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Metabolism of Tryptophan, Indole-3-acetic Acid, and Related Compounds in Parasitic Plants from the Genus Orobanche.

Metabolic reactions involving the aliphatic side chain of tryptophan were studied in the holoparasitic dicotyledonous plants Orobanche gracilis Sm., O. lutea Baumg., and O. ramosa L. Unlike known autotrophic plants, the parasite metabolized l-tryptophan directly to indole-3-carboxaldehyde, which was further converted to indole-3-methanol and indole-3-carboxylic acid. Independently, these metabolites were also formed from d-tryptophan, tryptamine, indole-3-lactic acid, and indole-3-acetic acid. As in autotrophic plants, tryptophan and tryptamine were also converted, via indole-3-acetaldehyde, to indole-3-acetic acid, indole-3-ethanol, and its glucoside. The branch of tryptophan metabolism relevant to auxin biogenesis and catabolism is, therefore, not rudimentary in Orobanche but even more complex than in autotrophic higher plants.

Journal Article↗

Creation of a Metabolic Sink for Tryptophan Alters the Phenylpropanoid Pathway and the Susceptibility of Potato to Phytophthora infestans.

The creation of artificial metabolic sinks in plants by genetic engineering of key branch points may have serious consequences for the metabolic pathways being modified. The introduction into potato of a gene encoding tryptophan decarboxylase (TDC) isolated from Catharanthus roseus drastically altered the balance of key substrate and product pools involved in the shikimate and phenylpropanoid pathways. Transgenic potato tubers expressing the TDC gene accumulated tryptamine, the immediate decarboxylation product of the TDC reaction. The redirection of tryptophan into tryptamine also resulted in a dramatic decrease in the levels of tryptophan, phenylalanine, and phenylalanine-derived phenolic compounds in transgenic tubers compared with nontransformed controls. In particular, wound-induced accumulation of chlorogenic acid, the major soluble phenolic ester in potato tubers, was found to be two- to threefold lower in transgenic tubers. Thus, the synthesis of polyphenolic compounds, such as lignin, was reduced due to the limited availability of phenolic monomers. Treatment of tuber discs with arachidonic acid, an elicitor of the defense response, led to a dramatic accumulation of soluble and cell wall-bound phenolics in tubers of untransformed potato plants but not in transgenic tubers. The transgenic tubers were also more susceptible to infection after inoculation with zoospores of Phytophthora infestans, which could be attributed to the modified cell wall of these plants. This study provides strong evidence that the synthesis and accumulation of phenolic compounds, including lignin, could be regulated by altering substrate availability through the introduction of a single gene outside the pathway involved in substrate supply. This study also indicates that phenolics, such as chlorogenic acid, play a critical role in defense responses of plants to fungal attack.

Journal Article↗

Platelet monoamine oxidase activity in Down's syndrome.

The activity of platelet monoamine oxidase in Down's syndrome cases was significantly lower than that of controls. This difference was found for both males and females, and with tyramine, tryptamine and beta-phenethylamine as substrate. The Km values of the monoamine oxidase towards tryptamine as substrate from controls and Down's syndrome patients were similar.

Adolescent↗

Metabolism of biogenic amines in neuroblastoma and glioma cells in culture.

The kinetic parameters of monoamine oxidase (MAO; E.C 1.4.3.4) and catechol-O-methyltransferase (COMT; EC 2.1.1.6) were evaluated in extracts of adrenergic and non-adrenergic mouse neuroblastoma cells and in rat glioma cells. Using the naturally-occurring substrates tyramine, tryptamine, serotonin and norepinephrine, the affinity of MAO for a given substrate was independent of the presence of the catecholaminergic pathway or cell type used, with apparent Km values ranging from 8-14 microM for tryptamine to 510-580 microM for norepinephrine. The MAO activity in glioma cells was substantially greater than in either neuroblastoma clone, but Vmax values varied little with substrate among cell lines. Both the neuronal and glial COMT had a similar Km for 1-norepinephrine (200 microM); the corresponding Vmax values were also similar among the different cell lines, but represented only 2-10% of the maximal MAO activity. Neuroblastoma and glioma cells, when grown from early logarithmic to stationary phase, showed no significant changes in specific activity of either MAO or COMT. Growth of cells for 3 days with 1 mM-N6,O2'-dibutyryl adenosine-3',5'-cyclic monophosphate resulted in no marked change in either MAO or COMT activity. These results suggest that in neurons neither MAO nor COMT plays a major role in the type of transmitter inactivation that is analogous to that of acetylcholinesterase in cholinergic synapses. The occurrence of considerable MAO and acetylcholinesterase activities in glioma cells may indicate a role for these cells in neurotransmitter inactivation.

