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1.
Abstract— The effect of L-2,4 diaminobutyric acid (DABA) and β-alanine on the K+ stimulated release of [3H]GABA was examined using a continuous superfusion system in which a carrier mediated exchange diffusion could be demonstrated between [3H]GABA in preloaded rat cortical slices and unlabeled DABA and β-alanine in the superfusion medium. These structurally related amino acids were chosen to investigate the source of releasable [3H]GABA because of evidence suggesting they may have differing affinities for the GABA carrier transport system that are specific for neurons and glia, DABA having a greater affinity for the neuronal GABA system and β-alanine for the glial. Five millimolars-DABA in the superfusion medium nearly abolished the K+ stimulated release of [3H]GABA whereas β-alanine had little effect. The results and conclusions are discussed in terms of a postulated carrier mediated exchange of unlabeled DABA with a specific neuronal pool of [3H]GABA interfering with the K+ stimulated release of the radiolabeled GABA. The results provide indirect evidence in favor of a neuronal pool as the source of releasable [3H]GABA in this system.  相似文献   

2.
Abstract— The effects of hyperosmolal superfusion upon the release of preloaded, radio-labeled GABA has been studied, using both first cortical and first pontine brain slices. GABA release was stimulated with either hyperosmolal Na+ or sucrose superfusion in cortical slices. This stimulated release of radio-labeled GABA was partially Ca2+-dependent in cortical slices. When barium ions replaced Ca2+ in hyperosmolal medium, a similar effect was seen. High concentration of magnesium in Ca2+ -free hyperosmolal medium did not induce stimulation. The increased release of α-aminoisobutyric acid (AIBA), a non-metabolized amino acid induced by hyperosmolality, was not Ca2+-dependent.
GABA release was also stimulated with hyperosmolal sucrose superfusion in pontine slices. The effect of pre-treatment of cortical and pontine slices with β-alanine or L-2,4-diaminobutyric acid (DABA) was used to study the source of exogenous GABA release induced by hyperosmolality. In cortical slices, β-alanine blocked the hyperosmolal release of GABA and also slightly inhibited GABA uptake. DABA did not change hyperosmolal GABA release, although it inhibited GABA uptake. In pontine slices, both DABA and β-alanine inhibited GABA uptake, but were unable to inhibit the hyperosmolal release of GABA.
The data suggest that hyperosmolality causes increased release of GABA from neurons, analogous to that seen with K+-depolarization. AIBA, unlike GABA, is released from brain cells as a non-Ca2+ -dependent response to osmotic equilibration. The observation that pre-treatment with β-alanine inhibits the hyperosmolal release of GABA suggests that hyperosmolality alters glial cell function.  相似文献   

3.
[14C]GABA is taken up by rat brain synaptosomes via a high affinity, Na+-dependent process. Subsequent addition of depolarizing levels of potassium (56.2 MM) or veratridine (100 μM) stimulates the release of synaptosomal [14C]GABA by a process which is sensitive to the external concentration of divalent cations such as Ca2+, Mg2+, and Mn2+. However, the relatively smaller amount of [14C]GABA taken up by synaptosomes in the absence of Na+ is not released from synaptosomes by Ca2+ -dependent, K +-stimulation. [14C]DABA, a competitive inhibitor of synaptosomal uptake of GABA (Iversen & Johnson , 1971) is also taken up by synaptosomal fractions via a Na + -dependent process; and is subsequently released by Ca2+ -dependent, K+-stimulation. On the other hand, [14C]β-alanine, a purported blocker of glial uptake systems for GABA (Schon & Kelly , 1974) is a poor competitor of GABA uptake into synaptosomes. Comparatively small amounts of [14C] β-alanine are taken up by synaptosomes and no significant amount is released by Ca2+ -dependent, K+-stimulation. These data suggest that entry of [14C]GABA into a releasable pool requires external Na+ ions and maximal evoked release of [14C]GABA from the synaptosomal pool requires external Ca2+ ions. The GABA analogue, DABA, is apparently successful in entering the same or similar synaptosomal pool. The GABA analogue, β-alanine, is not. None of the compounds or conditions studied were found to simultaneously affect both uptake and release processes. Compounds which stimulated release (veratridine) or inhibited release (magnesium) were found to have minimal effect on synaptosomal uptake. Likewise compounds (DABA) or conditions (Na+-free medium) which inhibited uptake, had little effect on release.  相似文献   

