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1.
Binding characteristics of benzodiazepine receptors were studied with synaptosomal and microsomal membranes from rabbit brain invitro utilizing [methyl-3H]diazepam. In synaptosomal membranes, both high and low affinity binding sites were identified with the dissociation constants (Kd) of 4.92 nM and 83.8 nM, respectively. However, only the high affinity site was identified with Kd of 3.96 nM with microsomal membranes. Benzodiazepine binding sites appear to include at least two subpopulations of receptors, one with high affinity and another with low affinity binding site.  相似文献   

2.
An in vivo method for labeling specific benzodiazepine (BDZ) binding sites in brain was developed using intravenously injected [3H]diazepam. Labeling of these sites is blocked by pretreatment of animals with high doses of pharmacologically active BDZs (but not by an inactive BDZ). Using this in vivo binding technique, specific BDZ binding is enhanced by pretreatment of rats with the GAB?A agonist muscimol or with amino-oxyacetic acid, which increases GABA levels in brain.  相似文献   

3.
[3H]Flunitrazepam was used to characterize benzodiazepine binding sites in human brain. The benzodiazepine binding sites exhibited high affinity, pharmacological specificity and saturability in their binding of [3H]flunitrazepam. The dissociation constant (KD) of [3H]flunitrazepam binding was determined by three different methods and found to be in the range of 2–3 nM. The potency of several benzodiazepine analogs to inhibit specific [3H]-flunitrazepam binding invitro correlated well with their potency in several invivo human and animal tests. The density of [3H]-flunitrazepam binding sites was highest in the cerebrocortical and rhinencephalic areas, intermediate in the cerebellum, and lowest in the brain stem and commissural tracts.  相似文献   

4.
Up to now the only drugs known to be able to inhibit the binding of benzodiazepines to rodent brain receptors are members of this chemical family.Zopiclone (RP 27 267), a new drug with a pharmacological profile similar to that of chlordiazepoxide and nitrazepam but entirely different chemically from benzodiazepines, has been tested for its ability to inhibit benzodiazepine binding. In vitro and in vivo studies have shown that zopiclone is able to inhibit the binding of [3H] diazepam and [3H] flunitrazepam to brain receptors. The potency of zopiclone is quite comparable to that of diazepam and nitrazepam in vitro and to that of chlordiazepoxide in vivo.These results confirm the pharmacological similarities existing between zopiclone and the benzodiazepines.  相似文献   

5.
The recent discovery of pharmacologically relevant, high affinity, stereospecific binding sites for the benzodiazepines in the central nervous system (CNS) has rekindled investigations concerning the mechanism of action of these drugs. It has become increasingly clear that elucidation of benzodiazepine action will provide new and important insights into the neurochemical substances of seizure activity, centrally mediated muscle relaxation and anxiety, three major actions of this class of drugs.The existence of a functional receptor for the benzodiazepines, compounds not present in vivo, suggests that endogenous substances exist that serve as natural substrates for this receptor. Furthermore, the characterization of endogenous benzodiazepine receptor ligands affords an opportunity to determine the neurochemical mechanisms underlying the pharmacologic and behavioral effects manifested by the benzodiazepines.Using receptor binding methodology to assay tissue extracts for [3H] diazepam binding inhibitory activity, putative endogenous ligands for the benzodiazepine receptor have been isolated and identified as the purine nucleosides. Compounds such as inosine and hypoxanthine exhibit competitive inhibition of [3H] diazepam binding. The low affinity purinergic inhibition of diazepam binding is consistent with their in vivo concentrations. Distinct structure-activity relationships exist for the purines with subtle structural alterations having marked effects on diazepam binding inhibitory potency. The methylxanthine stimulants, caffeine, theophylline, and theobromine, also competitively inhibit diazepam binding, suggesting that some of their actions may be mediated by the benzodiazepine receptor.The purines also have “benzodiazepine-like” pharmacologic properties, since they have been shown to antagonize pentylenetetrazol induced seizures in mice in a dose dependent manner. Neurophysiologic studies have also shown that iontophoresis of inosine on cultured mouse primary neurons produce neurotransmitter like effects. Furthermore, these effects are similar to those observed with flurazepam, a finding that provides additional evidence for the “benzodiazepine-like” properties of the purines.The preliminary studies outlined below indicate that the purines are good candidates as putative endogenous ligands for the benzodiazepine receptor and provide a foundation for future studies that concern the homeostatic mediation of seizure activity and anxiety.  相似文献   