Acetylcholinesterase↗

Discrimination of monoamine uptake by membranes of adrenal chromaffin granules.

1 The accumulation of various radioactive monoamines by isolated membranes of bovine adrenal chromaffin granules was measured by equilibrium dialysis. 2 Adenosine-5'-triphosphate (ATP) in the presence of Mg++ stimulated the uptake of all the amines tested, but the accumulation of dopamine, (-)-noradrenaline (NA), 5-hydroxytryptamine (5-HT), (plus or minus)-adrenaline and (plus or minus)-octopamine was greater than that of tyramine, (plus or minus)-metaraminol, tryptamine, beta-phenylethylamine and histamine. 3 At the higher concentration levels of the amines in the medium the ATP-dependent accumulation of dopamine, NA, adrenaline and 5-HT in the membranes reached a saturation level, whereas in the absence of the nucleotide no saturation level was attained. 4 Octopamine and 5-HT competitively inhibited the ATP-dependent uptake of NA, 5 Decrease in the incubation temperature or the presence of N-ethylameimide greatly reduced the ATP-stimulated amine accumulation. Ouabain had no effect on uptake. 6 Reserpine virtually abolished the ATP-dependent uptake of dopamine, NA and 5-HT, caused a partial inhibition of the metaraminol, octopamine and tyramine accumulation, but did not interfere with the uptake of tryptamine. 7 The content of endogenous catecholamines of the membranes was changed very little by incubation of NA and 5-HT in the presence of ATP. However, the membranes lost over 80% of their endogenous amines if incubated for 30 min without ATP. 8 The ATP content of the medium progressively decreased during the incubation of granular membranes. 9 It is concluded that the membrane of adrenal chromaffin granules discriminates between the various monoamines with regard to the magnitude of their uptake and that two mechanisms of ATP-stimulated uptake, one responsive and the other resistant to reserpine, exist at the level of this membrane. The ATP-stimulated transport at the granular membrane level may be an important factor in determining the intraneuronal storage of a physiological or false neurotransmitter.

Adenosine Triphosphate↗

Shape change of blood platelets--a model for cerebral 5-hydroxytryptamine receptors?

1. In blood platelets of rabbits isolated by a stractan gradient and incubated in a protein-poor medium, tryptamine, 5-hydroxytryptamine (5-HT) and derivatives, quipazine and mescaline caused a shape change. This shape change was inhibited by low concentrations of methysergide. 2. The most potent antagonists of the 5-HT-induced shape change included ergoline derivatives and neuroleptic drugs, which showed high stereoselectivity. 3. (+)-Lysergic acid diethylamide ((+)-LSD), psilocine and some N',N'-dimethylated tryptamines acted as mixed agonist-antagonists. 4. The compounds found to be agonists or mixed agonist-antagonists on platelets have previously been shown to act also as 5-HT agonists in the central nervous system (CNS). 5. With regard to 5-HT antagonists, the 5-HT receptors of platelets reacted differently from those described earlier in brain areas with dense 5-hydroxytryptaminergic innervation, but showed similarities to 5-HT receptors investigated previously in spinal cord, cerebral cortex and possibly reticular formation. 6. It is concluded that platelets may be considered with caution as models for some, but not for all, 5-HT receptors in the CNS.

Adenosine Diphosphate↗

A comparison of cinobufotenine (the quaternary derivative of 5-HT) and some related compounds with coryneine (the quaternary derivative of dopamine) on the frog rectus, guinea-pig ileum and rat fundus strip preparations.