4.
The Ca2+-dependent, presumably exocytotic fraction of the [3H]GABA released by depolarization is dissected from the depolarization-induced Na+-dependent, carrier-mediated fraction of [3H]GABA release in mouse brain synaptosomes. GABA homoexchange is prevented by the [3H]GABA carrier blocker, DABA. The absence of external Na+ completely abolishes the release of the carrier-mediated, presumably cytoplasmic release of [3H]GABA induced by homoexchange and heteroexchange with GABA and DABA, respectively. The carrier-mediated, Na+-dependent fraction of the depolarization-induced release of [3H]GABA is resistant to tetrodotoxin (TTX) but is sensitive to amiloride and verapamil. The Ca2+-dependent fraction of the [3H]GABA released by high K+ depolarization is also completely abolished by amiloride (from 300 M) and sensitive to verapamil (30 M), but in contrast is insensitive to the absence of external Na+ and to DABA. On the basis of these results we conclude that amiloride and verapamil inhibit high K+-induced release of [3H]GABA by antagonizing the entrance of Ca2+ (and possibly Na+ when external Ca2+ is absent) through a population of voltage sensitive presynaptic Ca2+ channels activated by depolarization.Depto. de Biología Molecular Instituto de Investigaciones Biomédicas UNAM.  相似文献   

5.
Abstract— Several parameters of GABA Auxes across the synaptosomal membrane were studied using synaptosomes prepared from the brain of immature (8-day-old) rats. The following aspects of GABA carrier-mediated transport were similar in immature and mature synaptosomes: (1) magnitude of [3H]GABA accumulation; (2) GABA homoexchange in normal ionic conditions; (3) GABA homoexchange in the presence of cationic fluxes (Na+ and Ca2+ influx, K+ efflux) characteristic of physiological depolarization. As in adult synaptosomes (Levi & Raiteri , 1978), in these conditions the stoichiometry of GABA homoexchange was in the direction of net outward transport (efflux > influx). The essential differences between the behaviour of 8-day-old and adult synaptosomes were the following: (1) β-alanine (a glial uptake inhibitor) inhibited GABA uptake in immature synaptosomes (the inhibition being greater in crude than in purified preparations) and was without a significant effect in adult synaptosomes. DABA and ACHC (two neuronal uptake inhibitors) depressed GABA uptake more efficiently in purified than in crude immature synaptosomes, but were as effective in crude and purified nerve endings from adult animals. The data suggest a greater uptake of GABA in the‘gliosomes’contaminating the synaptosomal preparations from immature animals. (2) In immature synaptosomes prelabelled with [3H]GABA the specific radioactivity of the GABA released spontaneously or by heteroexchange (with 300 μm -OH-GABA) was the same as that present in synaptosomes, while in adult synaptosomes OH-GABA released GABA with increased specific radioactivity. The data suggest a homogeneous distribution of the [3H]GABA taken up within the endogenous GABA pool in immature, but not in mature synaptosomes. (3) In immature synaptosomes the release of GABA (radioactive and endogenous) induced by depolarization with high KC was not potentiated by Ca2+, unless the synaptosomes had been previously depleted of Na+ These data suggest that, although a Ca2+ sensitive pool of GABA may be present, this pool is not susceptible to being released in normal conditions, probably because the high intrasynaptosomal Na+ level prevents a sufficient depolarization. The possible significance of these findings in terms of functional activity of GABAergic neurotransmission in the immature brain is discussed.  相似文献   

