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Characterization of pancreatic islet monoamine oxidase.

Monoamine oxidase (MAO) is present in isolated islets of Langerhans of rabbits, golden hamsters, and rats. Tryptamine, tyramine, serotonin, and dopamine can serve as substrates for this enzyme. We compared the properties of islet and liver MAO in the rabbit. The Michaelis constant (K(m)) for tryptamine of islet MAO (6.5 times 10-5M) is greater than the K(m) of liver MAO (3 times 10-5M). The K(m) for tyramine of islet MAO (1.5 times 10-4M) is similar to the K(m) of liver MAO (1.8 times 10-4M). Islet MAO appeared to be more susceptible to heat inactivation (50 degrees C) than did liver MAO. This may be an artifact produced by the collagenase technique used in the preparation of the islets, as collagenase treatment of liver increased the thermal lability of the MAO in this tissue. Liver and islet MAO have a comparable sensitivity to MAO inhibitors such as clorgyline, deprenyl, tranylcypromine, pargyline, and harmine. The present report, along with previous reports that MAO inhibitors alter insulin secretion, suggests that islet MAO may modify insulin secretion.

Animals↗

Effect of hyper- and hypothyroidism on platelet monoamine oxidase activity and serotonin metabolism.

We evaluated platelet monoamine oxidase (MAO) activity in 13 hyperthyroid and 9 hypothyroid patients. The platelet MAO activity of these patients did not differ from that of age- and sex-matched euthyroid control subjects. Nineteen hyperthyroid and twelve hypothyroid subjects had serum serotonin concentrations similar to those of age- and sex-matched euthyroid control subjects. We also determined the urinary excretion of 5-hydroxy-indoleacetic acid (5-HlAA), serotonin, tryptamine, and tyramine in five hyperthyroid and four hypothyroid subjects. Two hyperthyroid patients had increased tyramine excretion; one of these patients also had increased tryptamine excretion. Three hypothyroid patients and one hyperthyroid patients had slightly decreased serotonin excretion. Both the hyper- and the hypothyroid subjects had normal urinary 5-HIAA excretion. There was no relationship between platelet MAO activity and monoamine excretion in the patients with thyroid dysfunction. We conclude that there is no systematic change in platelet MAO activity or serum serotonin concentration in patients with hyper- or hypothyroidism.

Adult↗

Changes in neuromuscular transmission of guinea pig vas deferens produced by decamethrin treatment.

Responses of the isolated vas deferens of guinea pig to clonidine (inhibition of contractions to field stimulation at 2.5 Hz), tyramine (inhibition of contractions to field stimulation at 10 Hz), prostaglandin E2 (inhibition of contractions to field stimulation at 10 Hz), and noradrenaline (contraction of longitudinal muscle) were determined after administration of decamethrin (18 mg kg-1, ip) once a day for 3 consecutive days. Treatment with decamethrin produced a subsensitivity of the prejunctional alpha 2-adrenoceptor system as evidenced by the fact that the alpha 2-agonist clonidine was less effective in decreasing nerve-stimulated induced contractions of the vas deferens. In addition, the presynaptic action of tyramine on postganglionic motor transmission was impaired. However, no detectable changes in the inhibition by prostaglandin E2 of twitch responses were produced by decamethrin. Decamethrin treatment had a significant effect on noradrenaline responsiveness, causing an increase in the maximum contractile response, indicative of an enhanced postreceptor mechanism. The present results suggest that decamethrin treatment reduces peripheral presynaptic adrenoceptor sensitivity. This reduction will lead subsequently to increased noradrenaline release and postsynaptic adrenoceptor upregulation.

Animals↗

Buthus martensi karsch venom: prejunctional adrenergic activity in the rat isolated anococcygeus muscle.