1 Coryneine is 2.7 times as active as cinobufotenine on the frog rectus but on the guinea-pig ileum cinobufotenine is 1.5 times as active as coryneine. Cinobufotenine is a potent stimulant of parasympathetic ganglia and its effect are competitively antagonized by hexamethonium. 2 The effects of pH on activity relative to a standard whose ionisation is constant (Me4+N or the trimethylammonium analogue of tryptamine) are consistent with the phenate form being weaker than the phenolic form but the changes are smaller than with coryneine because cinobufotenine is a weaker acid. 3 The hydroxyl group makes a large contribution to activity. Cinobufotenine is 9 times as active as the analogue without a hydroxyl on the frog rectus and 12 times as active as it on the ileum. The 5-methoxy analogue is an antagonist on the frog rectus and a very weak partial agonist on the ileum. 4 Cinobufotenine and the quaternary derivative of tryptamine have less than one-thousandth of the activity of 5-hydroxytryptamine on the rat fundus strip.

Abdominal Muscles↗

The guinea-pig distal colon--a sensitive preparation for the investigation of 5-HT4 receptor-mediated contractions.

1. Experiments were designed to characterize pharmacologically the contractile responses to 5-hydroxytryptamine (5-HT) in the guinea-pig isolated distal colon longitudinal muscle-myenteric plexus preparation (LMMP). 2. In the presence of methiothepin (100 nM) and granisetron (1 microM), 5-HT (10 pM-10 nM) produced concentration-dependent contractile responses of the guinea-pig distal colon LMMP, with a pEC50 of 9.2 +/- 0.08. 3. Responses to 5-HT were mimicked by a series of tryptamine analogues, with the following rank order of potency; 5-HT > 5-MeOT >> 5-CT > tryptamine > 2-Me-5-HT. All were found to be full agonists. 4. Responses to 5-HT were also mimicked by a series of substituted benzamide analogues. Their rank order of potency was 5-HT > renzapride > cisapride > (S)-zacopride > (R)-zacopride > metoclopramide. All were full agonists relative to 5-HT. 5. The benzimidazolone derivatives, BIMU 1 and BIMU 8 were approximately equipotent partial agonists (intrinsic activities of 0.8 +/- 0.07 and 0.5 +/- 0.08 respectively) in the guinea-pig distal colon. 6. Tropisetron produced a rightward displacement of the 5-HT concentration-effect curve, yielding an apparent pA2 of 6.4 +/- 0.1. The slope of the Schild plot (1.3 +/- 0.1) was significantly greater than unity. 7. SDZ 205,557 produced a concentration-dependent shift to the right of the 5-HT concentration-response curve, yielding an estimated pA2 of 7.8 +/- 0.1 and a slope which did not significantly deviate from unity. SDZ 205 557 produced similar pKB estimates (7.3-7.9) when tested against 5-MeOT,renzapride and 5-CT, indicating a common site of action.8. The pharmacological profile of the 5-HT-evoked contractions of the guinea-pig distal colon LMMPare consistent with activity at the 5-HT4 receptor. Furthermore, of the models of this receptor described in the literature, the guinea-pig distal colon appears to be the most sensitive model to date, making it a useful tool in the investigation of 5-HT4 receptor-mediated events.

4-Aminobenzoic Acid↗

Monoamine oxidase and catechol-O-methyl transferase activity in Tetrahymena.

Tetrahymena pyriformis strain HSM was found to have monomine oxidase (MAO) and a catechol-3-methyl transferase-like (COMT) activity. As in mammalian tissues, the MAO activity is predominantly localized in the mitochondrial pellet and COMT in the cytosol. The COMT-like activity was present in amounts comparable to several mouse tissues and was inhibited by tropolone. MAO activity was much lower than in any of the mouse tissues tested, and its activity varied greatly from preparation to preparation. The substrate preference of Tetrahymena MAO was tryptamine greater than serotonin greater than dopamine, and activity increased with increasing pH from pH 6.5 to pH 7.8, as does that of mouse liver MAO. Teh Km of Tetrahymena MAO for tryptamine was approximately 4 micrometer, an order of magnitude lower than that of mouse liver MAO. Sensitivity of inhibition by MAO inhibitors was variable. In some preparations, no inhibition was observed. In others clear inhibition was obtained, harmine and clorgyline being among the most potent inhibitors.

