone in the peripheral blood more adequately reflects the state of this mechanism than the level of the gonadotropins [7]. However, the role of GABA and its receptors in the regulation of the integral negative feedback mechanism of the HHTC, so far as we know, remains entirely unstudied. This was in fact the purpose of the present study.

Animals↗

Modulation of gamma-aminobutyric acid receptor-channel complex by alcohols.

The electrophysiological effects of ethanol on the gamma-aminobutyric acid (GABA) system have been a matter of controversies; some observed an enhancement of GABA response whereas others failed to see the effect. Acute effects of n-alcohols (ethanol, n-butanol, n-hexanol and n-octanol) on chloride current activated by bath application of GABA were studied with the rat dorsal root ganglion neurons maintained in primary culture. The whole-cell patch-clamp technique was used to record the current. Ethanol (30-300 mM), n-butanol (1-30 mM), n-hexanol (30-1000 microM) and n-octanol (3-100 microM) enhanced the initial peak current evoked by 30 microM GABA in a dose-dependent manner. The potency of alcohols increased with the chain length and was well correlated with the membrane/buffer partition coefficient. The observed low potency of ethanol is also predicted from this correlation. The dose-response curve for the GABA-induced nondesensitized current was sigmoidal with an apparent dissociation constant of 55 microM and a Hill coefficient of 1.5 to 1.9. Ethanol (300 mM) and n-octanol (100 microM) shifted the dose-response curve in the direction of low concentration without greatly changing the Hill coefficient. Ethanol (300 mM) and n-octanol (30 and 100 microM) shortened the decay time course of the current induced by 30 microM GABA to 66, 74 and 52% of control, respectively. Unlike the peak nondesensitized current, the desensitized steady-state current induced by high concentration (300 microM) of GABA was suppressed by long-chain alcohols.(ABSTRACT TRUNCATED AT 250 WORDS)

Alcohols↗

Gamma-aminobutyric acid type A receptors and alcoholism: intoxication, dependence, vulnerability, and treatment.

CONTEXT: Alcohol facilitates gamma-aminobutyric acid (GABA) function, and GABA type A (GABA(A)) receptor-facilitating agents suppress alcohol withdrawal symptoms. Advances in molecular neuroscience, genetics, and neuroimaging provide new insights into the role of brain GABA systems in short- and long-term alcohol effects. OBJECTIVE: To review the role of brain GABA systems in alcohol response, alcohol dependence, alcoholism vulnerability, and alcoholism pharmacotherapy. DESIGN: Literature review. RESULTS: Alcohol increases GABA release, raises neurosteroid levels, and may potently enhance the function of a GABA(A) receptor subclass that shows high affinity for GABA and neurosteroids, relative insensitivity to benzodiazepines, low chloride conductance, and an extrasynaptic location. Variation in GABA(A) receptor subunit genes may contribute to the vulnerability to alcoholism, particularly in the context of environmental risk factors. Alcohol dependence is associated with time-dependent changes in brain GABA(A) receptor density and subunit gene expression levels that contribute to a withdrawal-related deficit in GABA(A) receptor function. However, cortical GABA levels are not reduced during acute withdrawal. Benzodiazepine-assisted detoxification enhances a phasic component of GABA function. However, novel treatments target the tonic component of GABA neurotransmission mediated by benzodiazepine-insensitive GABA(A) receptors. Smoking attenuates withdrawal-related disturbances in brain GABA function, perhaps contributing to comorbid nicotine and alcohol dependence. The GABA systems show recovery with long-term sobriety. CONCLUSIONS: Recent research deepens our understanding of the role of GABA systems in alcohol action, alcohol dependence, and the vulnerability to alcoholism. Also, GABA(A) receptor subtype-selective treatments merit exploration for reducing withdrawal symptoms and drinking in alcohol-dependent individuals.

Alcoholism↗

Formation of heteromeric gamma-aminobutyric acid type A receptors containing two different alpha subunits.