6.
The effect of N-methyl-D-aspartic acid (NMDA), a selective glutamate receptor agonist, on the release of previously incorporated [3H]-aminobutyric acid(GABA) was examined in superfused striatal slices of the rat. NMDA (0.01 to 1.0 mM) increased [3H]GABA overflow with an EC50 value of 0.09 mM. The [3H]GABA releasing effect of NMDA was an external Ca2+-dependent process and the GABA uptake inhibitor nipecotic acid (0.1 mM) potentiated this effect. These findings support the view that NMDA evokes GABA release from vesicular pool in striatal GABAergic neurons. Addition of glycine (1 mM), a cotransmitter for NMDA receptor, did not influence the NMDA-induced [3H]GABA overflow. Kynurenic acid (1 mM), an antagonist of glycineB site, decreased the [3H]GABA-releasing effect of NMDA and this reduction was suspended by addition of 1 mM glycine. Neither glycine nor kynurenic acid exerted effects on resting [3H]GABA outflow. These data suggest that glycineB binding site at NMDA receptor may be saturated by glycine released from neighboring cells. Glycyldodecylamide (GDA) and N-dodecylsarcosine, inhibitors of glycineT1 transporter, inhibited the uptake of [3H]glycine (IC50 33 and 16 M) in synaptosomes prepared from rat hippocampus. When hippocampal slices were loaded with [3H]glycine, resting efflux was detected whereas electrical stimulation failed to evoke [3H]glycine overflow. Neither GDA (0.1 mM) nor N-dodecylsarcosine (0.3 mM) influenced [3H]glycine efflux. Using Krebs-bicarbonate buffer with reduced Na+ for superfusion of hippocampal slices produced an increased [3H]glycine outflow and electrical stimulation further enhanced this release. These experiments speak for glial and neuronal [3H]glycine release in hippocampus with a dominant role of the former one. GDA, however, did not influence resting or stimulated [3H]glycine efflux even when buffer with low Na+ concentration was applied.  相似文献   

7.
The release of l-[3H]cysteine sulfinic acid, l-[3H]glutamatic acid and [3H]GABA from preloaded slices of various rat brain regions in response to either 30 mM K+ or veratrin was investigated. All these aminoacids were released by both depolarizing agents, which did not produce any changes in the spontaneous efflux of [3H]lysine. The K+ stimulated cysteine sulfinate release from superfused slices was found partly Ca2+-dependent in the subiculum, and mainly Ca2+-independent in the hippocampus whereas the K+-elicited glutamate release was partly Ca2+-dependent in both regions. The veratrine-induced release of both cysteine sulfinate and glutamate was blocked by verapamil in a dose-dependent way, although a small verapamil concentration independent release remained. The release pattern of both amino acids was heterogeneous, but roughly correlated among brain regions, except in the subiculum and hypothalamus.These findings demonstrate the releasability of both substances from various brain regions and suggest that those releases occur from different pools, being probably mainly of neuronal origin. They give further evidence that cysteine sulfinate as well as glutamate may serve a neurotransmitter role in the CNS.  相似文献   

8.
—Cortex slices, synaptosomes and C-6 glioma cells were used to study [35S]taurine uptake and its electrically-stimulated release. After exposure to taurine at two concentrations, the synaptosome preparation subsequently derived from the slices contained 41% of the particle-bound taurine and 16% of the total in the tissue. The uptake of [14C]GABA by C-6 glioma cells was inhibited 3-fold more by β-alanine than by l -DABA, whilst synaptosome preparations showed the opposite pattern, l -DABA being 2 or 3 times more effective than β-alanine. [35S]Taurine uptake inhibition by l -DABA was low for synaptosomes and C-6 glioma, whereas β-alanine showed considerable effect on C-6 glioma (41%) and slices of white matter (ependyma; 50%). Synaptosome preparations showed little effect with β-alanine. When 30 min rather than 5 min incubations were employed, β-alanine depressed [35S]taurine uptake by cortex slices by 30%. Taurine was taken up by a calcium-dependent mechanism and subcellular fractionation indicated that the synaptosome fraction showed losses commensurate with the net taurine release when low stimulation currents were used.  相似文献   

