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D Sugden

Publications and source records attributed to D Sugden.

At least 55 records · Page 3Linked to original sources

N-acyl-3-amino-5-methoxychromans: a new series of non-indolic melatonin analogues.

A novel series of melatonin analogues is described which are based on the chroman nucleus. These N-acyl-3-amino-5-methoxychromans competitively inhibit [125I]2-iodomelatonin binding to chicken brain membranes although with reduced affinity compared to melatonin. The slope of the competition curves suggests the interaction of the chromans with a single binding site. On cultured Xenopus laevis melanophores, the chroman analogues produce different responses; N-chloroacetyl-3-amino-5-methoxychroman (ClaMCh), like melatonin, is a full agonist at the melanophore receptor and produces a complete aggregation of pigment granules. In contrast, N-acetyl- and N-cyclopropyl-3-amino-5-methoxychroman have no agonist activity, while N-propionyl- and N-butanoyl-3-amino-5-methoxychroman produce only partial aggregation of pigment. ClaMCh is 40-fold weaker at inducing pigment aggregation in melanophores (EC50 = 15 microM) than in inhibiting [125I]2-iodomelatonin binding in chicken brain membranes (Ki = 0.38 microM) suggesting that this analogue may discriminate between melanophore and chicken brain melatonin receptors. Chroman-based melatonin analogues may be useful tools for characterizing potential melatonin receptor subtypes.

Animals↗

Thermodynamic analysis of agonist and antagonist binding to the chicken brain melatonin receptor.

1. The binding of 2-[125I]-iodomelatonin to chicken brain membranes, and the inhibition of binding by melatonin, N-acetyltryptamine and luzindole, were examined at temperatures between 4 degrees C and 37 degrees C. 2. At all temperatures studied, the binding affinity (Kd or Ki) for 2-[125I]-iodomelatonin, melatonin (both agonists) and, to a lesser extent, N-acetyltryptamine (a partial agonist) was reduced by inclusion of guanosine triphosphate (GTP, 1 mM) in the assay. GTP did not affect the Ki for luzindole, a melatonin receptor antagonist. 3. The maximal density of binding sites (Bmax) was not affected by temperature but the Kd showed a peak at 21 degrees C with lower values at both higher and lower temperatures giving curvilinear van't Hoff plots (lnKA vs l/temperature). 4. Derived changes in entropy (delta S degree) and enthalpy (delta H degree) of binding for all of the melatonin ligands decreased as temperature increased. 5. The affinity, and thus the free energy of binding, delta G degree, of these ligands at the melatonin receptor have identical values at several temperatures yet at these temperatures delta S degree and delta H degree were very different, implying that more than one intermolecular force must be involved in the binding of ligand and receptor. 6. Conceivably, the large positive delta S degree observed at low temperatures, perhaps as a result of hydrophobic interactions, is compensated by a corresponding, but opposite, change in enthalpy at higher temperatures. However, it is not clear what type of binding force(s) would show such a temperature-dependence. 7. These studies suggest that caution must be exercised in the molecular interpretation of derived measures of delta S degree and delta H degree obtained from direct measurements of delta G degree.

Animals↗

N-bromoacetyl 5-methoxytryptamine: an irreversible melatonin ligand?

The effects of N-bromoacetyl 5-methoxytryptamine (BraMT) and some related bromoacyl melatonin and tryptamine derivatives on 2-[125I]iodomelatonin (2-[125I]aMT) binding in chicken brain membranes were examined. All analogues displaced specific binding to chicken brain membranes in a concentration-dependent manner. Preincubation of chicken brain membranes with BraMT (10(-8)M) did not significantly alter either 2-[125I]aMT binding site affinity (Kd) or density (Bmax). SDS polyacrylamide gel electrophoresis of chicken brain membrane proteins preincubated with 2-[125I]BraMT indicated that numerous proteins were labelled. The incorporation of radiolabel into these proteins was not blocked by melatonin, 2-iodomelatonin or N-(1,4 dinitrophenyl)-5-methoxytryptamine (ML-23), but was reduced by BraMT. In contrast to previous reports on hamster and rat brain membranes, the present results provide no evidence that BraMT or 2-[125I]BraMT affinity labels specific melatonin binding proteins in chicken brain.