The functional properties of recombinant gamma-aminobutyric acid (GABA) receptors expressed transiently in human embryonic kidney 293 cells were examined. Combinations of alpha 1 beta 2 gamma 2, alpha 3 beta 2 gamma 2, and alpha 1 alpha 3 beta 2 gamma 2 subunits were transiently expressed and the properties of the resulting receptors were studied with patch-clamp electrophysiology. Each subunit combination produced receptors having a unique set of functional properties. Concentration-response experiments showed that receptors composed of alpha 1 beta 2 gamma 2 subunit combinations were more sensitive to GABA (EC50 = 17.4 microM) than were either alpha 3 beta 2 gamma 2 (EC50 = 103 microM) or alpha 1 alpha 3 beta 2 gamma 2 (EC50 = 55.8 microM) receptors. Consistent with its action at native GABA-A receptors, diazepam (1 microM) potentiated the effect of GABA by shifting the GABA concentration-response curve to the left. The magnitude of the diazepam shift also differed between subunit combinations. The apparent potency of GABA was increased 2-fold by diazepam with alpha 1 beta 2 gamma 2 receptors, 3-fold with alpha 3 beta 2 gamma 2 receptors, and 5-fold with alpha 1 alpha 3 beta 2 gamma 2 receptors. Brief applications (6-25 msec) of 3 mM GABA to outside-out patches revealed that currents decayed predominantly with double-exponential time courses. The decay time courses of currents mediated by alpha 1 beta 2 gamma 2 and alpha 1 alpha 3 beta 2 gamma 2 receptors were similar, whereas the alpha 3 beta 2 gamma 2 receptor response decayed more slowly. The distinct properties observed in cells expressing each of these subunit combinations suggest that the subunits form unique receptors. The possibility that some neuronal GABA receptors contain two different alpha subunits is discussed.

Cell Line↗

Immunohistochemical localization of gamma-aminobutyric acid- and aspartate-containing neurons in the guinea pig vestibular nuclei.

The immunohistochemical distributions of gamma-aminobutyric acid (GABA)- and aspartate-containing neurons were studied in the guinea pig vestibular nuclei using purified antisera to GABA and aspartate, respectively. Most GABA-containing neurons had small cell bodies and were scattered throughout all regions of the vestibular nuclei. The largest number of these cells was found in the medial nucleus. Intraventricular injection of colchicine markedly increased GABA-like immunoreactivity in these cell bodies. GABA-containing terminals were distributed throughout all 4 subdivisions of the nuclei, with the richest localization found around the floor of the fourth ventricle. Various sized aspartate-containing neurons were noted in the vestibular nuclei and small cells were present in the superior, medial and lateral nucleus. Medium-sized cells were observed throughout the vestibular nuclei. Giant cells in the lateral nucleus also contained aspartate and were surrounded by GABA-like immunoreactive terminals, thereby suggesting the modulation of aspartate-containing neurons by GABAergic fibers from Purkinje cells.

Animals↗

Stimulus-secretion coupling processes in brain: analysis of noradrenaline and gamma-aminobutyric acid release.

