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L Oreland

Publications and source records attributed to L Oreland.

At least 55 records · Page 3Linked to original sources

Transcription factor binding to the core promoter of the human monoamine oxidase B gene in the cerebral cortex and in blood cells.

Many studies show that monoamine oxidase B in blood cells is a biological marker for personality characteristics such as sensation seeking. The mechanism underlying this association is so far not explored. In the present study we have performed electrophoretic mobility-shift assays to investigate the pattern of protein binding to a 150 bp fragment of the proximal 5'-flanking region of the human monoamine oxidase B gene. We compared the pattern using nuclear extracts from human brain and lymphocytes. Interestingly, a correlation was observed between monoamine oxidase B enzyme activity in blood cells (platelets) and the binding pattern of two uncharacterized transcription factors. These data are well in line with the long-standing notion that interindividual differences in platelet monoamine oxidase may represent differences in expression of the enzyme rather than genotypic variation.

Blood Platelets↗

Regulation of methionine adenosyltransferase catalytic activity and messenger RNA in SH-SY5Y human neuroblastoma cells.

The human neuroblastoma cell line SH-SY5Y was used to study the regulation of methionine adenosyltransferase (MAT II; E.C.2.5.1.6.) catalytic activity and transcript levels in cells of neuronal origin. The cells were exposed for 24 hr to a medium containing different concentrations of methionine (MAT substrate) as well as medium deficient of methionine. Furthermore, cells were treated with hydroxycobalamin, SAM, and the competitive MAT inhibitor cycloleucine. The MAT catalytic activity was inversely correlated to methionine concentrations, e.g. MAT Vmax increased 2-fold in cells grown in methionine-deficient medium as compared with cells cultured under standard conditions. Interestingly, MAT Km also increased from 9.04 +/- 0.44 to 12.08 +/- 0.83 in the methionine-deficient medium. Hydroxycobalamin caused an increase in activity at 40 microM while a decrease was observed at higher concentrations (100, 200, and 400 microM). Cycloleucine caused a significant inhibition of MAT catalytic activity, i.e. the inhibition was approximately 50% in the presence of 4 mM cycloleucine. The relevance of these results for the understanding of observations on MAT catalytic activity in brains of patients with Alzheimer's disease is discussed.

Alzheimer Disease↗

Role of fluidity of membranes on the guanyl nucleotide-dependent binding of cholecystokinin-8S to rat brain cortical membranes.

The binding of [3H]cholecystokinin octapeptide (sulphated) ([3H]CCK-8S), an agonist of the cholecystokinin receptors, to rat cortical membranes was fast, specific and saturable, with pH optimum at 6.5-7.0. The divalent cations Mg2+ and Ca2+ clearly enhanced [3H]CCK-8S binding, whereas the monovalent cations Na+ and K+ were inhibitors. Inactivation of the ligand binding ability of these membranes was dependent on the incubation temperature and corresponding tau1/2 values were 11 days at 4 degrees , 12 hr at 21 degrees , 154 min at 30 degrees and 51 min at 37 degrees , which revealed the apparent activation energy of this process to be 130+/-4 kJ/mol. Scatchard analysis of the saturation curves of [3H]CCK-8S binding was best described by a one site binding model with a Kd = 0.63+/-0.18 nM and a maximum binding of 32+/-2 fmol/mg protein. The stable GTP analogue guanosin-5'-O-(3-thiotriphosphate) (GTPgammaS) decreased the affinity of [3H]CCK-8S binding only up to 2-fold without significant influence on maximal binding. Modulation of membrane properties by different detergents revealed that only in the case of digitonin (0.03-0.04%) did the GTP-dependence of [3H]CCK-8S binding considerably increase without significant influence on the ligand binding properties in the absence of GTPgammaS. Other detergents studied (sodium cholate, sodium deoxycholate, 3-(3-cholamidopropyl)dimethylammonio-1-propanesulfonate (CHAPS), sucrose monolaurate, series Triton X and Tween) either had little influence on GTP-gammaS-dependence of [3H]CCK-8S binding or inactivated the receptor. Parallel studies of fluorescent polarization of diphenylhexatriene (DPH) in rat cortical membranes indicated that digitonin was the only detergent which at low concentrations caused a rapid increase in membrane fluidity and thereafter stabilized it at a certain level. Other detergents studied had only moderate influence on membrane fluidity (CHAPS, cholate, deoxycholate) or caused fast and continuous increase of membrane fluidity (Triton X-100, Tween 80). These data together point to the essential influence of the fluidity of membranes on the regulation of the interactions between G proteins and CCK receptors in rat cortical membranes. Under standard experimental conditions (temperature lower than 30 degrees), the CCK receptor-G protein complex is active for quantitative characterization of the receptors, but the membranes are too rigid for natural communication and regulation.