5-Methoxytryptamine↗

Antigonadal effects of two novel melatonin analogues in adult Djungarian hamsters.

This study examined the effects of two novel melatonin analogues in adult Djungarian hamsters housed under long photoperiod (LD 16:8). Daily injection (10 micrograms, s.c.) of either melatonin, 5-methoxy N-butanoyltryptamine (bMT), or 5-methyl N-butanoyltryptamine (5-MebT) 3 hr before lights off for 8 weeks led to a significant decrease in paired testis weight compared to vehicle-injected controls. The reduction in testis weight was of similar magnitude with melatonin and bMT, but 5-MebT was not as effective. The affinity of the analogues was determined in competition experiments using chicken brain membranes and 2-[125I]iodomelatonin (2-[125I]aMT). Replacing the N-acetyl side-chain of melatonin with an N-butanoyl group increased affinity for the chicken brain 2-[125I]aMT binding site, but exchanging the 5-methoxy group of melatonin for a 5-methyl group reduced affinity. These studies show that these analogues not only inhibit 2-[125I]aMT binding in vitro but also mimic melatonin's antigonadal activity in vivo.

Animals↗

The ontogeny of 2-[125I]iodomelatonin binding sites in chicken brain.

The characteristics of the binding sites for 2-[125I]iodomelatonin were studied in chicken brain membranes during development. Specific binding, defined using cold melatonin (1 microM), was detected as early as 8-day-old embryos. Scatchard analysis of saturation experiments showed that 2-[125I]iodomelatonin binds to a single class of site at all ages tested (8-day-old embryos to 3-month-old chicks). Binding affinity (Kd) did not change during development (18-31 pM), but the maximal number of binding sites (Bmax) increased until embryonic day 18, and then remained relatively constant until 30 days of age. A further increase in Bmax was seen at 3 months of age. Guanosine 5'-triphosphate (GTP, 1 mM) inhibited 2-[125I]iodomelatonin binding at all ages suggesting that the melatonin binding site is coupled to a guanine nucleotide binding protein at a very early stage of development. Competition experiments with a number of melatonin analogues indicated that the binding site detected in the brain at embryonic day 8 was pharmacologically identical to that observed 15 days after hatching.

Aging↗

Effect of putative melatonin receptor antagonists on melatonin-induced pigment aggregation in isolated Xenopus laevis melanophores.

The ability of putative melatonin receptor antagonists to antagonise melatonin-induced aggregation of pigment granules in cultured neural crest Xenopus laevis melanophores was examined. Neither ML 23 (N-(2,4-dinitrophenyl)-5-methoxytryptamine) nor 6-methoxy-2-benzoxazolinone showed agonist or antagonist activity. N-Acetyltryptamine and N-butanoyltryptamine were partial agonists; both compounds aggregated pigment granules in some cells, but also reversed melatonin-induced pigment agreggation in a fraction of the cells tested. In contrast, 2-benzyl N-acetyltryptamine (luzindole) did not show agonist activity (upto 10 microM) but did reverse the aggregating action of melatonin at 1 and 10 microM. Pretreatment of melanophores with luzindole shifted the melatonin concentration-response curve to the right.

Animals↗

Characterization of 2-[125I]iodomelatonin binding sites in the brain of a marsupial, Bennett's wallaby (Macropus rufogriseus rufogriseus).

1. Specific high affinity binding of 2-[125I]iodomelatonin was detected in the brain of the pouch young of a marsupial, Bennett's wallaby. 2. Binding was rapid, stable, saturable and reversible. 3. Scatchard analysis indicated a single class of high affinity binding sites with an equilibrium dissociation constant (Kd) of 68 +/- 13 pM, a maximal number of binding sites (Bmax) of 0.7 +/- 0.1 fmol/mg protein and a Hill coefficient (nH) of 1.12 +/- 0.10. 4. Specific binding was inhibited by GTP (1 mM) indicating that the melatonin receptor is coupled to a guanine nucleotide binding protein, and by melatonin and closely related analogues with a potency order identical to that reported previously in the brain of eutherian mammals, birds and a reptile. 5. These studies suggest that the melatonin receptor is well-conserved through evolution.