1. Brain synaptosomal fractions released both endogenous and exogenously loaded noradrenaline and gamma-aminobutyric acid (GABA) in response to calcium. Elevation of magnesium concentrations in the release media decreased the calcium-dependent release. 2. The release of noradrenaline and GABA occurred within 250 msec following the application of calcium. Following the initial response to calcium, release progressively decreased with continued application of calcium. GABA release declined more rapidly than noradrenaline release, consistent with a noradrenaline distribution having greater accessibility to the release process. 3. Sodium was required for the loading of noradrenaline and GABA into pools released by calcium. On the other hand, the presence of sodoium was not required for release from previously loaded pools. 4. Microsomal fractions did not exhibit calcium-dependent release of noradrenaline or GABA. Furthermore, exogenously loaded lysine was not released from synaptosomal fractions in response to calcium. 5. Barium and strontium, but not magnesium, stimulated noradrenaline and GABA release in the absence of calcium. The ordering of alkaline earth efficacies was barium greater than strontium greater than calcium. 6. Manganese inhibited calcium-dependent release of noradrenaline and GABA to a greater extent than magnesium. 7. Release, in response to 1 mM calcium, increased linearly with the log. [K+]0, suggesting that a voltage-dependent calcium inophore limits release. The slope of release vs. log. [K+]0 was greater for noradrenaline than for GABA. 8. For a given [K+]0 less than 55 mM, increases in external calcium concentration above 1 mM increased noradrenaline release but decreased GABA release. These data suggest that calcium can decrease its own permeation and that differences in the release process may exist for different neurotransmitters. 9. In the presence of the artificial calcium ionophore, A23187, both noradrenaline and GABA release increased linearly with the log. [Ca2+]0. The slope for noradrenaline release was greater than that for GABA release. 10. Stimulus-secretion coupling in brain is suggested to be regulated at the level of a voltage dependent calcium permeation mechanism. However, basic differences in the interaction of calcium with the release process may exist between the noradrenaline and GABA systems.

Aminobutyrates↗

gamma-Aminobutyric acid- and piperazine-activated single-channel currents from Ascaris suum body muscle.

gamma-Aminobutyric acid (GABA)- and piperazine-activated single-channel currents were recorded from the bag region of the somatic muscle of the nematode parasite Ascaris suum. Cell-attached and outside-out patch-clamp techniques were used. Clean membranes were routinely prepared using collagenase. GABA (concentrations greater than 1 microM) or piperazine (concentrations greater than 200 microM) applied to the extracellular surface of the patches brought about the opening of channels producing rectangular shaped current pulses of varying duration but essentially constant amplitude. The I/V relationships of the single-channel currents for both agonists were linear and had conductances in the region of 22 pS (in symmetrical 170 mM Cl-). The reversal potential was near 0 mV when Cl- was equally distributed on both sides of the membrane. Occasionally two subconductance states were seen. The mainstate single-channel permeability was estimated to be 4 X 10(-14) cm3 s-1. At low concentrations of GABA (3-4 microM), the effective mean channel open time was in the region of 32 ms (-75 mV, 22 degrees C, cell-attached patches). At low concentrations of piperazine (500 microM) the effective mean open channel lifetime was shorter, in the region of 14 ms (-75 mV, 22 degrees C cell-attached patches). For each agonist the channel open lifetime distributions were best described by the sum of two exponentials suggesting two open mainstates. Channel openings occurred as single events and in bursts with brief closed periods within bursts. The channel closed time histograms at these concentrations were best described by the sum of up to three exponentials, suggesting the presence of three closed states. Channel open times showed no appreciable voltage sensitivity. Before desensitization, increases in agonist concentration produced an increase in the probability of the channel being open. The increased probability was associated with an increase in the frequency of channel opening, an increase in the effective mean channel open time, an increase in burst duration, an increase in the number of openings per burst, together with a reduction in the proportion of brief openings. Desensitization was seen as a decline in the probability of the channel being opened during prolonged applications of agonist. It was associated with the appearance of very long (seconds) closed periods. The distributions of the closed channel times were then best described by up to four exponentials.

Animals↗

Regionally selective deficits in uptake sites for glutamate and gamma-aminobutyric acid in the basal ganglia in schizophrenia.

In a post-mortem study of schizophrenic and control subjects, the sodium-dependent binding of D-[3H]aspartate and [3H]nipecotic acid were used to investigate uptake sites of glutamate and gamma-aminobutyric acid (GABA), respectively, in subcortical brain regions. Binding to the glutamate uptake site was substantially reduced in both the putamen and lateral pallidum of the schizophrenic subjects. Binding to the GABA uptake site was substantially reduced in the putamen; smaller reductions were apparent in the caudate nucleus and lateral pallidum. The results suggest that glutamatergic and GABAergic mechanisms in the basal ganglia are abnormal in schizophrenia. These abnormalities could be relevant to the development of psychosis but could also relate to the spectrum of mild motor disturbances often described in the disease.