6.
Avermectin B1a, an antihelminthic macrocyclic lactone, has been previously shown to reduce muscle membrane resistance by stimulating γ-aminobutyric acid-mediated chloride conductance. Since the benzodiazepine receptor is coupled to a receptor for γ-aminobutyric acid and related chloride ionophore, the effects of Avermectin B1a on [3H]diazepam binding to the benzodiazepine receptor were studied. In well-washed membrane fragments from rat cerebral cortex, Avermectin B1a markedly increased the binding of [3H]diazepam to benzodiazepine receptors. This effect was qualitatively similar to that observed with either γ-aminobutyric acid or chloride ion and was partially reversed by the γ-aminobutyric acid receptor antagonist, bicuculline. In contrast to the effects of γ-aminobutyric acid and chloride, the enhanced binding of [3H]benzodiazepine elicited by Avermectin B1a was not reversed by extensive washing of the membrane preparation. Avermectin B1a appears to irreversibly modify benzodiazepine receptors at a γ-aminobutyric acid-chloride recognition site and may be valuable in biochemical studies of the regulation of benzodiazepine receptor function.  相似文献   

7.
Norharman competitively inhibits specific binding of [3H]-diazepam in mouse brain homogenates. In vivo this β-carboline produces a striking rigid catatonic-like appearance which is abolished by diazepam. It also causes a rapid tremor but has little anticonvulsant effect. Measurement of in vivo concentrations and receptor occupancy demonstrate that these biological effects occur at doses which occupy a large proportion of benzo-diazepine receptors. It may represent a ligand of the benzo-diazepine receptors whose effects are opposite those of diazepam.  相似文献   

8.
The ability of a series of tetrahydroisoquinoline (THIQ) alkaloids to inhibit the binding of radioligands to catecholamine receptors in the CNS has been examined. (+) THP was the most potent inhibitor of [3H] dihydroalprenolol binding to β-adrenergic receptors and of [3H] haloperidol to dopaminergic receptors and was the least potent inhibitor of [3H] WB-4101 binding to α-adrenergic receptors. Other THIQ alkaloids examined such as salsoline, salsolinol, and reticuline were less potent than (+) THP in inhibiting radioligand binding to β-adrenergic and dopaminergic receptors, and more potent than (+) THP in inhibiting radioligand to α-adrenergic receptors. The marked potency of (+) THP in inhibiting radioligand binding to β-adrenergic receptors (IC50 ~ 10?7 M) was confirmed by the potency of this compound in inhibiting (?) isoproternol elicited accumulations of cyclic AMP in brain slice preparations. These data indicate that, if formed invivo during alcohol consumption, THIQ derivatives such as THP may affect catecholamine neurons in the CNS.  相似文献   

9.
Properties of [3H] diazepam binding to rat peritoneal mast cells   总被引:6,自引:0,他引:6  
Benzodiazepine binding to rat peritoneal mast cells was investigated using [3H] diazepam as the radioactive probe. The specific binding of [3H] diazepam reaches equilibrium within 10–15 min, is saturable and is linear with cell number. Scatchard analysis of equilibrium binding indicates the existence of only one class of binding sites with a KD = 90 ± 10 nM and Bmax of 261 ± 60 fmoles/106 cells. The binding of [3H] diazepam is temperature dependent, the highest amount is bound at 0°C and shows a pH-optimum between pH 6.8 – 7.4. The binding of [3H] diazepam is reversible with t12 = 1.2 ± 0.2 min. Based on the relative potency of clonazepam and Ro5-4864 in displacing the specific [3H] diazepam binding, the binding sites in the mast cell are similar to those in the peripheral tissues like lung, liver, and kidney and are different from those in the brain. These data indicate that the mast cells have benzodiazepine binding sites which are of the peripheral type.  相似文献   