The effect of Buthus martensi Karsch venom (MKV) on adrenergic responses was investigated using the rat isolated anococcygeus muscle (Acm), since several scorpion venoms can cause peripheral sympathetic nerve stimulation with enhanced adrenergic responses. The effects of phentolamine (5 microM), guanethidine (5 microM), tetrodotoxin (2 microM), desipramine (1.5 microM) and reserpine pretreatment in vivo (5 mg/kg s.c. x 24 hr and 5 mg/kg i.p. x 3 hr) on contractile responses of the rat Acm to field stimulation, noradrenaline (3 microM), tyramine (10 microM), crude MKV (2 micrograms/ml), carbachol (3 microM) and potassium chloride (50 mM) were compared. Phentolamine, guanethidine, tetrodotoxin and reserpine pretreatment completely blocked the contractile responses of the Acm to MKV and to field stimulation but desipramine potentiated the responses. The responses to NA were completely blocked by phentolamine, but were potentiated by guanethidine, desipramine and reserpine pretreatment. The contractile responses to tyramine were completely blocked by phentolamine, desipramine and reserpine pretreatment. The low doses (0.1 microgram/ml x 3) of MKV, which did not produce any observable increase in tone of the anococcygeus muscle, potentiated the contractile responses to field stimulation, but not the responses to exogenous NA. Thus, the adrenergic agonist action of MKV in the rat isolated anococcygeus muscle is mediated by some prejunctional mechanism(s) of action, presumably stimulating the release of the neurotransmitter noradrenaline.

Animals↗

Alterations in trace amine and trace acid concentrations in isolated aggressive mice.

We have used an animal model of aggression, the isolation syndrome in mice, to examine the possible role of the trace amines, beta-phenylethylamine (PEA), meta-tyramine (m-TA) and para-tyramine (p-TA) in aggressive behaviour. The brain, plasma and urinary levels of PEA, m-TA and p-TA, and their respective major acid metabolites, phenylacetic acid (PAA), meta-hydroxyphenylacetic acid (m-HPA) and para-hydroxyphenylacetic acid (p-HPA) were measured in isolated aggressive mice (after fighting), and in group housed controls. The urinary levels of PEA, m-TA, PAA, m-HPA and p-HPA, and the plasma levels of PAA and p-HPA were significantly lower in isolated aggressive mice. Similarly, the whole brain levels of PEA, p-TA, PAA and p-HPA tended to be reduced. In contrast, the brain levels of m-TA and m-HPA tended to increase. It should be noted, however, that the present procedure did not dissociate the stress and aggression components of the isolation syndrome, and, therefore, further experiments are required to determine whether the observed neurochemical changes are functionally related to increased aggression.

Aggression↗

Influence of prostaglandins on vasoconstrictor responses in the hindquarters vascular bed of the cat.

The effects of prostaglandins (PG), A1, A2, B2, E1, 6-keto-E1, F2 alpha and indomethacin on vascular resistance and vasoconstrictor responses were investigated in the feline hindquarters vascular bed under conditions of controlled flow so that changes in perfusion pressure directly reflect changes in vascular resistance. Infusion of PGE1, PGE2 and 6-keto-PGE1 (3 microgram/min) into the abdominal aorta significantly dilated the hindquarters vascular bed and inhibited vasoconstrictor responses to sympathetic nerve stimulation and intra-arterial injections of angiotensin, whereas hindquarters vasoconstrictor responses to tyramine and exogenous norepinephrine were unaffected. Infusion of PGA1, A2, B2 and F2 alpha at a similar rate produced transient changes in hindquarters vascular resistance and did not consistently alter vasoconstrictor responses to sympathetic nerve stimulation, angiotensin, norepinephrine and tyramine. Indomethacin in a dose which greatly attenuates the response to intravenous administration of arachidonic acid enhanced responses to nerve stimulation and norepinephrine. In addition, indomethacin had little or no effect on hindquarters perfusion pressure and systemic arterial pressure. These data suggest that E series prostaglandins possess the ability to modulate the actions of the sympathetic nervous system and angiotensin in the feline hindquarters vascular bed. In addition, these data suggest that PGEs, upon enzymatic conversion and dehydration to A and B series prostaglandins, lose their ability to consistently affect vasoconstrictor responses. Experiments with indomethacin further suggest that locally formed prostaglandins do modulate the effects of the sympathetic nervous system of the feline hindquarters.

Angiotensin II↗

The relationship of chromium to the glucose tolerance factor. II.

After incubation with CrCl3 X 6H2O (or 51CrCl3 X 6H2O) for 25 days, a sterile growth medium, whole yeast cells harvested after growth on a similar chromium-containing medium for the same period, and the spent growth medium remaining after removal of the yeast were each subjected to the separation procedure reported previously [S. J. Haylock. P. D. Buckley and L. F. Blackwell, J. Inorg. Biochem., in press]. The results obtained showed that most of the eleven chromium-containing fractions isolated previously were artifacts formed as a result of direct reaction between the chromium and components of the medium. An anionic complex (which was the major chromium-containing fraction isolated) was identified as a chromium-glucose complex, but one possessing no biological activity. The biologically active chromium-containing fractions (P-3 and P-4) that were only present after yeast had been grown in the medium were further purified, however, during the purification steps, the biological activity was cleanly separated from the chromium material for both P-3 and P-4. Fraction P-4 was subsequently shown to consist of approximately 90% tyramine, but pure tyramine was not active in the yeast bioassay. Although the structure of the glucose tolerance factor-active component in fraction P-3 could not be determined due to the presence of high concentrations of salt that could not be separated on gel filtration columns, the results show that the glucose tolerance factor from brewer's yeast can no longer be regarded as a chromium complex.

