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H Schoemaker

Publications and source records attributed to H Schoemaker.

At least 55 records · Page 3Linked to original sources

[3H]-5-methoxytryptoline is not actively accumulated by rabbit platelets.

5-Methoxytryptoline (5-MeO-TLN, 6-methoxytetrahydro-beta-carboline) inhibits with high affinity [3H]-imipramine binding to the serotonin transporter in platelets. To evaluate whether 5-MeO-TLN is a substrate for the serotonin transporter, the accumulation of [3H]-5-MeO-TLN into rabbit platelets was studied in vitro. At short incubation times (5 min), [3H]-5-MeO-TLN accumulation was temperature-sensitive, but not saturable over a concentration range from 0.06 mumol/l to 10 mumol/l. Moreover, [3H]-5-MeO-TLN uptake was not affected by 100 mumol/l ouabain, its structural analogs tryptoline and 5-hydroxytryptoline, nor by the serotonin uptake inhibitors imipramine and citalopram. After longer incubation times (60 min), [3H]-5-MeO-TLN accumulation at 0 degree C approached that seen at 37 degrees C and temperature-sensitive [3H]-5-MeO-TLN uptake could no longer be observed. It is concluded that temperature-sensitive accumulation of [3H]-5-MeO-TLN is not mediated by the serotonin transporter and most likely represents a passive, diffusional process, the rate of which is temperature-dependent. The present studies thus confirm the hypothesis that 5-MeO-TLN affects [3H]-imipramine binding in platelets through a competitive mechanism and not via an allosteric interaction mediated through the substrate recognition site of the macromolecular complex of serotonin transporter.

Animals↗

Changes in [3H]5-HT uptake and [3H]imipramine binding in platelets after chlorimipramine in healthy volunteers. Comparison with maprotiline and amineptine.

In the platelets of normal healthy volunteers (n = 8) taking chlorimipramine (50 mg/day) for 1 week, the saturable uptake of [3H]5-hydroxytryptamine (5-HT) was fully inhibited at the end of the week, but returned to control values after 2 weeks washout. The Bmax of [3H]imipramine binding was decreased by 63% at the end of the treatment and remained significantly decreased below control values after 1 week washout, whereas the Kd values were increased at the end of the treatment, but had returned to baseline values after 1 week washout. The time course of recovery following the administration of chlorimipramine showed some variation between subjects, but it was necessary to wait up to 4 weeks of washout before the Bmax of [3H]imipramine returned to baseline levels. In contrast, neither 1-week treatment with maprotiline (50 mg/day) nor with amineptine (100 mg/day) changed the parameters of [3H]5-HT uptake or [3H]imipramine binding in platelets from healthy volunteers. These results support the following conclusions. (1) [3H]Imipramine binding in platelets can be down-regulated by relatively low, subtherapeutic doses of chlorimipramine. (2) It is possible to dissociate [3H]imipramine binding parameters from [3H]5-HT uptake because the time course of recovery was clearly different, indicating that [3H]imipramine labels a site linked with, but different from, the 5-HT recognition site in the transporter complex. (3) A washout of antidepressants of 4 weeks may be needed when studying the parameters of [3H]imipramine binding in platelets from depressed patients if the previous medication involved chlorimipramine. For antidepressants like maprotiline or amineptine, that act through mechanisms other than inhibition of 5-HT uptake, the time of washout appears to be less critical, although it is not possible to rule out the existence of some secondary modifications influencing the 5-HT transporter complex.

Adult↗

Calcium channel receptor binding studies for diltiazem and its major metabolites: functional correlation to inhibition of portal vein myogenic activity.