9.
—A rapid accumulation of [3H]GABA occurs in slices of rat cerebral cortex incubated at 25° or 37° in a medium containing [3H]GABA. Tissue medium ratios of almost 100:1 are attained after a 60 min incubation at 25°. At the same temperature no labelled metabolites of GABA were found in the tissue or the medium. The process responsible for [3H]GABA uptake has many of the properties of an active transport mechanism: it is temperature sensitive, requires the presence of sodium ions in the external medium, is inhibited by dinitrophenol and ouabain, and shows saturation kinetics. The estimated Km value for GABA is 2·2 × 10?5m , and Vmax is 0·115 μmoles/min/g cortex. There is only negligible efflux of the accumulated [3H]GABA when cortical slices are exposed to a GABA-free medium. [3H]GABA uptake was not affected by the presence of large molar excesses of glycine, l -glutamic acid, l -aspartic acid, or β-aminobutyrate, but was inhibited in the presence of l -alanine, l -histidine, β-hydroxy-GABA and β-guanidinopropionate. It is suggested that the GABA uptake system may represent a possible mechanism for the inactivation of GABA or some related substance at inhibitory synapses in the cortex.  相似文献   

10.
Abstract: GABA uptake and release mechanisms have been shown for neuronal as well as glial cells. To explore further neuronal versus glial components of the [3H]-γ-aminobutyric acid ([3H]GABA) release studies were performed with two different microdissected layers of the olfactory bulb of the rat: the olfactory nerve layer (ONL), consisting mainly of glial cells, and the external plexiform layer (EPL) with a high density of GABAergic dendritic terminals. In some experiments substantia nigra was used as a GABAergic axonal system and the trigeminal ganglia as a peripheral glial model. Spontaneous release of [3H]GABA was always lower in neuronal elements as compared with glial cells. A veratridine-evoked release was observed from the ONL but not from the trigeminal ganglia. Tetrodotoxin (TTX) abolished the veratridine-evoked release from the ONL, which also showed a partial inhibition when high magnesium concentrations were used in a Ca2+-free solution. β-Alanine was strongly exchanged with [3H]GABA from the ONL of animals with the olfactory nerve lesioned and from animals with no lesion; but only a small heteroexchange was found from the external plexiform layer. The β-alanine heteroexchange was able to deplete the releasable GABA store from the ONL of lesioned animals. In nonlesioned animals and the external plexiform layer, the veratridine-stimulated release of [3H]GABA was not significantly reduced after the β-alanine heteroexchange. Stimulation of the [3H]GABA release by high concentrations of potassium elicited a higher release rate from axonal terminals than from dendrites or glia. Neurones and glia showed a similar inhibition of [3H]GABA release when a high magnesium concentration was added to a calcium-free solution. When D-600 was used as a calcium-flux blocker no inhibition of the release was observed in glial cells, whereas an almost complete blockage was found in both neuronal preparations (substantia nigra and EPL). These results provide further evidence for differential release mechanisms of GABA from CNS neurones and glial cells.  相似文献   

11.
The release of [3H]GABA from superfused slices of rat cerebral cortex was investigated in the presence and absence of the GABA-transaminase inhibitor aminooxyacetic acid (AOAA). In the latter case, an ion-exchange column chromatographic technique was used to separate [3H]GABA from tritiated metabolites released with it into the superfusate. In the absence of AOAA, omission of Ca2+ from the superfusion medium reduced the release of [3H]GABA evoked by a 30 mM K+ pulse by 81.6%, whereas in comparable experiments carried out in the presence of AOAA omission of Ca2+ reduced the K+-evoked release by only 23.5%. Similar results were obtained when a 50 mM K+ pulse was used, where-upon omission of Ca2+ reduced [3H]GABA release by 78.7% in the absence of AOAA as compared with a reduction of only 47.9% when AOAA was present. It is concluded that the presence of AOAA decreases the Ca2+-dependence of K+-evoked [3H]GABA release in this system.  相似文献   