Amino Acids↗

Somatostatin: peripheral venoconstrictive activity and interaction with monoamines in man.

The mechanism of somatostatin venoconstriction and tachyphylaxis in the human hand vein in vivo has been investigated. No cross-tachyphylaxis was observed between somatostatin and 5-hydroxytryptamine, noradrenaline, adrenaline, dopamine or tyramine-induced venoconstriction. Somatostatin potentiates the venoconstrictive activity of noradrenaline, adrenaline and dopamine, but not that of 5-hydroxytryptamine and tyramine. Phentolamine antagonizes the somatostatin-induced venoconstriction, whereas methysergide, haloperidol and morphine do not. It is suggested that somatostatin could act on specific receptors in the hand vein, but the mechanism of somatostatin venoconstriction and interaction with vasoactive monoamines remains to be defined.

Adult↗

Purification, characterization and reaction mechanism of novel arylsulfotransferase obtained from an anaerobic bacterium of human intestine.

A novel type of arylsulfotransferase was purified from Eubacterium A-44, one of the predominant bacteria of human intestine. The enzyme (Mr 315 000) was composed of four identical subunits (Mr 80 000) whose N-terminal amino acids were arginine. pI and optimal pH of the enzyme were 3.9 and 8-9, respectively. The apparent Km for p-nitrophenylsulfate using tyramine as an acceptor substrate and that for tyramine using p-nitrophenylsulfate as a donor substrate were determined to be 0.104 mM and 3.5 mM, respectively. The reaction mechanism of the enzyme was proposed as follows: a donor substrate, p-nitrophenyl [35S]sulfate, combines a histidine residue of the enzyme active site with concomitant release of a phenolic compound, p-nitrophenol. The sulfate group of the histidine residue transfers to a tyrosine group, and then to an acceptor with the binding of another donor to the histidine residue.

Arginine↗

Displacement of serotonin from binding sites in rat cortex: the effects of biogenic "trace" amines.

The concentrations for 50 percent inhibition of binding (IC50's) to specific in vitro serotonin binding sites (5-HT1 and 5-HT2) of rat cerebral cortex were determined for the trace amines 2-phenylethylamine, m- and p-tyramine, tryptamine, and (+)- and (-)- alpha-methyltryptamine. Tryptamine gave an IC50 of 66.7 +/- 4.8 nM (n = 7) at the 5-HT1 site and an IC50 of 3.85 +/- 0.16 microM (n = 7) for the 5-HT2 binding site. The IC50 values for all the other compounds were in the micromolar range and were different at the two binding sites except for p-tyramine (IC50, 5-HT1 = IC50, 5-HT2 = 17 microM. The trace amines may have different functional roles as evidenced by their different degrees of displacement of serotonin at 5-HT1 and 5-HT2 binding sites in the brain.

Animals↗

Subsensitivity to beta-adrenoceptor agonists in right atria isolated from footshock-stressed rats.

1. The effects of three daily sessions of inescapable footshock on the sensitivity of rat isolated right atria to the chronotropic effect of norepinephrine, tyramine and soterenol were studied. 2. Inescapable footshock induces subsensitivity to norepinephrine and tyramine. The maximum response to the partial agonist soterenol was reduced. 3. In vitro denervation and addition of cocaine prevented the demonstration of inescapable footshock-induced subsensitivity to norepinephrine. 4. It is concluded that repeated inescapable footshock stress reduces the number of atrial beta 1-adrenoceptors and increases the efficiency of the neuronal reuptake process.

Adrenergic beta-Agonists↗

Hydroxylation of phenylethylamine by rat liver preparations. Inhibition studies.