Aspartic Acid↗

Some correlations between local anesthetic-induced convulsions and gamma-aminobutyric acid in rat spinal cord.

The effects of local anesthetics (procaine and lidocaine) on the gamma-aminobutyric acid (GABA) and L-glutamic acid (Glu) levels in rat spinal cord were studied during the convulsive process. The present study also investigated the influence of central GABA manipulations on the local anesthetic-induced convulsions. An increase in spinal GABA levels was observed at the preconvulsive and convulsive states after administration of procaine (170 mg/kg, i.p.) or lidocaine (120 mg/kg, i.p.), which induced clonic convulsions; in the depressive state, GABA levels returned to normal; in all states, Glu levels were unchanged. Semicarbazide (25-100 mg/kg, i.p.), a glutamic acid decarboxylase inhibitor, produced a decrease in spinal GABA content and strongly enhanced both local anesthetic-induced convulsions as shown by a shortening of the latency and an increase in the mortality. Aminooxyacetic acid (AOAA; 10-40 mg-kg, i.p.), a GABA transaminase inhibitor, dose-dependently increased spinal GABA content and markedly suppressed procaine-induced convulsions. However, lidocaine-induced convulsions were enhanced by AOAA. These results suggest that the spinal GABA neuron may respond to the convulsions induced by local anesthetics. Furthermore, there is a clear relationship between spinal GABA content and procaine-induced, but not lidocaine-induced, convulsions.

Aminooxyacetic Acid↗

New substrates and inhibitors of gamma-aminobutyric acid aminotransferase containing bioisosteres of the carboxylic acid group: design, synthesis, and biological activity.

A series of potential substrates of gamma-aminobutyric acid aminotransferase (GABA-AT) with lipophilic bioisosteres of the carboxylic acid group (2-7) were synthesized and tested. Most of the synthesized compounds showed substrate activities with GABA-AT; 1H-tetrazole-5-propanamine (6) was the best of those tested. The potential time-dependent inhibitor of GABA-AT, 1H-tetrazole-5-(alpha-vinyl-propanamine) (8), was designed based on the structures of 6 and the antiepilepsy drug vigabatrin (4-aminohex-5-enoic acid, 1). The synthesized compound 8 showed time-dependent inhibition of GABA-AT, but its potency is lower than that of vigabatrin. Methylation of the tetrazole group in 8 resulted in loss of time-dependent activity, suggesting that the tetrazole ring, the carboxylate bioisostere, exists in its deprotonated form in the enzyme active site.

4-Aminobutyrate Transaminase↗

Aspartate, glutamate, glutamine, glycine and gamma-aminobutyric acid in human bioptic neocortical areas: comparison to autoptic tissue.

Amino acid concentrations were determined by high performance liquid chromatography in distinct areas of human neocortex of autoptic and bioptic origin. The concentrations in autoptic tissue were similar in all cortical areas which may be explained by postmortem proteolysis, abolishing regional differences seen in bioptic tissue. Aspartate, glutamate, glycine and gamma-aminobutyric acid concentrations were lower, but glutamine levels were higher, in biopsied than in autopsied tissue. Glycine and gamma-aminobutyric acid concentrations increased with the age of biopsied patients. The differences seen suggest that only amino acid concentrations determined in bioptic tissue may yield a reliable data base for the interpretation of pathological alterations in neocortical biopsies of patients with brain diseases.

Adult↗

Pentobarbital and synaptic high-affinity receptive sites for gamma-aminobutyric acid.