Pharmacologically distinct but allosterically interacting calcium channel antagonist binding sites have recently been identified using radiolabeled dihydropyridine derivatives (e.g., [3H]nitrendipine) and the benzothiazepine [3H]diltiazem. Whereas the functional significance of the dihydropyridine calcium channel antagonist receptor is well documented, it remains to be established whether drug interactions with the recognition site for [3H]diltiazem within the slow calcium channel or the allosteric interaction of the diltiazem binding site with the dihydropyridine receptor are of physiological significance. In a study of structure-activity relationships, we therefore examined the effects of diltiazem and five of its analogs on the binding of [3H]diltiazem and [3H]nitrendipine to the rat cerebral cortex. In parallel, we studied the effects of these drugs on the spontaneous myogenic contractions of the rat portal vein, a functional test of calcium antagonism. The diltiazem analogs used in this study correspond to its major metabolites in humans, i.e., N-desmethyl-(MA, desacetyl-(M1), N-desmethyl, desacetyl-(M2), O-desmethyl, desacetyl (M4), N-desmethyl, O-desmethyl, desacetyl-diltiazem (M6). Unlabeled diltiazem inhibited [3H]diltiazem binding at 37 degrees C with a pIC50 [-log IC50 (M)] of 6.87. pIC50 values for M1, MA, M2, M4, and M6 were 6.72, 6.49, 6.03, 5.51, and 5.33, respectively. pIC50 values for these drugs on [3H]diltiazem binding were significantly correlated (p less than 0.01) with their pEC50 values for enhancement of [3H]nitrendipine binding to cerebral cortical membranes at 37 degrees C. Maximal enhancement of [3H]nitrendipine binding by diltiazem, M1, MA, M2, M4, and M6 was 73, 50, 9.7, 11, 12, and 52%, respectively.(ABSTRACT TRUNCATED AT 250 WORDS)

Allosteric Regulation↗

Temperature dependence of drug interaction with the platelet 5-hydroxytryptamine transporter: a clue to the imipramine selectivity paradox.

Although [3H]imipramine is a selective radioligand for the 5-hydroxytryptamine (5-HT) transporter in human platelets, its affinity for binding to the 5-HT transporter complex at 0 degrees C (0.6 nM) is significantly higher than its potency for inhibition of [3H]5-HT uptake at the physiological temperature of 37 degrees C (Ki = 29 nM). As this apparent discrepancy could be related to the assay temperature, we studied the thermodynamics of drug interaction with the 5-HT transporter at assay temperatures between 0 degrees C and 37 degrees C, using as radioligands [3H]imipramine (0 degrees C and 20 degrees C) and [3H]paroxetine (20 degrees C and 37 degrees C), a newly available probe for the 5-HT transporter. At 20 degrees C, Ki values of 14 tricyclic and nontricyclic drugs for inhibition of [3H]imipramine and [3H]paroxetine binding to human platelet membranes were highly significantly correlated (r = 0.98, p less than 0.001), validating the use of these two radioligands to study the 5-HT transporter over a temperature range larger than was previously possible with [3H]imipramine alone. The affinity of imipramine for the 5-HT transporter is progressively enhanced with decreasing incubation temperature, thus favoring the selectivity of [3H]imipramine for the 5-HT transporter at 0 degrees C. At 37 degrees C, the Ki of imipramine for inhibition of [3H]paroxetine binding is 32 nM, and equals its Ki value for inhibition of 5-HT uptake into human platelets. With the exception of chlorimipramine, other tricyclic 5-HT uptake inhibitors showed a temperature sensitivity in their interaction with the 5-HT transporter similar to that of imipramine.(ABSTRACT TRUNCATED AT 250 WORDS)

Biological Transport, Active↗

Specific regional differences of in vitro beta-endorphin metabolism in schizophrenics.

Incubation of beta-endorphin (beta-E; 25 microM) with twice-washed brain membrane homogenates leads to the formation of several biologically active peptide fragments which have been shown to be present in the brain. Based on clinical studies, some of these endorphin fragments have been shown to be active in patients with neuropsychiatric disease states. We studied the regional specificity of beta-E metabolism in frontal cortex versus putamen from sex and age matched controls versus subjects with a diagnosis of schizophrenia. The present study demonstrates that cortical tissue has a lower rate of gamma-endorphin production from beta-E and a similar rate of des-tyrosine-gamma-endorphin production. Significant differences were noted in the production of other active fragments (beta-E (1-16, 2-16, 6-21)). These results support the hypothesis that there is a regional specificity of beta-E metabolism in the brain, and these differences may have important functional consequences to secreted peptides and important clinical consequences in schizophrenia.

Brain↗

Antidepressant-binding sites in brain and platelets.

