Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “TYRAMINE”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 469 records · Page 26Linked to original sources

Biodistribution of iodine-125 tyramine transforming growth factor alpha antisense oligonucleotide in athymic mice with a human mammary tumour xenograft following intratumoral injection.

The Watson-Crick base pairing rule provides the underlying principle for the antisense (AS) approach to inhibiting gene expression. Transforming growth factor alpha (TGFalpha) was the first growth factor to be associated with tumorigenesis, thus making the TGFalpha (mRNA) a potential target for AS therapy and offering the potential for monitoring of the progression of malignancy by non-invasive imaging with radiolabelled AS phosphodiester. Probe labelling and biodistribution were studied in the present report. A 23-mer oligonucleotide sequence was synthesized and grafted in 5' with a tyramine group which was further radioiodinated. The radiolabelled AS was injected intratumorally in mammary tumour-bearing BALB/c mice (3 weeks after inoculation of 7.10(6)NS2T2A mammary cells). Biodistribution was monitored by sequential scintigraphy and organ radioactivity after autopsy. The 5' tyramine group allowed specific and stable radiolabelling of the AS with 125I. The 125I AS oligonucleotide was rapidly cleared from the tumour by intestine and kidneys. Four hours after intratumoral injection, 6.5%+/-1.5% of the dose was retained in the tumour as non-degraded 125I AS. It is concluded that 5' tyraminylated AS provides information on the biodistribution of AS oligonucleotide following intratumoral injection. These data will contribute to the pharmacology of AS oligonucleotides which can be used for therapy.

Abdomen↗

Purification, characterization, and immunolocalization of hydroxycinnamoyl-CoA: tyramine N-(hydroxycinnamoyl)transferase from opium poppy.

A development-specific and elicitor-inducible acyltransferase [hydroxycinnamoyl-CoA: tyramine N-(hydroxycinnamoyl)transferase (THT; EC 2.3.1.110)] that catalyzes the transfer of hydroxycinnamic acids from hydroxycinnamoyl-CoA esters to hydroxyphenethylamines was purified 988-fold to apparent homogeneity from opium poppy (Papaver somniferum L.) cell-suspension cultures. The purification procedure, which resulted in a 6.8% yield, involved hydrophobic interaction and anion-exchange chromatography, followed by affinity chromatography on Reactive Yellow-3-Agarose using the acyl donor (feruloyl-CoA) as eluent. Purified THT had an isoelectric point of 5.2, a native molecular mass of approximately 50 kDa, and consisted of two apparently identical 25-kDa subunits as determined by two-dimensional polyacrylamide gel electrophoresis. The purified enzyme was able to synthesize a variety of amides due to a relatively low specificity for cinnamoyl-CoA derivatives and hydroxyphenethylamines. The best substrates were feruloyl-CoA (VK(m)(-1)13.4 mkat g(-1) M(-1)) and tyramine (VK(m)(-1)6.57 mkat g(-1) M(-1)). The THT activity increased during development of opium poppy seedlings, occurred at high levels in roots and stems of mature plants, and was induced in cell-suspension cultures after treatment with a pathogen-derived elicitor. Immunoblot analysis using THT mouse polyclonal antibodies did not always show a correlation between THT polypeptide and enzyme activity levels. For example, despite low THT activity in leaves, an abundant 25-kDa immunoreactive polypeptide was detected. Immunohistochemical localization showed that THT polypeptides occur in cortical and xylem parenchyma, immature xylem vessel elements, root periderm, anthers, ovules, and the inner layer of the seed coat, but are most abundant in phloem sieve-tube members in roots, stems, leaves, and anther filaments.

Acyltransferases↗

Expression and characterization of recombinant tyramine beta-monooxygenase from Drosophila: a monomeric copper-containing hydroxylase.

We report here the development of a robust recombinant expression system for Drosophila melanogaster tyramine beta-monooxygenase (TbetaM), the insect analog of mammalian dopamine beta-monooxygenase. Recombinant TbetaM is rapidly purified from the host cell media in three chromatographic steps. The expression system produces approximately 3-10 mg of highly purified, active protein per liter of culture. Recombinant TbetaM requires copper for activity and has a typical type 2 copper EPR spectrum. While TbetaM efficiently hydroxylates the aliphatic carbon of phenolic amines such as tyramine (the physiological substrate) and dopamine, phenethylamine is a poor substrate. TbetaM is most likely a monomer under physiological conditions, although under conditions of high pH and low ionic strength the dimeric form predominates. The lower oligomeric state of TbetaM may provide an advantage for structural studies over DbetaM, which exists as a mixture of dimer and tetramer.