Animals↗

Determination of kinetic properties of serotonin-N-acetyltransferase in bovine pineal gland using HPLC with fluorimetric detection.

The determination of serotonin-N-acetyltransferase (NAT) activity in the bovine pineal gland and other rat tissues was based upon the separation and detection of N-acetyltryptamine formed from tryptamine and acetyl CoA by means of high performance liquid chromatography with fluorimetric detection. In the bovine pineal the enzyme exhibited a Km value of 31.45 +/- 4.98 microM and a Vmax value of 30.90 +/- 1.18 pmol N-acetyltryptamine/min/mg protein for tryptamine, and a Km value of 28.72 +/- 7.50 microM and a Vmax value of 25.90 +/- 1.50 pmol N-acetyltryptamine/min/mg protein for acetyl CoA. The present method is simple, allows the determination of NAT activity from a variety of enzyme sources, has application to pharmacological studies of NAT regulation in tissue cultures, and provides an alternative to current radioenzymatic assays.

Animals↗

5-Hydroxytryptamine is a substrate for both species of monoamine oxidase in beef heart mitochondria.

The activity of beef heart mitochondrial monoamine oxidase towards 5-hydroxytryptamine (5-HT) is inhibited by the selective inhibitors clorgyline, PCO [5-phenyl-3-(N-cyclopropyl)-ethylamine-1,2,4-oxidiazole] and Deprenyl with a biphasic dependence on the inhibitor concentration. The activities towards tyramine, dopamine and tryptamine were also inhibited in a biphasic manner, but the apparent proportions of the two enzyme species active on dopamine and tryptamine depended on the inhibitor used. Phenethylamine oxidation was inhibited in a monophasic manner suggesting that only a single enzyme species was responsible for the oxidation of this substrate. The biphasic response of 5-HT oxidation to inhibition by clorgyline persisted when functionally competent mitochondria were used and was unaffected by the soluble amine oxidase inhibitors semicarbazine and aminoguanidine. These results indicate that the behaviour of the beef heart enzyme towards selective inhibitors is considerably different from that of any preparations previously studied and suggest that the classification of monoamine oxidase activites into A and B types may be only of limited usefulness.

Amines↗

Synthesis of 3-amino-2-(3-indolyl)propanol and propanoate derivatives and preliminary cardiovascular evaluation in rats.

A series of tryptamine analogues has been prepared and tested for their 5-HT1 receptor agonist properties. The incorporation of an alkoxy group at the C-5 position of the indole nucleus resulted in a short-lived and dose-dependent immediate antihypertensive and bradycardic response in anaesthetized spontaneously hypertensive rats (SHR). In addition, a carbomethoxy function at the beta-position of the side-chain of the tryptamines significantly increased the mean resting arterial blood pressure (MAP) in pithed rats and also produced contraction of the canine basilar artery in a dose-dependent fashion. Structure-activity relationships (SAR) suggest that the 5-alkoxy group is an important pharmacophore in the production of the antihypertensive effect and that the introduction of a hydroxymethylene group on the side-chain, instead of the carbomethoxy group, changed the receptor affinity profile.

5-Methoxytryptamine↗

Regulation of early reactions in the biosynthesis of tryptophan in Neurospora crassa.

Lester, Gabriel (Reed College, Portland, Ore.). Regulation of early reactions in the biosynthesis of tryptophan in Neurospora crassa. J. Bacteriol. 85:468-475. 1963.-The regulation of the biosynthesis of tryptophan was examined in Neurospora crassa, strain ylo-tryp-la, which accumulates anthranil compounds. The block in this strain appeared to be in the conversion of 1-(o-carboxyphenylamino)-1-deoxyribulose-5-phosphate to indole-3-glycerol phosphate, since the dephosphorylated form of the former compound, the anthranilic ribonucleoside, and the anthranilic acid were found. Cells cultured on levels of l-tryptophan greater than 0.1 mumole per ml were almost devoid of anthranilate-synthesizing activity, whereas cells cultured on low levels of tryptophan (e.g., 0.025 mumole/ml) could produce anthranilate at a rate of 125 mmumoles per mg (dry wt) per hr. A repressive effect was also caused by d-, 5-methyl-dl-, and 6-methyl-dl-tryptophan, but none of these compounds was as effective a repressor as l-tryptophan. Neither 4-methyl-dl-tryptophan, tryptamine, nor indole-3-acetic acid repressed the formation of anthranilate-synthesizing activity. Preformed activity was strongly inhibited by l-tryptophan, and to a lesser extent by 4-, 5-, and 6-methyl-dl-tryptophan; d-tryptophan, tryptamine, or indole-3-acetic acid did not inhibit preformed anthranilate-synthesizing activity. These results are indicative of the operation of repression and feedback-inhibition mechanisms early in the biosynthetic sequence leading to tryptophan. The relation of these results to those concerned with other aspects of tryptophan biosynthesis is discussed.

