ABSTRACT
The introduction of arylmethyl substituents on the amine nitrogen atom of phenethylamines and tryptamines often results in profound increases in their affinity and functional activity at 5-HT2 serotonin receptors. To probe the sensitivity of this effect to substantially larger N-substituents, ten derivatives of the well-characterized psychedelic phenethylamine 2C-B were prepared by appending different dibenzo[b,d]furylmethyl (DBFM) moieties to the basic nitrogen. The DBFM group attached to the amino group through its 1-, -2-, or 3-position decreased affinity and agonist activity at the 5-HT2A/2C receptors. Substitution through the 4-position usually favored affinity for all three 5-HT2 receptor subtypes with compound 5 exhibiting 10- and 40-fold higher affinities at the 5-HT2A and 5-HT2C receptors, respectively, but less than fourfold selectivity among the three receptor subtypes. Nevertheless, all were relatively weak partial 5-HT2AR agonists, mostly in the low micromolar range, but full or nearly full agonists at the 5-HT2C subtype as determined in a calcium mobilization assay. Molecular docking simulations suggested that the dibenzofuryl portion dives more deeply into the orthosteric binding site of the 5-HT2A than the 5-HT2C receptor, interacting with the Trp3366.48 toggle switch associated with its activation, while the phenylamine moiety lies close to the extracellular side of the receptor. In conclusion, a very bulky N-substituent on a phenethylamine 5-HT2 receptor agonist is tolerated and may increase affinity if its orientation is appropriate. However, the Gq protein-mediated potencies are generally low, with low efficacy (relative to 5-HT) at the 5-HT2A receptor, somewhat higher efficacy at the 5-HT2B subtype, and full or nearly full efficacy at the 5-HT2C subtype.
Subject(s)
Hallucinogens , Serotonin , Serotonin 5-HT2 Receptor Agonists , Receptor, Serotonin, 5-HT2A , Molecular Docking Simulation , Phenethylamines , Nitrogen , Receptor, Serotonin, 5-HT2CABSTRACT
Eighteen alkaloids were detected in the bark, leaves, wood and roots of Peumus boldus, including traces of secoboldine, N-methylsecoboldine (boldine methine), glaucine and norreticuline, not reported previously as constituents of this species. Using appropriate standards, we quantified thirteen of them by UHPLC-MS/MS. Boldine was dominant in the bark, and laurolitsine in wood and roots. The alkaloid composition of the leaves, determined for 130 individually identified trees, classified by age and sex, was highly variable, where N-methyllaurotetanine, laurotetanine, coclaurine and in some cases isocorydine predominated, but not boldine.
Subject(s)
Alkaloids/chemistry , Peumus/chemistry , Aporphines , Chromatography, High Pressure Liquid , Isoquinolines , Plant Bark/chemistry , Plant Extracts/chemistry , Plant Leaves/chemistry , Plant Roots/chemistry , Tandem Mass Spectrometry , Wood/chemistryABSTRACT
Two series of diaza derivatives were prepared by solvent-free condensation of benzoic acid and 4-substituted phenylhydrazines in order to obtain phenylhydrazides (HYD series) and, by oxidation of these compounds, the corresponding benzoyldiazenes (DIA series). Both sets were evaluated as inhibitors of soybean 15-lipoxygenase activity and antioxidant capability in the FRAP and CUPRAC assays. The most potent inhibitors of both series exhibited IC50 values in the low micromolar range. Kinetic studies showed that at least the more active compounds were competitive inhibitors. Docking results indicated that the most potent inhibitor interacts strongly with Ile-839 and iron in the active site.
Subject(s)
Antioxidants/chemistry , Arachidonate 15-Lipoxygenase/metabolism , Benzoates/chemistry , Hydrazines/chemistry , Imides/chemistry , Lipoxygenase Inhibitors/chemistry , Antioxidants/chemical synthesis , Antioxidants/pharmacology , Benzoates/chemical synthesis , Benzoates/pharmacology , Chemistry Techniques, Synthetic/economics , Chemistry Techniques, Synthetic/methods , Humans , Hydrazines/chemical synthesis , Hydrazines/pharmacology , Imides/chemical synthesis , Imides/pharmacology , Lipoxygenase Inhibitors/chemical synthesis , Lipoxygenase Inhibitors/pharmacology , Molecular Docking Simulation , Oxidation-Reduction , Glycine max/drug effects , Glycine max/enzymology , Structure-Activity RelationshipABSTRACT
This paper provides the full (13) C NMR assignments for the trifluoroacetamides of five potentially appetite-reducing 5-HT2C benzazepine receptor agonists and two open-ring synthetic precursors. These compounds exist in solution as mixtures of two rotamers for each of which the (13) C NMR signals have now been assigned with the assistance of 2D NMR experiments and the carbonyl-induced shifts of the neighboring (13) CH2 resonances and long-range (13) C/(19) F couplings.