12.
Abstract— It has been reported that the release of GABA by high K+ is Ca2+-dependent while release induced by veratridine or electrical stimulation has been frequently found to be independent of Ca2+. To see the source of Ca2+-dependent and independent release of GABA, cortical slices which had accumulated [3H]GABA were exposed to 50 mm -K+ or 50 μm -veratridine for 48min. In the presence of Ca2+ the 2 agents released approx the same amount of [3H]GABA but tetrodotoxin (TTX) abolished release induced only by veratridine, while omission of Ca2+ reduced release induced only by 50mm -K+. Pre-exposure of the slices for 48min to 50mm -K+ in the presence of Ca2+ reduced the second release by 50mm -K+ by 77% and that by veratridine by 74%, suggesting that in the presence of Ca2+ the 2 depolarizing agents release [3H]GABA from the same pool. Pre-exposure to 50mm -K+ in the absence of Ca2+ reduced the second release by 50mm -K+ or by veratridine only by 37 and 27% respectively, indicating that most of the reduction in release was the result of a depletion of releasable [3H]GABA stores. The second exposure to 50mm -K+ in the absence of Ca2+ reduced the evoked release further, while exposure to veratridine in the absence of Ca2+, after depletion of the stores, enhanced release 2.7 times. Electrical stimulation (64 Hz, 2 ms, 40 mA, alternating polarity) during 24min in the presence of Ca” caused an initial 5-fold increase in efflux, which declined subsequently. In the absence of Ca2+, instead of a rapid increase, a slow but smaller increase in the efflux of [3H]GABA was found. TTX almost completely abolished the electrically evoked increase in release. Pre-treatment with 50mm -K+ reduced the electrically evoked release by 94% but electrical stimulation in the absence of Ca2+ after depletion of releasable stores doubled this release. Results suggest that in the presence of Ca2+, high K+, veratridine and electrical stimulation release [3H]GABA from the same Ca2+-dependent store, but in the absence of Ca2+ veratridine and electrical stimulation enhance the release from a Ca2+-independent store, probably as a result of an increased influx of Na+.  相似文献   

13.
GABA is an inhibitory neurotransmitter that appears to be associated with the action of volatile anesthetics. These anesthetics potentiate GABA-induced postsynaptic currents by synaptic GABAA receptors, although recent evidence suggests that these agents also significantly affect extrasynaptic GABA receptors. However, the effect of volatile anesthetics on the extracellular concentration of GABA in the central nervous system has not been fully established. In the present study, rat brain cortical slices loaded with [3H]GABA were used to investigate the effect of halothane and sevoflurane on the extracellular accumulation of this neurotransmitter. The accumulation of [3H]GABA was significantly increased by sevoflurane (0.058, 0.11, 0.23, 0.46, and 0.93 mM) and halothane (0.006, 0.012, 0.024, 0.048, 0072, and 0.096 mM) with an EC50 of 0.26 mM and 35 μM, respectively. TTX (blocker of voltage-dependent Na+ channels), EGTA (an extracellular Ca2+ chelator) and BAPTA-AM (an intracellular Ca2+ chelator) did not interfere with the accumulation of [3H]GABA induced by 0.23 mM sevoflurane and 0.048 mM halothane. SKF 89976A, a GABA transporter type 1 (GAT-1) inhibitor, reduced the sevoflurane- and halothane-induced increase in the accumulation of GABA by 57 and 63 %, respectively. Incubation of brain cortical slices at low temperature (17 °C), a condition that inhibits GAT function and reduces GABA release through reverse transport, reduced the sevoflurane- and halothane-induced increase in the accumulation of [3H]GABA by 82 and 75 %, respectively, relative to that at normal temperature (37 °C). Ouabain, a Na+/K+ ATPase pump inhibitor, which is known to induce GABA release through reverse transport, abolished the sevoflurane and halothane effects on the accumulation of [3H]GABA. The effect of sevoflurane and halothane did not involve glial transporters because β-alanine, a blocker of GAT-2 and GAT-3, did not inhibit the effect of the anesthetics. In conclusion, the present study suggests that sevoflurane and halothane increase the accumulation of GABA by inducing the reverse transport of this neurotransmitter. Therefore, volatile anesthetics could interfere with neuronal excitability by increasing the action of GABA on synaptic and extrasynaptic GABA receptors.  相似文献   