1. Rat liver 100,000 g pellet microsomal fraction p-hydroxylate phenylethylamine to tyramine in a relatively slow proceeding, NADPH-requiring reaction; Km 2.1 x 10(-5) M and Vmax 0.32 nmol/mg protein/20 min. 2. This reaction is inhibited, either competitively, noncompetitively or uncompetitively by a number of behaviorally active monomethylated and monohalogenated derivatives of phenylethylamine. 3. Whereas formation of tyramine was not significantly affected by L-phenylalanine or its p-chloro derivative, it was competitively inhibited by imipramine, iprindole and alprazolam. 4. It is suggested that at least some of the effects of these drugs may result from their ability to interfere with phenylethylamine metabolism.

Animals↗

Pharmacological sensitivity of the articular capsule of the primary spines of Eucidaris tribuloides.

1. This paper describes the effects of several cholinergic agonists and antagonists, and of beta-phenylethylamine (PEA) and some of its derivatives, on the articular capsule, or ligament, of the primary spines of Eucidaris tribuloides. 2. Carbamylcholine (CCh), methacholine (MeACh), nicotine, and muscarine exert a stiffening effect similar to that of acetylcholine (ACh), although the time course of their actions varies widely. 3. Atropine induced stiffening and blocked and responses to muscarine and MeACh. The responses to MeACh were blocked also by 4-diphenylacetoxy-N-methylpiperidine, suggesting the presence in the ligament of type M3 muscarinic receptors, in addition to nicotinic ones. d-Tubocurarine induced stiffness of the ligament and failed to block the responses to ACh and nicotine. 4. While ACh induced only a slight desensitization, CCh caused a long-lasting blockade of the stiffening effects of the cholinergic agonists. This shows that the receptors for ACh have a site or sites that recognize the ester moieties of these molecules. 5. Eserine and neostigmine potentiate the responses to acetylcholine, indicating the presence of acetylcholinesterase in the ligament. 6. beta-Phenylethylamine, epinephrine, norepinephrine, and dopamine induce diphasic responses; usually a brief softening followed by a slow and irreversible stiffening of the ligament. 7. In contrast to the above, tyramine and octopamine elicit a simple softening of ligaments which are stiff as a result of handling or by exposure to cholinergic agonists. However, tyramine and octopamine do not soften ligaments which become stiff as a result of exposure to adrenergic agonists.

Acetylcholine↗

Design of compounds having enhanced tumour uptake, using serum albumin as a carrier--Part II. In vivo studies.

In the present in vivo study the uptake kinetics of radioiodinated albumin were determined in normal organs, and tumours of rats using sequential scintigraphy. Rat serum (RSA) was radioiodinated either directly at a tyrosine residue (d-RSA), or indirectly at a residualizing marker tagged to the albumin (rm-RSA). These labelling procedures did not alter the kinetics of labelled albumin, as shown by blood disappearance curves. Directly labelled albumin was shown to have tumour uptake. Residualizing markers like tyramine-cellobiose (TCB), tyramine-deoxysorbitol (TDS) and aminonaphthaltyrimide-deoxysorbitol (ANTDS) are metabolically inert. After the intracellular degradation of the albumin carrier the TCB-, TDS- and ATNDS-residues accumulate in the lysosomes, particularly those of tumour cells. It was able to be demonstrated that residualizing-marker tagged albumin-bound radioactivity was five times higher after 72 h than the tumour radioactivity after use of directly labelled RSA. These data found support when whole-body retention of directly labelled RSA, and residualizing marker-RSAs, were determined. After 72 h, 60% of 131I bound to RSA directly had been excreted, compared to only 25% of the activity attached indirectly to RSA with a residualizing marker. Whole-body autoradiography of rats injected with directly labelled RSA, or residualizing marker-RSA, support these results. Most of the radioactivity of directly labelled RSA was excreted within 24 h, whereas labelled residualizing marker-RSAs were also stored in tumour and liver tissue. ANTDS bound to RSA allows fluorescence microscopy. Cryosections of tumours from rats preinjected 10 min and 24 h with ANTDS-RSA before dissection, demonstrated that the fluorescence is localized on and in tumour cells. This indicates that cellular uptake of the marker takes place. Fluorescence was not observed in muscle tissue. This appears to suggest that the albumin uptake is greater in tumours than in normal tissue, and that it is metabolized in the tumour cells.

Animals↗

Electrodeposited nonconducting polytyramine for the development of glucose biosensors.