Electrophysiological investigations of others show that pentobarbital enhances the inhibitory inflences of gamma-aminobutyric acid (GABA). Specifically, receptor activation is amplified and prolonged, suggesting the presence of an increased number of GABA molecules in the synaptic cleft. Either inactivation of high-affinity GABA transport or alteration of post-synaptic GABA receptors might account for these influences of pentobarbital. In this sudy the effect of pentobarbital on high-affinity uptake and binding of GABA to synaptic receptive sites has been examined. Using synaptosomes and subsynaptosomal fractions of cerebral cortex and hippocampus, it si shown that concentrations of pentobarbital, exceeding 1 mM have no appreciable effect on GABA uptake or binding. Thus the synaptic influence of pentobarbital, evident at 0.1 mM in electrophysiologic experiments, must originate from mechanisms other than the high-affinity uptake or binding of GABA. Possible sites of action include the presynaptic release of GABA and the ionophores coupled with postsynapitc sites.

Aminobutyrates↗

Seed treatment with beta-aminobutyric acid protects Pennisetum glaucum systemically from Sclerospora graminicola.

beta-Aminobutyric acid (BABA) treatment of pearl millet [Pennisetum glaucum (L) R Br] seeds influenced seedling vigour and protected the seedlings from downy mildew disease caused by the oomycetous biotropic fungus Sclerospora graminicola (Sacc) Schroet. Of the different concentrations of BABA tested, viz 25, 50, 75 and 100 mM, seeds treated with 50 mM for 6 h resulted in the maximum of 1428 seedling vigour and showed 23% disease incidence in comparison with the control which recorded a seedling vigour of 1260 and 98% disease incidence i.e. 75% protection from disease. Seeds treated with BABA when challenged for downy mildew disease using zoospores of S graminicola required 48 h after inducer treatment to develop maximum resistance. Durability of induced resistance was also tested in plants raised from seeds treated with the inducer and identified as resistant, by second challenge inoculation with the downy mildew pathogen at tillers and inflorescence axes. Reduced disease incidence of only 10 and 12% in these plants, compared with 71 and 76% disease in control plants inoculated at the tillers and inflorescence axes, respectively, suggested that resistance induced in seeds with BABA remained operative through vegetative and reproductive growth of pearl millet plants. Induction of resistance by seed treatment with BABA enhanced vegetative growth, viz height, fresh weight, leaf area and tillering, and reproductive growth, viz early flowering, number of productive ear heads and 1000 seed weight. Studies on induction of resistance in different cultivars of pearl millet with varying resistance reaction to downy mildew indicated that the protection offered by BABA is independent of the nature of cultivars used and not dependent on their constitutive resistance.

Aminobutyrates↗

Cortical gamma-aminobutyric acid levels and the recovery from ethanol dependence: preliminary evidence of modification by cigarette smoking.

BACKGROUND: Gamma-aminobutyric acid (GABA)ergic adaptations contribute to the neurobiology of ethanol dependence and withdrawal. Clinical data suggest that tobacco smoking attenuates alcohol withdrawal symptoms. This study's objective was to measure time-dependent cortical GABA levels with sobriety in ethanol-dependent patients with mild to moderate withdrawal severity, controlling for alcoholism-related neurotoxicity and smoking. METHODS: Proton magnetic resonance spectroscopy (MRS) was used to measure occipital cortical N-acetylaspartate (NAA), glutamate plus glutamine, and GABA in 12 ethanol-dependent men at approximately 1 week and 1 month of medication-free sobriety on an inpatient unit. Eight healthy men were studied once. The tissue composition of the MRS volume was determined. RESULTS: Adjusting for less white matter in patients, GABA differed insignificantly between ethanol-dependent patients (smokers plus nonsmokers) and healthy subjects. In early sobriety, nonsmoking patients had more GABA than did smoking patients, but by 1 month, GABA decreased in nonsmokers without changing in smokers. Smoking was associated with increased glutamate plus glutamine in patients and healthy subjects, adjusting for NAA levels. CONCLUSIONS: These data do not show that deficits in cortical GABA contribute directly to acute ethanol withdrawal. If smoking prevents withdrawal-related changes in cortical GABA systems, it may contribute to comorbidity of alcoholism and tobacco smoking.