14.
The release of [3H]GABA induced by elevated extracellular potassium (K)o, from thin rat brain cortex slices, has been compared with that of [3H]noradrenaline ([3H]NA), released by the same procedures, both from normal slices, and from slices pre-treated with reserpine and nialamide, [3H]NA being predominantly a vesicular component in the former situation, and a soluble substance in the latter one. 46 mM-(K)o released considerably more [3H]NA from normal than from drug-treated slices, while the release of GABA was about two thirds of the latter. When 4min ‘pulses’ of increasing concentrations of potassium were applied, it was observed that the release of GABA and of [3H]NA from drug-treated slices increased in proportion to (K)o, up to 36-46 mM and then declined considerably with higher (K)o. The dependency of potassium-induced release on the concentration of calcium in the medium, indicated that release of [3H]NA from normal slices was proportional to calcium up to 1.5-2 mM, while that of [3H]NA from drug-treated slices increased up to 0.5 mM-Calcium, and then declined with higher concentrations. GABA release also increased up to 0.5 mM-calcium, but no further changes were observed at higher concentrations. The calcium antagonist D-600 inhibited high (K)o-induced release of [3H]NA from normal slices to a greater extent than that of [3H]GABA or of [3H]NA from drug-treated slices. These results, in which elevated (K)o-induced release of [3H]GABA resembles considerably that of soluble NA, but differs from that of NA present in synaptic vesicles, suggest that release of [3H]GABA also occurs from the soluble cytoplasmic compartment, and that the partial calcium requirement that is found is unrelated to that of transmitter secretion. These findings are also a further indication of the lack of specificity of elevated (K)o as a stimulus for inducing transmitter secretions.  相似文献   

15.
Abstract: γ-Aminobutyric acid (GABA) is thought to be a neurotransmitter in the vetebrate retina. We studied the voltage and Ca2+ dependency of the process of release of [3H]GABA from the retina of the teleost Eugenes plumieri, using a microsuperfusion technique. Two depolarizing agents, veratridine and high potassium, produced a concentration-dependent release of [3H]GABA. The veratridine effect was inhibited in Na+-free solution, but was not affected by 1 μM tetrodotoxin. A substantial inhibition (about 75%) of the veratridine-and potassium-stimulated release of [3H] GABA occurred in Ca2+-free medium. Inhibitors of the Ca2+ channel, such as Mg2+(20 mM), La3+ (0.1 mM), and methoxy-verapamil (4 μM-0.4 mM), inhibited the veratridine-and K+-stimulated release. However, Co2+ and Cd2+ caused a potentiation and no change of the K+-and veratridine-stimulated release, respectively. This release process is apparently specific, since both depolarizing agents were unable to release [3H]methionine, a nontransmitter amino acid, under the same experimental conditions. Autoradio-graphic studies with [3H]GABA, using the same incubation conditions as for the release experiments, showed a high density of silver grains over the horizontal cells with almost no accumulation by amacrine cells and Muller cells. β-Alanine and nipecotic acid were used as two relative specific inhibitors of the glial and neuronal GABA uptake mechanisms, respectively. Only a small heteroexchange with [3H]GABA was found with β-alanine, and no inhibition of the subsequent veratridine-stimulated release. On the other hand, nipecotic acid produced a strong heteroexchange with [3H]GABA and lacked the capacity to induce the veratridine-stimulated release of [3H]GABA. These results suggest a voltage-and Ca2+-dependent neuronal release of [3H]GABA from retina.  相似文献   

16.
The release of previously accumulated [3H]taurine and [14C]GABA from crude synaptosomal (P2) fractions isolated from rat cerebral cortex was studied using a superfusion system. The spontaneous efflux of [3H]taurine and [14C]GABA was stimulated by elevated concentrations of K+ (15–133 mM) in a concentration-dependent manner. This K+-stimulated release of [14C]GABA but not of [3H]taurine was enhanced in the presence of Ca2+. However, addition of 3 mM Ca2+ to the superfusion medium in the presence of the ionophore A 23187 resulted in a stimulation of the release of both [3H]taurine and [14C]GABA. These results are discussed in connection with the cellular localization of tourine in the central nervous system.  相似文献   