Animals↗

Protein kinase C activation antagonizes melatonin-induced pigment aggregation in Xenopus laevis melanophores.

The pineal hormone, melatonin (5-methoxy N-acetyltryptamine) induces a rapid aggregation of melanin-containing pigment granules in isolated melanophores of Xenopus laevis. Treatment of melanophores with activators of protein kinase C (PKC), including phorbol esters, mezerein and a synthetic diacylglycerol, did not affect pigment granule distribution but did prevent and reverse melatonin-induced pigment aggregation. This effect was blocked by an inhibitor of PKC, Ro 31-8220. The inhibitory effect was not a direct effect on melatonin receptors, per se, as the slow aggregation induced by a high concentration of an inhibitor of cyclic AMP-dependent protein kinase (PKA), adenosine 3',5'-cyclic monophosphothioate, Rp-diastereomer (Rp-cAMPS), was also reversed by PKC activation. Presumably activation of PKC, like PKA activation, stimulates the intracellular machinery involved in the centrifugal translocation of pigment granules along microtubules. alpha-Melanocyte stimulating hormone (alpha-MSH), like PKC activators, overcame melatonin-induced aggregation but this response was not blocked by the PKC inhibitor, Ro 31-8220. This data indicates that centrifugal translocation (dispersion) of pigment granules in Xenopus melanophores can be triggered by activation of either PKA, as occurs after alpha-MSH treatment, or PKC. The very slow aggregation in response to inhibition of PKA with high concentrations of Rp-cAMPS, suggests that the rapid aggregation in response to melatonin may involve multiple intracellular signals in addition to the documented Gi-mediated inhibition of adenylate cyclase.

Adenosine Monophosphate↗

Pharmacological identity of 2-[125I]iodomelatonin binding sites in chicken brain and sheep pars tuberalis.

2-[125I]Iodomelatonin was used to compare the binding and pharmacological characteristics of the melatonin receptor sites found in chicken brain and sheep pars tuberalis. Scatchard analysis and kinetic experiments showed that 2-[125I]iodomelatonin binds to a single class of site in both tissues with high affinity (Kd 20-34 pM). Competition experiments, using 21 analogues of melatonin, gave inhibition constants (Ki) for the two sites which were significantly correlated (r = 0.985, n = 21, P less than 0.0001). We conclude that the 2-[125I]iodomelatonin binding sites in sheep pars tuberalis and chicken brain have identical binding and pharmacological characteristics.

Animals↗

Down-regulation of pinealocyte protein kinase C: effect on alpha 1-adrenergic potentiation of beta-adrenoceptor stimulation of cyclic AMP accumulation and induction of serotonin N-acetyltransferase activity.

Treatment of rat pinealocytes with 4 beta-phorbol 12,13-dibutyrate down-regulated protein kinase C (PKC) activity. Loss of activity was concentration-dependent (50% loss at 8 x 10(-7) M after 18 h of treatment) and time-dependent (50% loss after 2 h with 3 x 10(-6) M). Phenylephrine, an alpha 1-adrenergic agonist, and phorbol esters unable to activate PKC did not down-regulate the enzyme. alpha 1-Adrenergic amplification of beta-adrenergic stimulation of cyclic AMP accumulation, a response previously shown to be mediated by PKC activation, was reduced by only 50% in cells in which PKC activity was down-regulated by approximately 95%. These data suggest that there is not a simple proportional relationship between the degree of activation of pinealocyte PKC and the alpha 1-adrenergic amplification of beta-adrenergic cyclic AMP synthesis. In down-regulated cells, alpha 1-adrenergic amplification of beta-adrenergic induction of serotonin N-acetyltransferase activity, a key cyclic AMP-responsive enzyme involved in the nocturnal synthesis of the pineal hormone melatonin, was unchanged. Thus, even though alpha 1-adrenergic amplification of cyclic AMP synthesis is impaired, sufficient cyclic AMP is generated to allow a full induction of serotonin N-acetyltransferase activity. This finding raises the important question of whether the alpha 1-adrenergic amplification mechanism has a physiological role in regulating melatonin synthesis in vivo.

Adrenergic alpha-Agonists↗

Guanine nucleotides regulate 2-[125I]iodomelatonin binding sites in chick retinal pigment epithelium but not in neuronal retina.