[3H]Imipramine and [3H]paroxetine label with high affinity a site associated with the serotonin transporter in brain and platelets. The maximum binding capacity (Bmax) of [3H]imipramine in platelets is reduced in untreated depressed patients, and it may represent a useful biological marker in depression. The existence of an endogenous ligand acting on the [3H]imipramine-recognition site to modulate the serotonin transporter has been proposed by several laboratories. 5-Methoxytryptoline inhibits [3H]imipramine binding and [3H]serotonin uptake in the nanomolar range. This compound has been reported to occur in the pineal gland, but probably only in trace amounts. While the physiological relevance of 5-methoxytryptoline or a close analogue remains an open question, the possibility exists that the 'endocoid' for the [3H]imipramine-recognition site plays a role in the pathogenesis of depression.

Animals↗

[3H]diltiazem binding to calcium channel antagonists recognition sites in rat cerebral cortex.

The presence of a diltiazem recognition site within the macromolecular complex of the calcium channel in the brain had been hypothesized on the basis of binding studies with [3H]dihydropyridine calcium channel antagonists. In the present study, we therefore characterized [3H]diltiazem binding sites in the rat cerebral cortex. Saturable high affinity (Kd = 50-170 nM) [3H]diltiazem binding to the rat cerebral cortex was stereospecifically inhibited by the enantiomers of diltiazem according to their activity as calcium channel antagonists and modulators of [3H]dihydropyridine binding. An association between the [3H]diltiazem binding site and the calcium channel was further corroborated by the effects of chemically heterogeneous calcium channel antagonists on [3H]diltiazem binding. Dihydropyridines appeared to allosterically affect [3H]diltiazem binding according to their pharmacological effects; e.g. at 37 degrees C nitrendipine enhanced whereas the calcium agonist Bay K 8644 failed to affect [3H]diltiazem binding at concentrations fully inhibiting [3H]nitrendipine binding. The effect of nitrendipine may, at least in part, be explained by an increase in the affinity of [3H]diltiazem.

3-Pyridinecarboxylic acid, 1,4-dihydro-2,6-dimethy↗

Sodium dependent [3H]cocaine binding associated with dopamine uptake sites in the rat striatum and human putamen decrease after dopaminergic denervation and in Parkinsons disease.

The binding of radiolabelled cocaine, an inhibitor of dopamine uptake, to the post-mortem human putamen was studied and compared to that in the rat striatum. Saturation analysis of [3H]cocaine binding to the human putamen revealed the presence of a high affinity component of binding with a Kd of 0.21 mumol/l and a Bmax of 1.47 pmol/mg protein. In addition a low affinity component (Kd = 26.4 mumol/l) was demonstrated, having a Bmax of 42.2 pmol/mg protein. Also in the rat striatum [3H]cocaine binding was both of high affinity (Kd = 0.36 mumol/l, Bmax = 5.56 pmol/mg protein) and low affinity (Kd = 25.9 mumol/l, Bmax = 35.6 pmol/mg protein). A pharmacological characterisation of high affinity [3H]cocaine binding to rat striatal membranes clearly indicates an association with the neuronal dopamine transporter. The IC50 values of 8 selected drugs for inhibition of [3H]cocaine binding in the rat striatum were highly significantly correlated with their potency to inhibit [3H]dopamine uptake into slices of the rat striatum. [3H]Cocaine binding was stereospecifically inhibited by (+)nomifensine and (+)diclofensine which were 50-80-fold more active than their respective (-)isomers. Drugs with dopamine releasing activity were more potent at inhibiting [3H]dopamine uptake than at competing for the high affinity site of [3H]cocaine binding. A highly significant correlation was found between IC50 values for [3H]cocaine binding in the rat striatum and the human putamen. Further evidence in support of an association of [3H]cocaine binding in the rat striatum with the dopamine transporter was obtained from lesion studies. Thus, intranigral 6-hydroxydopamine administration produced a marked (67%) decrease in striatal [3H]cocaine binding.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Non-benzodiazepine anxiolytics: potential activity of phenylpiperazines without 3H-diazepam displacing action.