10.
High affinity and saturable binding sites for [3H] imipramine have been demonstrated on human platelet membranes. These binding sites appear to be specific for tricyclic antidepressants and their pharmacologically-active metabolites. In contrast, inactive tricyclic compounds such as the parent iminodibenzyl and iminostilbenes do not inhibit [3H] imipramine binding. The binding of [3H] imipramine to human platelets is of high affinity (Kd ? 1.4nM), saturable (Bmax ? 625 fmols/mg prot), and sensitive to proteolytic degradation. The effects of various drugs and neurotransmitter agonists and antagonists suggests that these binding sites are pharmacologically distinct from the previously reported binding of tricyclic antidepressants to alpha-adrenergic, muscarinic-cholinergic, and histaminergic receptors. The binding characteristics of [3H] imipramine to platelets is similar to that in rat and human brain and may thus serve as a useful model in elucidating the pharmacological and physiological significance of these binding sites.  相似文献   

11.
Properties of [3H]diazepam binding sites on rat blood platelets   总被引:8,自引:0,他引:8  
J K Wang  T Taniguchi  S Spector 《Life sciences》1980,27(20):1881-1888
Intact rat blood platelets are shown to possess benzodiazepine binding sites of the peripheral type, binding of [3H]diazepam being strongly inhibited by Ro5-4864 (Ki = 3.6 ± 0.5 nM) but only weakly inhibited by clonazepam (Ki = 35.1 ± 18.2 μM). Binding of [3H]diazepam is specific and saturable. Scatchard analysis reveals a single class of binding sites with KD = 14.7 ± 1.0 nM and Bmax = 564 ± 75 fmoles/108 platelets. The Hill coefficient is 0.94, indicating a lack of binding site heterogeneity or negative cooperativity. Binding reaches equiliibrium at 6 min, with k+1 = 2.9 × 107 M?1 min?1, and is rapidly reversible (t12 = 2.2 min with K?1 = 0.315 min?1. KD derived from the rate constants agrees with that estimated by Scatchard analysis. KD of the crude membrane fraction of platelets is also close to that of intact platelets. Binding of [3H]diazepam is linear with platelet number (between 0.25–2 × 108 platelets), is temperature sensitive with maximum binding at 0°C, and has a broad optimal pH range between pH 5–9.  相似文献   

12.
[3H]Yohimbine, a potent α2-adrenergic antagonist, was used to label the α2-adrenergic receptors in membranes isolated from human platelets. Binding of [3H]yohimbine to platelet membranes appears to have all the characteristics of binding to α2-adrenergic receptors. Binding reached a steady state in 2–3 min at 37°C and was completely reversible upon the addition of excess phentolamine or yohimbine (both at 10?5 M;t12 = 2.37 min). [3H]Yohimbine bound to a single class of noncooperative sites with a dissociation constant of 1.74 nM. At saturation, the total number of binding sites was calculated to be 191 fmol/mg protein. [3H]Yohimbine binding was stereo-specifically inhibited by epinephrine: the (?) isomer was 11-times more potent than the (+) isomer. Cathecholamine agonists competed for the occupancy of the [3H]yohimbine-binding sites with an order of potency: clonidine > (?)-epinephrine > (?)-norepinephrine >> (?)-isoproterenol. The potent α2-adrenergic antagonist, phentolamine, competed for the sites whereas the β-antagonist, (±)-propanolol, was a very weak inhibitor. 0.1 mM GTP reduced the bindng affinity of the agonists, while producing no change in antagonist-binding affinity. Dopamine and serotonine competed only at very high concentrations. Similarly, muscarinic cholinergic ligands were also poor inhibitors of [3H]yohimbine binding. These results suggest tht [3H]yohimbine binding to human platelet membranes is specific, rapid, saturable, reversible and, therefore, can be successfully used to label α2-adrenergic receptors.  相似文献   