The characteristics of the binding sites labeled by the radioligand 2-[125I]iodomelatonin were compared in chicken neuronal retina and retinal pigment epithelium (RPE). Specific binding of 2-[125I]iodomelatonin in both sites was stable, saturable, reversible, and of high affinity. Scatchard analysis revealed an affinity constant (KD) of 446 +/- 55 pM and a total number of binding sites (Bmax) of 25.4 +/- 2.2 fmol/mg of protein for neuronal retina. For RPE the KD was 34.1 +/- 2.2 pM and the Bmax 59.5 +/- 5.2 fmol/mg of protein. Competition experiments with various melatonin analogues gave the following order of affinities: 2-iodomelatonin greater than 2-chloromelatonin greater than melatonin greater than 6-chloromelatonin greater than 6-hydroxymelatonin greater than N-acetylserotonin greater than 6-methoxyharmalan greater than 5-hydroxytryptamine. Linear regression of log Ki values from neuronal retina and RPE gave a highly significant correlation (r = 0.994, n = 8; p less than 0.001). GTP inhibited specific binding to RPE membranes in a concentration-dependent manner, but not in neuronal retinal membranes. The present results strongly suggest that a single type of melatonin receptor is found in neuronal retina and RPE, and that the site in RPE is coupled to a guanine nucleotide-binding regulatory protein (G protein), but that in neuronal retina is not.

Adenine Nucleotides↗

Aggregation of pigment granules in single cultured Xenopus laevis melanophores by melatonin analogues.

1. Isolated melanophores were differentiated from aggregates of neural crest obtained from neurula stage Xenopus laevis embryos after 2 days in culture. 2. Condensation of pigment granules in these cells by melatonin (5-methoxy N-acetyltryptamine, aMT) and various novel analogues was monitored with an image analysis system to quantitate the area occupied by pigment in individual cells. 3. Melanophores exposed to vehicle (a maximum of 0.1% MeOH) showed little (less than 5%) change in pigment area. aMT produced a dramatic condensation of pigment granules (EC50 = the concentration producing a half maximal condensation, 9 pM). The response was rapid, reached a maximum (approximately 80% decrease in pigmented area) by 10 min, and was reversible after removal of aMT from the culture medium. 4. Aggregation to aMT was blocked by treating melanophores with pertussis toxin (1 microgram ml-1, 7 h) indicating a role for a guanosine 5' triphosphate (GTP)-binding protein in transducing the aMT receptor signal. 5. Structure-activity studies indicated that analogues of aMT lacking a side-chain N-acyl substituent (5-methoxytryptamine, MT) or a group at the 5-position of the indole ring (N-acetyltryptamine, aT) were unable to induce pigment aggregation (EC50 greater than 10 microM). 6. Lengthening the side-chain N-acyl group (N-propionyl, N-butanoyl) was tolerated to some degree but eventually (N-valeroyl and larger) activity diminished. Of the 5-position analogues tested 5-methoxy (aMT) was by far the most potent. 7. Halogen substitution in the 6-position of the indole ring led to some loss of activity as did a 6-OH substitution. The 6-OCH3 compound was inactive.8. These studies demonstrate the utility of this model in investigations of structure-activity relationships at the aMT receptor and suggest that it may be a valuable system for determining the transduction mechanisms coupled to the aMT receptor.

Animals↗

The assessment of movement skill problems in 7- and 9-year-old children.

This paper is part of a project examining movement skill problems in an educational setting, and aims to provide guidelines for the assessment and management of movement problems within the primary school. The first part of the project reported here involves teachers assessing children on tasks they perform in day to day school life. A Motor Competence Checklist (MCC) was developed and tested on 350 seven- and nine-year-old children. Developmental differences were shown on every section of the MCC, and in the bottom 10 per cent of scores boys outnumbered girls by a ratio between 2 and 3 to 1. The nature of movement problems was examined by analysing profiles of children identified by the MCC, and the resulting profiles suggest there is a need to move away from viewing children with movement problems as an homogeneous group.

Child↗

Characterization of binding sites for [3H]-DTG, a selective sigma receptor ligand, in the sheep pineal gland.