Animals↗

A cell culture model of cerebral ischemia as a convenient system to screen for neuroprotective drugs.

Aggregation cultures of rat brain were exposed to a combination of anoxia and hypoglycaemia for 30 minutes. Thereafter, the release of lactate dehydrogenase into the cell culture medium was monitored up to 4 days as a measure of cell damage after the ischemic insult. Some cultures were treated with different concentrations of deprenyl or tolcapone, selective inhibitors of monoamine oxidase B and catechol-O-methyltransferase, respectively. After 1 day in culture, the release of lactate dehydrogenase was significantly reduced in cultures treated with deprenyl (at 1 nM. 100 nM, and 10 microM), as well as in cultures treated with 1 nM or 100 nM tolcapone; 10 microM of tolcapone, on the other hand, resulted in a toxic effect on the cell aggregates. No differences in the release of lactate dehydrogenase into the medium was observed in the aggregates treated with drugs as compared with the control cultures after 2 or 4 days post-ischemia.

Animals↗

In vitro and in vivo characterization of (+)-3-[11C]cyano-dizocilpine.

(+)-3-[11C]Cyano-5-methyl-10,11 -dihydro-5H-dibenzo[a,d]-cyclohepten-5,10-imine ([11C]MKC) was successfully synthesized as a potential radiotracer for PET studies on the NMDA receptor channel complex. In vitro binding properties of [11C]MKC were investigated with newly developed techniques for efficient evaluation of 11C-labeled compounds. The association curve of [11C]MKC binding in rat forebrain membranes showed that the specific binding reached an equilibrium within 30 min. Specific binding was saturable with affinity constant KD=8.2+/-0.4nM and Bmax=1.62+/-0.04 pmol/mg protein with glutamate and glycine included in the incubation medium. The binding of [11C]MKC was decreased by extensive washing of the membrane preparation. (+)- and (-)-Dizocilpine, 3-cyano-dizocilpine, and ketamine inhibited the specific binding of [11C]MKC with IC50 values of 37.3, 445.0, 65.8nM and 3.91 microM, respectively. High specific binding in in vitro autoradiography was distributed predominantly in telencephalic regions (the hippocampus, cerebral cortex, and striatum) followed by thalamus. PET studies using rhesus monkeys under anesthesia showed high uptake of [11C]MKC in the temporoparietal and frontal cerebral cortices, striatum, and thalamic regions, although it is problematic to verify the specific binding in vivo by PET.

Animals↗

Erythrocyte and brain methionine adenosyltransferase activities in patients with schizophrenia.

The activity of methionine adenosyltransferase (MAT) was investigated in erythrocytes and postmortem brain specimens (cortex gyrus frontalis, hippocampus and thalamus) of patients with schizophrenia treated with neuroleptics. In comparison with the control group, abnormally low values of MAT Vmax and an increased MAT affinity towards methionine (lower Km values) were found in erythrocytes. In the brain, a regionally selective decrease of MAT Km was found in cortex gyrus frontalis but the Vmax values were however, unchanged. In the regions of cortex gyrus frontalis and hippocampus, but not in thalamus, the values of Vmax and Km were inversely correlated with the duration of schizophrenia. In rats treated for 28 days with the typical neuroleptic haloperidol and the atypical clozapine, a significant increase of MAT activity was found in the corpus striatum. There is the possibility that the changes observed in MAT activity in patients with schizophrenia are attributed to the neuroleptic medication.

Adult↗

Autoradiographic imaging of formaldehyde adducts in mice: possible relevance for vascular damage in diabetes.

The activity of semicarbazide-sensitive amine oxidase (SSAO) has been reported to be elevated in blood from diabetic patients. It has been suggested that the enzyme is involved in the development of complications such as retinopathies, nephropathies and neuropathies, which are associated with advanced diabetes, possibly by the formation of toxic metabolites. Under the influence of SSAO, methylamine is deaminated to formaldehyde which is known to react with various macromolecules. It has therefore been proposed that specific inhibition of SSAO could be of therapeutic value for treatment of diabetic patients. The present results provide evidence that treatment with an SSAO inhibitor potently reduces the levels of irreversible adducts. In this study, 14C-methylamine was given intraperitoneally to NMRI mice, and the tissue distribution of irreversibly bound methylamine metabolites was estimated by an autoradiographic method. Such radioactive residues occurred in high concentrations in the intestinal wall, brown adipose tissue, spleen and bone marrow. By inhibiting SSAO irreversibly with hydralazine before giving 14C-methylamine to the mice, it was possible to determine the resynthesis rate of SSAO in different tissues. A complete recovery of SSAO activity was seen in the intestinal wall after 6 days, whereas only about 60% was recovered in adipose tissue after 14 days. This suggests that factors controlling the synthesis of SSAO differ in these tissues, or that these tissues express different forms of enzymes.