13.
When murine sarcoma virus-transformed cells are labeled with [3H]lysine invivo for various periods, 5 of 6 isoaccepting lysine tRNAs separable by RPC-5 chromatography are aminoacylated in 1 hr to the same extent that they are aminoacylated invitro. The sixth isoacceptor, tRNA6Lys, is not aminoacylated invivo to a measurable extent in 1 hr, although it is present in the tRNA prepared from the cells. All six isoacceptors are aminoacylated with [3H]lysine invivo when the labeling period is 2 or 3 hr. These results further show that invitro correlations of the amount of tRNA4Lys with cell division accurately reflect the situation invivo. Results of differential centrifugation indicate that tRNA6Lys occurs in mitochondria.  相似文献   

14.
The influence of GABA on the affinity of flunitrazepam (FLU) for benzodiazepine receptor subtypes (type I and II) was studied by measurement of the competitive inhibition of [3H]FLU and [3H]propyl beta-carboline-3-carboxylate ([3H]PCC) binding. When assays were carried out at 0°C using a low concentration (0.040 nM) of [3H]PCC so that the type I receptors were selectively labelled, no significant effect of GABA (10?4 M) on the FLU[3H]PCC competition curve was detected. In contrast, when assays were carried out at 0°C using [3H]FLU or a high concentration of [3H]PCC to achieve [3H]ligand receptor occupancy of both type I and type II receptors, GABA (10?4 M) caused a significant increase in the affinity of FLU as measured by FLU[3H]FLU and FLU[3H]PCC competition experiments. Collectively, these data suggest that the influence of GABA on benzodiazepine receptor binding is mediated, primarily, by the type II receptor. It was also noted that the PCC[3H]FLU competition curve had a Hill coefficient of approximately 1 at 37°C as compared to the results of experiments at 0°C during which a Hill coefficient of approximately 0.7 was calculated.  相似文献   

15.
Denzimol, a new anticonvulsant drug with a pharmacological profile similar to that of phenytoin, enhances the ataxic and antimetrazol activity of diazepam in rats without affecting its activity against picrotoxin-induced seizures. In vivo and ex vivo denzimol enhances the binding of 3H-flunitrazepam in cortex and in hippocampus but not in cerebellum.The possibility of this increase in the number of benzodiazepine binding sites contributing in some way to enhancement of the depressive and anticonvulsant activity of diazepam is discussed.  相似文献   

16.
Ethyl beta-carboline-3-carboxylate has recently been isolated from human urine and it was proposed that derivatives of this compound might be related to an endogenous ligand for benzodiazepine receptors. In the present study we investigated high-affinity binding of [3H]propyl beta-carboline-3-carboxylate ([3H]PrCC) to rat brain membranes. [3H]PrCC binds specifically and with high affinity (half-maximal binding at ca. 1nM) to rat brain membranes. The regional and subcellular distributions of specific [3H]PrCC binding are similar, but not identical, to the distributions of [3H]flunitrazepam or [3H]-diazepam binding. The total numbers of binding sites labelled by [3H]PrCC and [3H]flunitrazepam in rat cerebellum are closely similar, and both ligands bind to cerebellar membranes in a mutually exclusive way. The pharmacological selectivity of [3H]PrCC and [3H]diazepam binding is almost identical. Binding of [3H]PrCC like binding of [3H]diazepam, can be increased in vitro by muscimol, GABA and SQ 20.009. Although subtle differences in binding characteristics were observed, these results indicate that [3H]PrCC and benzodiazepines bind to a common recognition site on benzodiazepine receptors.  相似文献   

17.
A series of nucleoside transport inhibitors has been tested for their ability to displace [3H]diazepam binding to CNS membranes. No correlation between their potency as [3H]adenosine uptake blockers and as inhibitors of [3H]diazepam binding was found, either in rat or guinea-pig brain tissue. Dipyridamole, a potent adenosine transport inhibitor interacted strongly (Ki = 54 nM) with peripheral-type benzodiazepine binding sites (“acceptor sites”) and was 4–5 fold weaker in displacing [3H]methylclonazepam and [3H]Ro15-1788, ligands selective for the specific central benzodiazepine “receptor”. Unlike the benzodiazepines, dipyridamole had no anticonvulsant action against metrazole-induced convulsions in mice. Ro5-4864, a benzodiazepine which selectively interacts with the peripheral-type benzodiazepine binding site, was approximately equipotent with diazepam in inhibiting [3H]adenosine uptake in brain tissue. These results do not support the idea of a very close link between high-affinity central binding sites for clinically-active benzodiazepines and the adenosine uptake site. The possibility of a connection between benzodiazepine “acceptor” sites and the membrane nucleoside transporter is discussed.  相似文献   