Animals↗

L-Tyrosine beta-naphthylamide is a potent competitive inhibitor of tyramine N-(hydroxycinnamoyl)transferase in vitro.

L-Tyrosine beta-naphthylamide, a synthetic substrate designed to measure tyrosine aminopeptidase activity, is a potent inhibitor of hydroxycinnamoyl-CoA:tyramine N-(hydroxycinnamoyl)transferase (THT) purified from elicited tobacco cell-suspension cultures. The inhibition is competitive, with the inhibitor binding reversibly to the tyramine binding site of the enzyme. Similar results were obtained with THT extracted from elicited potato cell-suspension cultures. Ki values were found to be 0.66 microM for the enzyme from tobacco and 0.3 microM for the enzyme from potato. L-Tyrosine 7-amido-4-methylcoumarin, a fluorogenic substrate for tyrosine aminopeptidases, the structure of which is close to that of L-tyrosine beta-naphthylamide. was also a powerful inhibitor, but slightly less effective with Ki values of 0.72 and 0.42 microM for tobacco and potato THT, respectively. L-Tyrosine beta-naphthylamide was rapidly hydrolysed when fed in vivo to tobacco or potato cell cultures or when incubated in crude enzymic extracts prepared from these cultures. This hydrolysis, which is presumably catalysed by aminopeptidases, precludes the use of L-tyrosine amides as inhibitors of THT in vivo.

Acyltransferases↗

Fluorinated phenylcyclopropylamines. 2. Effects of aromatic ring substitution and of absolute configuration on inhibition of microbial tyramine oxidase.

A series of para-substituted diastereopure cis- and trans-2-fluoro-2-arylcyclopropylamines were synthesized and these were investigated as inhibitors of microbial tyramine oxidase from Arthrobacter sp. All compounds were shown to be competitive inhibitors of this enzyme. The nature of the para-substituents in the more potent trans-isomer (cis-relationship between fluorine and the amino group) of 2-fluoro-2-arylcyclopropylamine influenced the inhibitory potency in a consistent fashion. Thus, electron-withdrawing groups (F, Cl) slightly decreased the activity, while the methyl group (+ I substituent) increased the activity by a factor of ca. 7 compared to trans-2-fluoro-2-phenylcyclopropylamine and by a factor of 90 compared to tranylcypromine. Activity also was strongly dependent on the absolute configuration. The (1S,2S)-enantiomer of 2-fluoro-2-phenylcyclopropylamine was an excellent inhibitor of tyramine oxidase whereas the (1R,2R)-enantiomer was essentially devoid of activity.

Arthrobacter↗

Cloning and characterization of a hydroxycinnamoyl-CoA:tyramine N-(hydroxycinnamoyl)transferase induced in response to UV-C and wounding from Capsicum annuum.

Hydroxycinnamoyl-CoA : tyramine N-(hydroxycinnamoyl) transferase (THT) is a pivotal enzyme in the synthesis of N-(hydroxycinnamoyl)-amines, which are associated with cell wall fortification in plants. The cDNA encoding THT was cloned from the leaves of UV-C treated Capsicum annuum (hot pepper) using a differential screening strategy. The predicted protein encoded by the THT cDNA is 250 amino acids in length and has a relative molecular mass of 28,221. The protein sequence derived from the cDNA shares 76% and 67% identity with the potato and tobacco THT protein sequences, respectively. The recombinant pepper THT enzyme was purified using a bacterial overexpression system. The purified enzyme has a broad substrate specificity including acyl donors such as cinnamoyl-, sinapoyl-, feruloyl-, caffeoyl-, and 4-coumaroyl-CoA and acceptors such as tyramine and octopamine. In UV-C treated plants, the THT mRNA was strongly induced in leaves, and the elevated level of expression was stable for up to 36 h. THT mRNA also increased in leaves that were detached from the plant but not treated with UV-C. THT expression was measured in different plant tissues, and was constitutive at a similar level in leaf, root, stem, flower and fruit. Induction of THT mRNA was correlated with an increase in THT protein.