Amine Oxidase (Copper-Containing)↗

Is there a "non-MAO" macromolecular target for L-deprenyl?: Studies on MAOB mutant mice.

Several irreversible inhibitors of monoamine oxidase B, can promote survival of damaged neurons in several animal models of cerebral injury. Today it is evident that this effect is not a consequence of monoamine inhibition. Instead it has been proposed that L-deprenyl may act via an unrelated non-monoamine oxidase type- of binding site. In the present study we have investigated if brain tissue from MAOB knockout mice contain such "non-MAO" binding sites for radiolabelled deprenyl. Interestingly, no binding of L-deprenyl was observed indicating that the mother compound does not act directly via a macromolecular target. This is enticing since several alternative mechanisms of action have been proposed in the literature.

Animals↗

Cholecystokinin peptides and receptor binding in rat brain after DSP-4 treatment.

The neurotoxin DSP-4 has, in this laboratory, previously been shown to upregulate cholecystokinin (CCK) binding in the frontal cortex and the hippocampus in rats. The present study investigated the effect of DSP-4 on CCK peptide levels and CCK receptor binding in some rat brain areas. Sprague-Dawley rats were given single injections of DSP-4 (10 and 50 mg/kg) and examined after 1 week. Wistar rats were given an injection of DSP-4 (50 mg/kg) and evaluated 1 week and 4 months after treatment. No significant changes in CCK levels or in CCK binding were found. It has been found that stress produced by handling of the rats immediately before decapitation can result in an increase in cortical CCK receptor binding. This finding led to the speculation that the upregulation of CCK binding after DSP-4 treatment which was reported earlier, reflects a stress-potentiating effect of DSP-4.

Adrenergic Agents↗

Inhibitors of catecholamine metabolizing enzymes cause changes in S-adenosylmethionine and S-adenosylhomocysteine in the rat brain.

Previous studies have shown that the biochemical changes that occur in parkinsonism are associated with disturbances in methylation reactions. Therefore, our hypothesis was that MAO and COMT inhibitors, which inhibit the metabolism of dopamine, might affect the methylation reaction. In the present study, we analyzed levels of S-adenosylmethionine (SAM) and S-adenosylhomocysteine (SAH) in brain homogenates from rats which had received a one-week treatment with tolcapone or phenelzine, inhibitors of COMT and MAO, respectively. Tolcapone treatment caused an increase in the levels of SAM (130% as compared with control animals, p < 0.001). In animals treated with phenelzine, the SAM levels were 78% of those of the controls (p < 0.05). SAH levels were slightly increased (115% as compared with controls, p < 0.05) in the phenelzine group, while they were unchanged in the tolcapone treated animals. Treatment with tolcapone decreased the catalytic activity of methionine adenosyltransferase (MAT) (from 15.4 +/- 1.6 to 11.3 +/- 1.4 pmol mg-1 min-1, p < 0.0001) while phenelzine treatment had no significant effect. In addition the transmethylation ratio (SAM/SAH) were significantly increased with tolcapone (120%, p < 0.05) and decreased with phenelzine (71%, p < 0.05) as compared to the controls. The essential finding of this paper was that brain SAM levels were reduced by MAO inhibition and enhanced by COMT inhibition.

Animals↗

A histochemical demonstration of altered cytochrome oxidase activity in the rat brain by neuroleptics.

Regional alterations in neuronal functional activity were examined in the rat brain using cytochrome-c oxidase (COX) histochemistry following chronic neuroleptic treatment. Haloperidol, fluphenazine, and clozapine were administered to animals for 28 days after which profiles of COX activity were generated. Significant increases in COX activity were evident in area 2 of the frontal cortex of all treated animals. Clozapine and fluphenazine, but not haloperidol, caused significant increases in COX activity in the caudate nucleus, nucleus accumbens, septum, and pontine nucleus. Statistically significant increases in COX activity were also observed in hippocampal CA2 and CA3 subfields in clozapine treated animals. Results offer support for the concept that neuroleptics achieve their therapeutic effects primarily via an enhancement of brain function in the frontal cortex, but also point to other brain regions which may be involved in the actions of these drugs.

Animals↗

Cholecystokinin in CSF from depressed patients: possible relations to severity of depression and suicidal behaviour.

Levels of cholecystokinin (CCK) peptides were measured in the CSF from 105 patients suffering from major depressive disorders admitted to a research psychiatric ward for diagnostic evaluation, by a radioimmunoassay method using two different antibodies. Relations between CCK levels and parameters of depression, anxiety, and suicidal behaviour were investigated. Significant inverse correlations were found between CCK levels and certain depression and anxiety parameters. Patients who had made one or more suicide attempts tended to have higher CSF CCK levels than those who had not. No correlations were found between CSF CCK and 5-HIAA or HVA, or with plasma cortisol.