18.
P.J. Marangos  J. Patel 《Life sciences》1981,29(16):1705-1714
β-Carbolines are inhibitors of [3H] diazepam binding with the most potent inhibitor being β-carboline-3-carboxylate ethyl ester (β-CCE). In this report the binding of [3H] β-CCE to extensively washed rat forebrain membranes is characterized. [3H] ß-CCE binds with high affinity (KD = 1.4 nM) to an apparently homogenous population of benzodiazepine receptor. The rank order of potency for inhibition of [3H] ß-CCE binding by different benzodiazepines is clonazepam > diazepam > chlordiazepoxide, which is similar to that observed for inhibition of [3H] diazepam binding. In marked contrast to [3H] diazepam, the binding of [3H] ß-CCE is not modulated by GABA since concentrations of GABA as high as 10?3 M had no effect. [3H] ß-CCE is also less potent than [3H] diazepam in its interaction with the peripheral type kidney benzodiazepine receptor indicating that this ligand has a higher degree of specificity for the central brain type benzodiazepine receptor.  相似文献   

19.
Various enzymes and proteins reagents inhibited [3H]prostaglandin F2α binding to bovine corpus luteum cell membranes. Studies were undertaken (a) to explore further on the dose response relationships with the above agents, (b) to investigate the mechanism of inhibition of binding with respect to receptor affinities and number and (c) to assess whether decreased binding reflected changes in receptors and/or other membrane components.Preincubation of membranes with phoshpolipase A, trypsin, pronase, lipase, tetranitromethane, dinitrofluorobenzene, acetic anhydride and N-ethylmaleimide resulted in moderate to drastic inhibitions of [3H]prostaglandin F2α binding. The dose-dependent inhibition of binding by enzymes, but not by protein reagents (except for N-ethylmaleimide), exhibited a biphasic pattern: at lower concentrations, the loss of binding was low and relatively plateaued, but at higher concentrations, the losses were dramatic. The drastic reduction in binding by trypsin was due to destruction rather than solubilization of receptors from membranes. Phospholipase A was intrinsically more effective than phospholipases C and Ca2+ was not required for its inhibition of [3H]prostaglandin F2α binding. Protein reagents inhibition of binding was differently influenced by added Ca2+ i.e., loss of binding increased with some (N-ethylmaleimide), decreased with others (tetranitromethane, dinitrofluorobenzene and azobenzene sulfenylbromide). These results are interpreted to indicate that Ca2+ induced conformational changes in membranes which may result in exposure of new groups and burying of already exposed modifiable groups.Treatment of membranes wiht trypsin and N-ethylmaleimide selectively abolished high affinity prostaglandin F2α receptors. The low affinity receptors were present but their numbers as well as their affinity were decreased. Lipase, phospholipase A, acetic anhydride, dinitrofluorobenzen and tetranitromethane appear to decrease binding by totally abolishing all prostaglandin F2α receptors or by severely reducing their affinities.The occupancy of receptors by prostaglandin F2α afforded considerable protection against trypsin, phospholipase A, lipase and dinitrofluorobenzene. These data indicated that the inhibition of binding by the above agents, at least in part, can be attributable to changes in receptor sites alone.  相似文献   

20.
The transfer of phospholipids from the endoplasmic reticulum to the inner mitochondrial membrane was investigated by pulse labeling invivo. With [3H]glycerol microsomal phosphatidylethanolamine and phosphatidylcholine were rapidly labeled during the first 30 min; while maximum incorporation into the inner mitochondrial membrane occurred only after about 5 hours. It appears that the invivo transfer of these phospholipids between the two membrane compartments is a relatively slow process.  相似文献   

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