Acyltransferases↗

Tyramine oxidase activity in needle biopsy of normal livers and diseased livers.

Tyramine oxidase and UDP-glucuronyl transferase activities were determined in 52 diseased livers obtained by needle biopsy. 14 liver specimens were also subjected to acetyl CoA carboxylase determination. Tyramine oxidase level was elevated in livers with nonalcoholic fatty change or toxic hepatitis, and reduced in livers with fibrosis or chronic alcoholic injury. UDP-glucuronyl transferase activity was reduced in livers with severe parenchymal damage or hyperbilirubinemia. Acetyl CoA carboxylase activity decreased markedly in an active alcoholic cirrhotic liver, and was elevated in alcoholic fatty livers as well as in a liver with acute venous stasis.

Acetyl-CoA Carboxylase↗

Tyramine amplification technique in routine immunohistochemistry.

Signal amplification in immunohistochemistry via binding of biotinylated tyramine to proteins near the site of peroxidase-labeled antibodies is a promising new technique, but studies investigating a wide range of markers are lacking. The tyramine amplification technique (TAT) was investigated on 85 antibodies using a simple and fast protocol, and TAT results were compared to those obtained with conventional immunohistochemistry. Using TAT, most of the markers could be 5- to 50-fold further diluted and still showed identical staining results compared with standard stainings (maximal 500-fold). However, the variable reactivity of the different markers with TAT underlines the need for individual testing of every antibody to determine the optimal dilution. Some antibodies against cell adhesion molecules could be demonstrated for the first time in archival, formalin-fixed tissue sections. TAT, if carefully evaluated, offers a revolutionary improvement for modern immunostaining, either to increase sensitivity or primary antibody dilutions (cost reduction). From a methodological point of view, immunohistochemistry has not reached its limits by far and TAT is an important progressive step in this developmental process.

Antibodies, Monoclonal↗

Kinetic characterization of tyramine oxidase of Arthrobacter species.

Amine oxidases (EC 1.4.3) represent a rather nebulous group of proteins with relative narrow substrate and inhibitor specificities. Several different enzymes fall into these amine oxidase classes and the classification of some of them still remains ambiguous. Kinetic and physico-chemical properties of tyramine oxidase of Arthrobacter sp. were investigated to decide if this enzyme belongs to the flavin containing tyramine oxidase class (EC 1.4.3.9) or if it is more related to another amine oxidase class. On the basis of its spectral characteristics, molecular weight and inhibition profile, the enzyme was identified as a semicarbazide sensitive copper-containing amine oxidase.

Arthrobacter↗

Positive and negative modulation of Bombyx mori adenylate cyclase by 5-phenyloxazoles: identification of octopamine and tyramine receptor agonists.

Nineteen 5-phenyloxazoles (5POs) were examined for their ability to modulate adenylate cyclase by measuring cAMP produced in head membrane homogenates of fifth instar larvae of the silkworm Bombyx mori. Among the compounds tested, 5-(4-methoxyphenyl)oxazole (9) and the 2,6-dichlorophenyl congener showed the highest activation of adenylate cyclase; both compounds produced approximately half the level of cAMP produced by the action of octopamine (OCT). The OCT receptor antagonists chlorpromazine, mianserin, and metoclopramide attenuated 9-stimulated cAMP production. In contrast, 5-(4-hydroxyphenyl)oxazole (8) and the 4-cyanophenyl congener attenuated both OCT-stimulated and basal cAMP production. The tyramine (TYR) receptor antagonist yohimbine inhibited the negative effect of 8. These findings indicate that the 5PO class of compounds includes both positive and negative modulators of adenylate cyclase in the heads of B. mori larvae, and that 9 and 8 are OCT and TYR receptor agonists, respectively. These compounds might prove useful for a pharmacological dissection of biogenic amine receptors.

Adenylyl Cyclases↗

Responses of the silkworm tyramine receptor to 2-phenylethylamines and 5-phenyloxazoles.