Adult↗

Cytoprotection by deprenyl and tolcapone in a cell culture model of cerebral ischaemia.

Foetal rat brain aggregation cultures were exposed to a single episode of anoxia and hypoglycaemia for 30 min. Lactate dehydrogenase specific activity was estimated in the culture medium after ischaemia as a marker of lost cell integrity. Release of lactate dehydrogenase was most prominent during the first 24 hr period after the ischaemic damage, then it gradually declined. Immediately after ischaemic exposure, the cultures were treated with different concentrations of L-deprenyl or tolcapone. Significantly lower amounts of lactate dehydrogenase leaked into the culture medium during the first 24 hr after the ischaemic episode in cultures treated with deprenyl or tolcapone (1-100 nM). These results suggest that deprenyl and tolcapone may reduce cell damage after ischaemia, at doses causing enzyme inhibition.

Animals↗

Transmethylation reactions and autoradiographic distribution of vitamin B12: effects of clioquinol treatment in mice.

The catastrophic epidemic of subacute myelo-optic neuropathy (SMON) affected Japan around 1970 with thousands of victims. The cause was attributed to high doses of locally acting oxyquinolines. It has been speculated that oxyquinoline derivatives of the clioquinol type can disturb the retention of vitamin B12 through chelation of Co2+. In the present paper, possible effects of clioquinol on the uptake and tissue distribution of [57Co]-cyanocobalamin have been studied in mice. In vivo experiments showed markedly decreased accumulation of radiolabelled vitamin B12 in the kidney and skin in animals that were pre-treated with clioquinol. The chloroform:water partition coefficients for [57Co]-cyanocobalamin in the presence or absence of clioquinol were also determined. No statistically significant alterations in the partition coefficient for [57Co]-cyanocobalamin in the presence of clioquinol was evident, indicating that clioquinol does not bind cobalt. In addition, transmethylation reactions in the CNS in mice treated with clioquinol were studied. Specific activities of methionine adenosyltransferase, and S-adenosylhomocysteine levels were not affected. In contrast, clioquinol treatment caused a significant increase in the levels of S-adenosylmethionine in the brain. The data of the present study show that clioquinol treatment can affect the accumulation of vitamin B12 in the kidney and the skin but not in the brain. These results do not support the hypothesis that clioquinol causes its damage to the nervous system by a direct chemical interaction with vitamin B12.

Animals↗

Mitochondrial activity in the mapping of functional brain changes in schizophrenia.

The main contributors to the search for functional brain changes in schizophrenia in the past years have employed imaging techniques such as positron emission tomography (PET), single photon emission computed tomography (SPECT), and magnetic resonance imaging (MRI). Our laboratory has applied a novel strategy involving the post-mortem measurement of the mitochondrial respiratory chain enzyme cytochrome-c-oxidase (COX) to address the question of regional metabolic changes in schizophrenia. This approach is based upon a strong body of evidence which indicates that neuronal COX is highly regulated by the energy demands of the cell and as such represents an endogenous marker of cellular energy metabolism over time. Our original findings indicated that COX activity may be reduced in the striatum and frontal cortex consistent with the concept that a state reduced activity in cortico-striatal circuits may underlie schizophrenia. Subsequent studies from our laboratory on the effects of neuroleptics, PCP, and methamphetamine on animals, have provided additional evidence that a state of dopaminergic overactivity or glutamatergic underactivity produces a hypometabolic state similar to that which is evident in the brains of schizophrenics.

Journal Article↗

Platelet monoamine oxidase activity as a biological marker in a Swedish forensic psychiatric population.

Platelet monoamine oxidase (MAO) activities were determined in 58 non-psychotic males at forensic psychiatric examinations. The aim of the study was to investigate the role of platelet MAO activity as a biological marker in forensic psychiatry, a clinical field with growing need of safe predictors for both treatment outcome and behavior. The study population was heterogeneous with respect to clinical and personality disorders and personality traits. The results confirmed the role of platelet MAO activity as a biological marker for stable personality traits such as impulsiveness, monotony avoidance and aggressiveness. Disorders with high frequencies of these personality traits such as borderline personality disorder and type II alcoholism could secondarily be associated with low levels of platelet MAO activity, whereas no such associations could be found regarding other clinical or personality disorders. Neither psychopathy as assessed by the means of PCL-R nor behavior such as abuse or criminality could be associated with platelet MAO activity. The conclusion is that, due to its close relationship with stable personality traits, platelet MAO activity serves a marker for vulnerability also in forensic psychiatric populations. On the other hand it is not a marker for clinical or personality disorders, or behavior per se.

Adult↗