Glycerophosphates↗

Biogenic monoamines in early embryos of sea urchins.

Indolylalkylamine determination was performed on the eggs and embryos of six species of sea urchins, using several fluorometric techniques, including the fluorescence of a substance itself and the fluorescence of its condensation products after treatment with orthophthaldialdehyde and ninhydrin. The serotonin-like substance of sea urchin embryos as well as of adults was shown to consist of at least two components, of which the major one is tryptamine or its derivative with a substituting group at aminonitrogen. Further, serotonin was found to be present at all developmental stages investigated. although at much lower concentrations. The results of this study suggest a regulatory role of 'prenervous' tryptamine in the early embryogenesis of the sea urchin.

Animals↗

The kinetics of norepinephrine-induced stimulation of serotonin N-acetyltransferase in bovine pineal gland.

Fresh pineal explants were cultured in medium 199 containing 0.1 mg/ml of ascorbic acid, 2 mM glutamine, and 0.1% BSA in 95% O2 and 5% CO2 from 1 to 10 h. Norepinephrine (10 micrometers) increased serotonin N-acetyltransferase (NAT) activity from 2.36+ / -0.23 to 6.98+ / -0.46 pmol product produced/mg protein/min (unit), without influencing tryptophan hydroxylase, 5-hydroxytryptophan decarboxylase, monoamine oxidase, or hydroxyindole-O-methyltransferase. Dibutyryl cyclic AMP (1 mM) also stimulated NAT from 1.39+ / -0.12 to 4.33+ / -0.65 U. The norepinephrine-induced stimulation of NAT was blocked by GABA (10 micrometers), by dl-propranolol (20 micrometers), by cycloheximide (30 micrometers), by puromycin (20 micrometers), but not by actinomycin D (10 micrometers). Comparing the kinetics of native and stimulated NAT, the occurred changes in Vmax with regard to both substrates - tryptamine (from 0.885 to 3.44 U) and acetyl CoA (from 3.45 to 9.10 U) - without changes in Km with respect to both tryptamine (Km = 5 micrometers) and acetyl CoA (Km = 50 micrometers). The results of this investigation are interpreted to indicate that the norepinephrine-induced stimulation of NAT may be due to enhanced protein synthesis involving translational or post-translational events. Furthermore, the enhanced protein synthesis is coupled through activation of beta-receptor and cyclic AMP mediated actions in pineal gland. The precise interrelationship between GABA and norepinephrine in mediating and perhaps in controlling the biological events in the bovine pineal gland still awaits clarificaton.

Acetyltransferases↗

Platelet thromboxane synthesis and release reactions in myeloproliferative disorders.

A group of patients with myeloproliferative disorders was studies with respect to platelet aggregation responses, release of beta-thromboglobulin and incorporated 5-hydroxy-tryptamine, and synthesis of thromboxane b 2. In all patients the resting plasma beta-thrombo-globulin was elevated. Aggregation responses were frequently impaired to adrenaline, arachidonic acid, A23187 and the prostaglandin endoperoxide analogue, U44069. Both 5-hydroxy-tryptamine and beta-thromboglobulin release were greater with patients' platelets than with those of controls in response to adrenaline, ADP and U44069. The patients' platelets produced more thromboxane B2 than did controls, irrespective of the agonist used, yet those aggregating agents which are thought to act by generating thromboxane A2 were relatively ineffective in causing aggregation. This might reflect resistance to thromboxane A2 action in these patients, which is met by increased thromboxane formation.