Specific binding sites for [3H]-1,3 di-ortho-tolylguanidine ([3H]-DTG), a selective radiolabeled sigma receptor ligand, were detected and characterized in sheep pineal gland membranes. The binding of [3H]-DTG to sheep pineal membranes was rapid and reversible with a rate constant for association (K+1) at 25 degrees C of 0.0052 nM-1.min-1 and rate constant for dissociation (K-1) 0.0515 min-1, giving a Kd (K-1/K+1) of 9.9 nM. Saturation studies demonstrated that [3H]-DTG binds to a single class of sites with an affinity constant (Kd) of 27 +/- 3.4 nM, and a total binding capacity (Bmax) of 1.39 +/- 0.03 pmol/mg protein. Competition experiments showed that the relative order of potency of compounds for inhibition of [3H]-DTG binding to sheep pineal membranes was as follows: trifluoperazine = DTG greater than haloperidol greater than pentazocine greater than (+)-3-PPP greater than (+/-)SKF 10,047. Some steroids (testosterone, progesterone, deoxycorticosterone) previously reported to bind to the sigma site in brain membranes were very weak inhibitors of [3H]-DTG binding in the present study. The results indicate that [3H]-DTG binding sites having the characteristics of sigma receptors are present in sheep pineal gland. The physiological importance of these sites in regulating the synthesis of the pineal hormone melatonin awaits further study.

Animals↗

Pertussis toxin does not inhibit alpha 1-adrenergic potentiation of beta-adrenergic stimulation of cyclic AMP accumulation in rat pinealocytes.

The hypothesis that Gi might be involved in the alpha 1-adrenergic, protein kinase C (PKC)-mediated amplification of beta-adrenergic cyclic AMP stimulation in rat pinealocytes was investigated. Treatment of pinealocytes with a high concentration of pertussis toxin (500 ng/ml, 18 h) almost completely (approximately 95%) inactivated two cell membrane G-proteins (kDa 40.7 and 39.8) judged by back ADP-ribosylation of pinealocyte membrane proteins. However, this treatment failed to inhibit either the beta-adrenergic (isoprenaline, ISO 10(-6) M), alpha 1-plus beta-adrenergic (noradrenaline, NA 10(-5) M) or beta-adrenergic plus 12-O-tetradecanoylphorbol 13-acetate (TPA 10(-7) M) induced stimulation of cyclic AMP or cyclic GMP. These results suggest that alpha 1-adrenergic potentiation of beta-adrenergic stimulation of cyclic AMP and cyclic GMP does not involve a pertussis toxin-sensitive G-protein.

Adenosine Diphosphate Ribose↗

Beta-adrenergic regulation of cyclic GMP in rat pinealocytes.

Stimulation of rat pinealocyte cyclic GMP by beta-adrenergic agonists (in the presence of prazosin to block alpha 1-adrenoceptors) showed an identical potency order (isoproterenol greater than epinephrine = norepinephrine much greater than salbutamol greater than terbutaline) to the stimulation of pinealocyte cyclic AMP. The increase in cyclic AMP and cyclic GMP produced by norepinephrine was inhibited by various subtype-selective beta-adrenergic antagonists with the same potency order (propranolol greater than atenolol = ICI 118,551 greater than practolol). These results indicate that pinealocytes have a single beta-adrenoceptor, of the beta 1-subtype. Activation of this beta 1-adrenoceptor mediates adrenergic stimulation of not only cyclic AMP but also cyclic GMP.

Adrenergic alpha-Agonists↗

5-Hydroxytryptamine amplifies beta-adrenergic stimulation of N-acetyltransferase activity in rat pinealocytes.

In cultured rat pinealocytes beta-adrenergic induction of N-acetyltransferase, a key enzyme in the synthesis of melatonin, is amplified by addition of 5-hydroxytryptamine (5-HT) to the culture medium. However, 5-HT when added alone has no effect on enzyme activity. Pharmacological experiments with a range of agonists and antagonists suggest that this action is not mediated by 5-HT1, 5-HT2, 5-HT3, or 5-HT4 receptor subtypes but may involve a site similar to the 5-HT1p receptor described in the enteric nervous system. The potential role of 5-HT in modulating adrenergic stimulation of N-acetyltransferase activity is discussed.

Adrenergic beta-Agonists↗