Four phenylpiperazine derivatives exhibited an activity similar to benzodiazepines and meprobamate in the 4-plate test. One of these (compound IV) demonstrated anxiolytic like activity in a step-down avoidance technique, in electroshock induced aggression and in the staircase test. In contrast to benzodiazepines, compound IV was not anticonvulsant, myorelaxant or sedative. Confirmation of the anxiolytic activity of compound IV in animal models was obtained in 3 separate clinical trials in anxious patients. The mechanism of action of these phenylpiperazines appears to be different from the benzodiazepines as they do not displace 3H-diazepam binding nor do they interact with other elements of the GABA receptor macromolecular complex. Instead, compound IV interacts with both dopaminergic and serotoninergic neuron systems. Thus, from this data it would appear that an activity at the benzodiazepine recognition site is not obligatory for anxiolytic activity in man or in animals models.

Aggression↗

Covalent enzyme-RNA complex: a tRNA modification that prevents a covalent enzyme interaction also prevents aminoacylation.

Previous work indicates that aminoacyl-tRNA synthetases make a transient covalent adduct with cognate tRNAs, through Michael addition of an enzyme nucleophile to the carbon-6 position of uridine 8. We report the selective reduction of the 5,6 double bond of 4-thiouridine at position 8 in Escherichia coli tyrosine tRNA, so as to prevent formation of the presumed covalent enzyme-nucleic acid adduct. The completely reduced tRNA molecules are inactivated for aminoacylation. With partial reduction, a mixed pool of active and inactive molecules is created and the degree of inactivation exactly matches the extent of 4-thiouridine reduction. The active molecules recovered from this mixed pool are specifically unaltered at position 8. The results are consistent with the view that the covalent enzyme-RNA adduct is an obligatory intermediate for aminoacylation of this tRNA.

Borates↗

Tryptamine, a substrate for the serotonin transporter in human platelets, modifies the dissociation kinetics of [3H]imipramine binding: possible allosteric interaction.

Tricyclic antidepressants and nontricyclic serotonin (5-hydroxytryptamine) uptake blockers monophasically inhibit [3H]imipramine binding in human platelets. Similarly, serotonin and tryptamine inhibit the binding of [3H]imipramine in the low micromolar range and with a pseudo-Hill coefficient near unity. Dissociation of the [3H]imipramine receptor complex in the presence of uptake inhibitors follows first-order kinetics with a half-life of approximately 60 min. Although serotonin and tryptamine do not decrease [3H]imipramine binding when added under equilibrium conditions, simultaneous addition of serotonin or tryptamine with serotonin uptake inhibitors decreases the rate of ligand-receptor dissociation in a concentration-dependent manner. These data suggest a common site of action for serotonin, which is the substrate of the transporter system, and of tryptamine, its nonhydroxylated analog. This hypothesis is supported by the identification of a high-affinity (Km = 0.55 microM), saturable, and temperature-dependent uptake of [3H]tryptamine in human platelets. Uptake of [3H]tryptamine was inhibited potently by imipramine and nontricyclic serotonin uptake inhibitors with a potency similar to that observed for [3H]serotonin uptake. These data support the hypothesis that in platelets, [3H]imipramine, tricyclic, and nontricyclic serotonin uptake inhibitors bind to a common recognition site that is associated with the serotonin transporter but that differs from the substrate recognition site of the carrier through which serotonin and tryptamine exert a heterotropic allosteric modulation on [3H]imipramine binding.

Allosteric Regulation↗

5-Methoxytryptoline, a competitive endocoid acting at [3H]imipramine recognition sites in human platelets.

5-Methoxytryptoline potently inhibits [3H]imipramine binding to membranes from the cerebral cortex and platelets. Since 5-methoxytryptoline, which appears to occur endogenously with particularly high levels in the human pineal gland, also inhibits 5-hydroxytryptamine (5-HT, serotonin) uptake, it should be considered as a putative endogenous ligand modulating 5-HT transport. As the 5-HT transporter complex comprises the imipramine and the substrate recognition sites, which interact allosterically, it was essential to define the mechanism of inhibition of [3H]imipramine binding by 5-methoxytryptoline. Human platelets show an active and saturable uptake of 5-HT and tryptamine. The uptake of both substrates appears to be mediated by the same carrier and it is inhibited by 5-methoxytryptoline at submicromolar concentrations. 5-HT and tryptamine inhibit [3H]imipramine binding in human platelets with a Hill slope for inhibition close to unity and IC50 values of 3,265 and 3,475 nM, respectively. This inhibition is, however, not competitive because both 5-HT and tryptamine significantly decrease the rate of [3H]imipramine-receptor dissociation. Although 5-methoxytryptoline potently inhibits [3H]imipramine binding (IC50 = 44 nM) in human platelets with a Hill slope of unity, it does not affect the receptor-ligand dissociation rate of [3H]imipramine even at concentrations up to 100 microM. The present experiments show that 5-methoxytryptoline, in spite of its chemical similarity to the indoleamine transporter substrates, interacts with the imipramine receptor through a mechanism of competitive inhibition. This conclusion is supported by a selective effect of 5-methoxytryptoline on the Kd of [3H]imipramine binding.(ABSTRACT TRUNCATED AT 250 WORDS)