Adult↗

Simultaneous detection of resolved glutamate, glutamine, and gamma-aminobutyric acid at 4 T.

A new approach is introduced to simultaneously detect resolved glutamate (Glu), glutamine (Gln), and gamma-aminobutyric acid (GABA) using a standard STEAM localization pulse sequence with the optimized sequence timing parameters. This approach exploits the dependence of the STEAM spectra of the strongly coupled spin systems of Glu, Gln, and GABA on the echo time TE and the mixing time TM at 4 T to find an optimized sequence parameter set, i.e., {TE, TM}, where the outer-wings of the Glu C4 multiplet resonances around 2.35 ppm, the Gln C4 multiplet resonances around 2.45 ppm, and the GABA C2 multiplet resonance around 2.28 ppm are significantly suppressed and the three resonances become virtual singlets simultaneously and thus resolved. Spectral simulation and optimization were conducted to find the optimized sequence parameters, and phantom and in vivo experiments (on normal human brains, one patient with traumatic brain injury, and one patient with brain tumor) were carried out for verification. The results have demonstrated that the Gln, Glu, and GABA signals at 2.2-2.5 ppm can be well resolved using a standard STEAM sequence with the optimized sequence timing parameters around {82 ms,48 ms} at 4 T, while the other main metabolites, such as N-acetyl aspartate (NAA), choline (tCho), and creatine (tCr), are still preserved in the same spectrum. The technique can be easily implemented and should prove to be a useful tool for the basic and clinical studies associated with metabolism of Glu, Gln, and/or GABA.

Algorithms↗

gamma-Aminobutyric acid concentrations in the cerebrospinal fluid of newborn infants determined by high performance liquid chromatography.

gamma-Aminobutyric acid (GABA), a major inhibitory amino acid, has a central role in cardiorespiratory regulation. Its measurement in the cerebrospinal fluid (CSF) complements the study of neurotransmission systems. Forty-one children were studied (postnatal age < 1 year). For each child, date of birth, date of sampling and current treatments were collated and their postnatal (days) and postconception (weeks) ages were calculated. CSF samples were studied using reverse phase high performance liquid chromatography (HPLC) with o-phthaldialdehyde derivation and spectro-fluorimetric measurement. A clear increase in levels of GABA was observed around 41 weeks postconception, followed by a progressive decrease, with levels stabilizing after 57 weeks postconception. GABA-regulated neuromodulation therefore appears to be mature at 41 weeks postconception and not at birth. The data could be used in further studies investigating amino acid metabolism in relation to brain function in various neurological disorders.

Age Factors↗

Allosteric modulation in spontaneously active mutant gamma-aminobutyric acid(A) receptors [corrected].

Tryptophan substitutions were made in the second transmembrane domain of the gamma-aminobutyric acid(A) (GABA(A)) receptor alpha and beta subunits and the resulting mutant receptors, containing alpha(2)(S270W) and/or beta(1)(S265W), were expressed in Xenopus oocytes. Mutation of either or both subunits resulted in receptors that exhibited enhanced sensitivity to agonist and were spontaneously active in the absence of GABA. The spontaneous activity was blocked by picrotoxin or bicuculline. The enhancement of GABA-induced currents by pentobarbital, by the neurosteroid 5alpha-pregnan-3alpha-ol-20-one, and by the benzodiazepine flunitrazepam was dramatically reduced in the mutant receptors. These results are consistent with the idea that a mutation that promotes gating behavior in a ligand-gated ion channel will also show reduced effects of all positive allosteric modulators in a generalized manner, even when these modulators act at distinct sites on the receptor.

Allosteric Regulation↗