Biosensors with the composition of carbon/Prussian blue/(glucose oxidase+glutaraldehyde+polytyramine) were constructed. Before tyramine monomers were electropolymerized, glucose oxidase and tyramine monomers were cross-linked with glutaraldehyde onto the surface of Prussian-blue-modified electrodes. The constructed biosensors produced highly reproducible and stable devices. The biosensors exhibited neglectable decrease in current response after 10 repeated uses or after 1 month of dry storage. The resultant biosensors had a linear range of 0.1-1 mM glucose and a detection limit of 0.05 mM. Since the following electrocatalytic process proceeds at a low electrode potential (ca. -0.3 V vs Ag/AgCl), ascorbate and uric acid do not produce observable interfering signal for the determination of glucose.

Aspergillus niger↗

Identification and characterization of a L-tyrosine decarboxylase in Methanocaldococcus jannaschii.

Methanofuran is the first coenzyme in the methanogenic pathway used by the archaeon Methanocaldococcus jannaschii, as well as other methanogens, to reduce CO2 to methane. The details of the pathway for the biosynthesis of methanofuran and the responsible genes have yet to be established. A clear structural element in all known methanofurans is tyramine, likely produced by the decarboxylation of L-tyrosine. We show here that the mfnA gene at M. jannaschii locus MJ0050 encodes a thermostable pyridoxal phosphate-dependent L-tyrosine decarboxylase that specifically produces tyramine. Homologs of this gene are widely distributed among euryarchaea but are not specifically related to known bacterial or plant tyrosine decarboxylases.

Amino Acid Sequence↗

Effect of P-glycoprotein modulators on the human extraneuronal monoamine transporter.

The aim of this work was to investigate the effect of P-glycoprotein modulators on human extraneuronal monoamine transporter (EMT)-mediated transport. The experiments were performed using a cell line from human embryonic kidney (HEK293 cells) stably transfected with pcDNA3hEMT (293(hEMT)), or with pcDNA3 alone (293(control)). Of the P-glycoprotein modulators tested, rhodamine123, verapamil and daunomycin concentration-dependently inhibited EMT-mediated uptake of [3H]1-methyl-4-phenylpyridinium ([3H]MPP(+)). The corresponding IC(50)'s were found to be 3.6, 37 and 130 microM, respectively. By contrast, vinblastine, digitoxin and cyclosporine A were devoid of effect. The endogenous organic cation tyramine, but not choline, inhibited EMT-mediated transport (IC(50) of 468 microM). Moreover, L-arginine and L-histidine (up to 1 mM) did not affect [3H]MPP(+) uptake. Finally, MPP(+) and tyramine trans-stimulated [3H]MPP(+) uptake, but rhodamine123 had no effect, and verapamil and daunomycin trans-inhibited [3H]MPP(+) uptake. In conclusion, this study shows that several cationic modulators of P-glycoprotein inhibit EMT-mediated transport. As a consequence, the interaction of P-glycoprotein modulators with EMT must be taken into account, and the consequences of this interaction must not be forgotten when using such drugs in vivo.

1-Methyl-4-phenylpyridinium↗

A disturbed macrocirculatory supply as a determinant for a reduced sciatic nerve blood flow in diabetic rats.

The aim of this study was to evaluate macrocirculatory disturbances in relation to the reduced sciatic nerve blood flow seen in diabetic rats. Therefore, both femoral blood flow, the macrocirculatory arterial blood supply to the sciatic nerve, and the microcirculatory neuronal blood flow were measured. In order to differentiate between a direct vascular or a neuronal defect as a cause for the disturbed macrocirculatory blood flow the effects of the adrenocorticotropic hormone [ACTH]-(4-9) analogue, Org 2766, a neurotrophic compound without cardiovascular effects, were investigated on the femoral flow under basal as well as adrenergic-stimulated conditions. Adrenergic responsiveness to tyramine and phenylephrine effect on femoral flow was determined. Basal sciatic nerve and femoral blood flow were reduced by 48% and 42%, respectively, after 12 weeks of diabetes, without effect on blood pressure. Treatment with Org 2766, beginning 6 weeks after the induction of diabetes, had no influence on these basal haemodynamic variables. Femoral flow in diabetic rats showed a smaller response to tyramine and phenylephrine compared to the control. Org 2766 restored this disturbed flow response to that of the control rats. In conclusion, the decrease in basal femoral flow might be responsible for the lowered sciatic nerve blood flow. Although neuronal disturbances due to diabetes had a very minor role in the reduction of basal femoral blood flow the adrenergic-stimulated flow responsiveness was seriously affected in diabetic rats.

Adrenergic alpha-Agonists↗