17.
The turnover and release of endogenous and labeled GABA were followed in rat cortical slices after incubation with [3H]GABA. High performance liquid chromatography was used to measure endogenous GABA and to separate [3H]GABA from its metabolites. During superfusion with 3 mM K+ the slices rapidly lost their [3H]GABA content while maintaining constant GABA levels. Exposure to 50 mM K+ for 25 min caused an initial rapid rise in the release of both endogenous and [3H]GABA followed by a more rapid decline in the release of the latter. The specific activity of released GABA was two to four times higher than that in the slices. Depolarization lead to a net synthesis of GABA. The GABA-T inhibitor, gabaculine, (5 M) in vitro arrested the metabolism of [3H]GABA and rapidly doubled the GABA content but did not significantly increase the high K+ evoked release of endogenous GABA. In vivo pretreatment with 0.5 mM/kg gabaculine quadrupled GABA content and increased both the spontaneous and evoked release of endogenous GABA but while its Ca2+-dependent release increased by 50%, the Ca2+-independent release was enhanced sevenfold. This large Ca2+-independent release of GABA is likely to have different functional significance from the normal Ca2+-dependent release.  相似文献   

18.
Each of the four convulsants used significantly influenced the release of [3H]-GABA from brain slices, without affecting [3H]GABA uptake. Bicuculline (10?5M, but not 10-fold higher or lower concentrations) potentiated the electrically evoked release of [3H]GABA but not the resting release, whereas metrazol (10?4 to 10?6 M) was found to inhibit resting but not electrically evoked release. Strychnine (10?4 and 10?5 M) and picro-toxin (10?4 M) inhibited electrically evoked release.  相似文献   

19.
The release of [3H]GABA formed from [3H]glutamate in rat hippocampal slices   总被引:1,自引:0,他引:1  
to compare the storage and release of endogenous GABA, of [3H]GABA formed endogenously from glutamate, and of exogenous [14C]GABA, hippocampal slices were incubated with 5 microCi/ml [3,4-3H]1-glutamate and 0.5 microCi/ml [U-14C]GABA and then were superfused in the presence or absence of Ca+ with either 50 mM K+ or 50 microM veratridine. Endogenous GABA was determined by high performance liquid chromatography which separated labeled GABA from its precursors and metabolites. Exogenous [14C]GABA content of the slices declined spontaneously while endogenous GABA and endogenously formed [3H]GABA stayed constant over a 48 min period. In the presence of Ca+ 50 mM K+ and in the presence or absence of Ca2+ veratridine released exogenous [14C]GABA more rapidly than endogenous or endogenously formed [3H]GABA, the release of the latter two occurring always in parallel. The initial specific activity of released exogenous [14C]GABA was three times, while that of endogenously formed [3H]GABA was only 50% higher than that in the slices. There was an excess of endogenous GABA content following superfusion with 50 mM K+ and Ca2+, which did not occur in the absence of Ca2+ or after veratridine. The observation that endogenous GABA and [3H]GABA formed endogenously from glutamate are stored and released in parallel but differently from exogenous labelled GABA, suggests that exogenous [3H] glutamate can enter a glutamate pool that normally serves as precursor of GABA.  相似文献   

20.
Release of [3H]noradrenaline from rat hippocampal synaptosomes was triggered by pulses of 25 mM K+, 5 μM veratridine or superfusion with the Ca2+ ionophore A23187. GABA with bicuculline or chlordiazepoxide depressed the release of [3H]noradrenaline evoked by depolarisation but not by the Ca2+ ionophore. 8 Br-cAMP with [Ca2+]0 0.3 mM had no effect on spontaneous or K+-evoked release of [3H]noradrenaline and completely blocked the effect of chlordiazepoxide and GABA with bicuculline. With [Ca2+]0 1 mM 8 Br-cAMP enhanced spontaneous and K+-evoked release of [3H]noradrenaline, and reversed the depression caused by GABA with bicuculline. GABA alone evoked Ca2+-dependent release of [3H]noradrenaline which was sensitive to [Cl?]0. The results suggest that the GABAA-receptor mediated release of [3H]noradrenaline is due to depolarisation resulting from increased Cl? conductance whereas the depression of depolarisation-dependent release of [3H]noradrenaline by GABAB or benzodiazepine receptors is mediated by a cAMP-dependent decrease in the voltage-dependent Ca2+ conductance.  相似文献   

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