Adenosine Diphosphate↗

Stimulation of aortic smooth muscle prostacyclin by serotonin: role of distinct receptors in contractile and synthetic states.

It has been shown previously that serotonin stimulates the production of prostacyclin by bovine aortic smooth muscle cells in culture, via 5-HT2 receptors (Coughlin SR, Moskowitz MA, Antoniades HN, Levine L. Proc Natl Acad Sci USA 1981;78:7134-7138). These cells express a synthetic phenotype, whereas the majority of the smooth muscle cells in the media from adult arteries are in a contractile state. We have now compared 5-HT stimulated prostacyclin production in bovine aortic media explants, a preparation of contractile smooth muscle, with cultured smooth muscle cells derived from the explants. In the 1-10 microM range, serotonin stimulates the release of prostacyclin from the explants of bovine aortic media, cultured for a short period. In the presence of cocaine (30 microM), 1 microM was sufficient to produce a maximal effect. The stimulatory action of serotonin was sustained with time and did not induce a lasting desensitization. The effect of serotonin on the explants was inhibited only partially (+/- 30%) by ketanserin, a selective and potent 5-HT2 antagonist. It was mimicked by 5-carboxamido-tryptamine, a 5-HT1 agonist, but was only weakly inhibited by methiothepin, a 5-HT1 antagonist. As expected, in cultured smooth muscle cells, 5-carboxamido-tryptamine was only a weak agonist in stimulating prostacyclin production. In conclusion, it appears that the serotonin effect on prostacyclin production is mediated by different receptors in media explants from bovine aortic media and cultured cells obtained by outgrowth from these explants: a 5-HT2 receptor in the smooth muscle cells in culture and a receptor presenting some similarities with 5-HT1 receptors in the explants.

Animals↗

Human trabecular meshwork cells express functional serotonin-2A (5HT2A) receptors: role in IOP reduction.

PURPOSE: To apply a multidisciplinary approach to the identification and pharmacological characterization of the serotonin (5HT) receptors that mediate functional responses in human trabecular meshwork (h-TM) cells. To correlate in vitro findings with intraocular pressure (IOP) changes in conscious ocular hypertensive cynomolgus monkeys. METHODS: Documented methods were used, including reverse transcription-polymerase chain reaction (RT-PCR), phosphoinositide (PI) turnover, and intracellular Ca2+ ([Ca2+]i) mobilization. IOP was measured using standard applanation pneumatonometry. RESULTS: h-TM cells expressed robust mRNA signals for 5HT2A and 5HT2B receptors. 5HT and its analogues stimulated PI turnover and [Ca2+]i mobilization in h-TM cells from multiple donors (20/24 donors' TM cells responded). The agonist potencies (EC50) of compounds in mobilizing [Ca2+]i were (nM): 5-methoxy tryptamine, 8 +/- 4; (R)-DOI, 18 +/- 6; alpha-methyl-5HT, 22 +/- 3; 5HT, 40 +/- 7; 5-methoxy-dimethyl tryptamine, 64 +/- 27; and BW-723C86, 1213 +/- 210. These effects were potently blocked by the 5HT2A-receptor-selective antagonist, M-100907 (Ki = 1 +/- 0.3 nM), but weakly by antagonists of 5HT2B and 5HT2C receptors. Only 5HT2 receptor agonists such as (R)-DOI (300 microg lowered IOP 34.4% from baseline of 38.2 mm Hg; P < 0.001) and alpha-methyl-5HT (250 microg lowered IOP 30.8% from baseline of 41.8 mm Hg; P < 0.001) lowered IOP in ocular hypertensive cynomolgus monkeys. CONCLUSIONS: Strong signals for 5HT2A and 5HT2B receptor mRNAs were detected in h-TM cells. The receptors that coupled to PI hydrolysis and [Ca2+]i mobilization in h-TM cells were the 5HT2A receptor subtype, which also significantly lowered IOP in a primate model. These receptors may mediate the ocular hypotensive actions of 5HT2A agonists.

Adolescent↗