Tyramine (TA), a biogenic amine, attenuates intracellular cAMP production by acting on its receptor in insects. Several non-biogenic amines were examined for their actions on native and heterologously expressed silkworm TA receptors. 5-(4-Hydroxyphenyl)oxazole, which showed an attenuating effect on cAMP production in silkworm-head membranes, did not attenuate forskolin-stimulated cAMP production in HEK-293 cells expressing the silkworm TA receptor, although the compound bound to the cloned receptor. 2-Phenylethylamines (2-PEAs), which showed positive and negative effects on cAMP production in silkworm-head membranes, inhibited [3H]TA binding to the cloned TA receptor. 2-Chloro-2-(4-chlorophenyl)ethylamine was the most potent inhibitor of [3H]TA binding among the 2-PEAs tested, with an IC50 of 30.4 nM. This compound acted as an antagonist and abolished TA-attenuation of forskolin-stimulated cAMP production in the cloned TA receptor. The discrepancy in the effects of the non-biogenic amines on the native and cloned TA receptors remains to be further examined. A newly synthesized 2-PEA, 2-chloro-2-(4-hydroxyphenyl)ethylamine, attenuated forskolin-stimulated cAMP production in the cloned TA receptor, indicating that the para-hydroxy group is important for the agonist action.

Animals↗

Tyramine content of some Cuban cheeses.

The tyramine content of 8 types of cheeses made in Cuba were determined. Values obtained ranged from 0-425 micrograms/g. Highest results were found in Camembert-type cheese and lowest ones in Salami (processed type) cheese. It may be concluded that patients taking monoamine-oxidase inhibiting drugs should better not eat cheese, except processed or short-maturing types.

Cheese↗

The monoamine oxidase inhibitor-tyramine interaction.

Reports of hypertensive reactions from monoamine oxidase inhibitors (MAOI) began to proliferate in the early 1960s. Asatoor did extensive research and found that the combination of an MAOI and a food containing tyramine resulted in the hypertensive interaction ("the cheese reaction"). Because of the risk of intracerebral hemorrhage and death, clinicians were hesitant to use the MAOIs. Although progress on the metabolic effects of MAOIs has been slow, use of clinical information in addition to analysis of bioactive amine content of foods has allowed the formulation of dietary recommendations, which are thought to be useful clinically in the administration of MAOIs. This has resulted in the gradual return to use of these psychotropic compounds.

Diet↗

Specific enhancement of neuronal responses to catecholamine by p-tyramine.

Extracellular recording and iontophoresis techniques were used to study the interactions of the trace amine, p-tyramine (p-TA) with putative neurotransmitters on single neurones in the cerebral cortex and caudate nucleus of the rat. p-TA, when applied with weak iontophoretic currents which did not result in any change in neuronal firing rate, caused a pronounced potentiation of depressant responses to iontophoretically applied dopamine (DA). Depressant responses of cortical neurones to noradrenaline were also markedly potentiated by weak background application of p-TA. This potentiating action of p-TA was related to the amount of the trace amine applied and was apparently specific for catecholamines, since depressant responses to 5-hydroxytryptamine and gamma-aminobutyric acid were unaffected. Excitatory responses to iontophoretically applied glutamate were also unaltered by weak application of p-TA. Excitatory responses to iontophoretically applied glutamate were also unaltered by weak applications of p-TA. Excitatory responses of most neurones to acetylcholine (ACh) were also unaffected by p-TA in the cortex and caudate nucleus. However, responses to ACh of a small number of cells in both brain areas were reduced in size during weak applications of p-TA. It is suggested that p-TA may act as a modulator of neurotransmission, particularly that mediated by DA in the central nervous system.

Acetylcholine↗

Preparation and biodistribution of 99mTc-labeled tyramine iminodiacetic acid.

The synthesis and biodistribution properties of 99mTc-labeled N-substituted tyramine, [N-(4-hydroxyphenethyl)iminodiacetic acid] are described. Tissue distribution studies in rats were indicative of high hepatic and kidney extraction, accompanied by rapid plasma and urinary clearance and minimal biliary excretion. These findings were substantiated by organ image analysis. The preliminary data indicate that this labeled material may represent a new class of radiopharmaceuticals for the evaluation of hepatic and renal functions.

Animals↗

Effects of tyramine and calcium on the kinetics of secretion in intact and electroporated chromaffin cells superfused at high speed.