Binding, Competitive↗

Identification of calcium-channel receptors in intact animals.

In this study, we demonstrate the in vivo labeling by [3H]nitrendipine ([3H]NTD) of peripheral tissues and the brain in Sprague-Dawley rats. Specific binding is decreased in a dose-dependent manner by nifedipine, with a mean inhibitory dose of 2-10 mg/kg (i.p.). Thin-layer chromatography of the particulate-bound radioactivity reveals that the predominant tritiated drug bound in the left ventricle and the cerebral cortex is [3H]NTD, whereas metabolites constitute the main species in the liver. Peak radioactivity is seen at 15 min following an intravenous injection of [3H]NTD. Highly perfused tissues such as the heart, brain, and lung have significant [3H]NTD binding. In contrast to previously reported in vitro studies, [3H]NTD binding is low in the aorta, skeletal muscle, and ileum. This in vivo animal model is suitable for pharmacokinetic and physiological studies of the calcium channel in intact animals.

Animals↗

5-methoxytryptoline and close analogs as candidates for the endogenous ligand of the 3H-imipramine recognition site.

3H-Imipramine labels with high affinity a site associated with the macromolecular complex of the serotonin transporter in brain and platelets. There is a good correlation between the potencies of drugs at inhibiting 3H-5HT uptake and at inhibiting 3H-imipramine binding. Dissociation experiments indicate that the site labelled by 3H-imipramine is not identical with the substrate recognition site of the serotonin transporter and thus, it appears that 3H-imipramine labels a modulatory site for the 5HT transport system. On this basis, the existence of an endacoid acting on the 3H-imipramine recognition site to modulate 5HT uptake is discussed. The possibility that 5-methoxytryptoline or a closely related analog may be the endogenous ligand for the 3H-imipramine recognition site is analysed on the basis of the fact that 5-methoxytryptoline is a potent inhibitor of 3H-imipramine binding that also inhibits 3H-5HT uptake.

Binding, Competitive↗

[3H]Imipramine binding and [3H]5HT uptake in human blood platelets: changes after one week chlorimipramine treatment.

In platelets of normal volunteers taking chlorimipramine (50 mg/day) for one week, the saturable uptake of [3H]5HT was fully inhibited at day 8, but returned to control values at day 15. The Bmax of [3H]imipramine binding was decreased by 65% at day 8 and remained significantly below control values at day 15. If the present findings can be extrapolated to other antidepressants, the reported decreases in [3H]imipramine binding in depression may partly reflect residual treatment effects. It cannot be excluded that, in depression, the platelet [3H]imipramine receptor already is down-regulated maximally which would preclude a further down-regulation due to antidepressant drug therapy.

Adult↗

5HT-receptor antagonist properties of SCH 23390 in vascular smooth muscle and brain.

The dopamine D1-receptor antagonist SCH 23390 was a potent competitive antagonist of 5HT-induced vasoconstriction in the isolated perfused rat tail artery preparation (pA2 8.17) but a very weak antagonist of phenylephrine-induced responses (pA2 5.94). In rat brain cerebral cortex, SCH 23390 inhibited 5-HT2-sensitive [3H]spiperone binding with an IC50 of 112 nM. Binding of [3H]5HT to 5HT1 receptors in the cortex was inhibited by SCH 23390 with an IC50 of 2.49 microM. SCH 23390 has significant affinity for 5HT receptors in addition to the reported selective dopamine D1-receptor antagonist properties.

Animals↗