Fast superfusion of electroporated bovine adrenal chromaffin cells with a K+ glutamate-based solution containing 50 nM free Ca2+ and 2 mM adenosine 5'-triphosphate, dipotassium salt (K2ATP), produced a steady-state low catecholamine secretion, measured on-line with an electrochemical detector (about 20 nA). Rapid switching to electroporation solutions containing increasing Ca2+ concentrations ([Ca2+]) produced a rapid increase in the rate and peak secretion, followed by a decline. At intermediate [Ca2+] (3-100 microM), a fast peak and a slow secretory plateau were distinguished. The fast secretory peak identifies a readily releasable catecholamine pool consisting of about 200-400 vesicles per cell. Pretreatment of cells with tyramine (10 microM for 4 min before electroporation) supressed the initial fast secretory peak, leaving intact the slower phase of secretion. With [Ca2+] in the range of 0.1-3 microM, the activation rate of secretion increased from 2.3 to 35.3 nA.s-1, reached a plateau between 3-30 microM and rose again from 100 to 1000 microM [Ca2+] to a maximum of 91.9 nA.s-1. In contrast, total secretion first increased (0.1-1 microM Ca2+), then plateaud (1-100 microM Ca2+) and subsequently decreased (100-1000 microM Ca2+). At 30 and 1000 microM extracellular [Ca2+] or [Ca2+]o, the activation rates of secretion from intact cells depolarised with 70 mM K+ were close to those obtained in electroporated cells. However, secretion peaks were much lower in intact (93 nA at 30 microM Ca2+) than in electroporated cells (385 nA). On the other hand, inactivation of secretion was much faster in intact than in electroporated cells; as a consequence, total secretion in a 5-min period was considerably smaller in intact (10.6 microA.s at 1000 microM Ca2+) than in electroporated cells (42.4 microA.s at 1 microM Ca2+). Separation of the time-courses of changes in intracellular [Ca2+] or [Ca2+]i and secretion in intact chromaffin cells depolarised with 70 mM K+ was demonstrated at different [Ca2+]o. The increase in the rate of catecholamine release was substantially higher than the increase of the average [Ca2+]i. In contrast, the decline of secretion was faster than the decline of the peak [Ca2+]i. The results are compatible with the idea that the peak and the amount of catecholamine released from depolarised intact cells is determined essentially by plasmalemmal factors, rather than by vesicle supply from reserve pools. These plasmalemmal factors limit the supply of Ca2+ by the rates of opening and closing of voltage-dependent Ca2+ channels of the L- and Q-subtypes, which control the local [Ca2+]i near to exocytotic sites.

Adrenergic Agents↗

Head-twitch response induced by tyramine.

The intracerebroventricular (IC) administration of tyramine (TyA) induced a characteristic head-twitch response in mice pretreated with safrazine, a monoamine oxidase inhibitor. Safrazine-pretreated mice exhibited similar head-twitches following the IC treatment of serotonin (5-HT). The maximum dose of 5-HT which did not elicit head-twitches significantly potentiated TyA-induced head-twitches. Antiserotonergic drugs such as morphine and dimethothiazine antagonized TyA-induced head-twitches. A serotonergic denervator, 5,6-dihydroxytryptamine, potentiated head-twitch induced by TyA or 5-HT. Both TyA-induced and 5-HT-induced head-twitches were inhibited by dopamine and noradrenaline, while catecholaminergic denervators such as reserpine and 6-hydroxydopamine, and diethyldithiocarbamic acid, a dopamine-beta-hydroxylase inhibitor, increased the TyA response. These results indicate that head-twitches induced by TyA may be mediated via the serotonergic system and may inhibit the catecholaminergic system.

5,6-Dihydroxytryptamine↗

The effect of adrenaline, tyramine and guanethidine on two-way avoidance conditioning and on pseudoconditioning.

Adrenaline (0.5 mg/kg) or guanethidine (10 mg/kg) given i.p. depressed performance of pseudoconditioned shuttle responses by rats. In a previous paper it had been shown that tyramine (5 mg/kg) had an opposite effect (Izquierdo, 1974a). Pre-trial administration of any of the three drugs also depressed two-way avoidance conditioning. Following posttrial administration, only guanethidine had a deleterious effect on retention. Since none of these drugs is believed to reach the brain in significant amounts following systemic injection, the present results suggest that peripheral factors may influence both conditioned and pseudoconditioned shuttle behavior.

Animals↗