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Action of propranolol in mania: comparison of effects of the d- and the l-stereoisomer.

The antimanic action of high doses of the beta-receptor blocking agent propranolol was investigated by the use of a double-blind placebo controlled ABA design. For comparison, the d-stereoisomer (which is practically devoid of beta-blocking activity) was used. 6 trials were performed with d-propranolol, 6 trials with the racemic mixture. From dose-effect relations one can conclude that the d-stereoisomer is about half as effective against manic syndromes as the racemic mixture. From this finding it can be concluded that the antimanic action of propranolol is at least partially due to a mechanism independent of its beta-blocking action.

Adult

Antiarrhythmic activity of dextro- and levo-isomers of 5-methyl-8-(2-hydroxy-3-t-butylamino-propoxy) coumarin hydrocholoride (bucumolol), a beta-adrenergic blocking agent, on aconitine-induced atrial and ouabain-induced ventricular arrhythmias in dogs.

The beta-blocking, antiarrhythmic, and local anesthetic effects of the racemic mixture and optical isomers of bucumolol, 5-methyl-8-(2-hydroxy-3-t-butylamino-propoxy) coumarin hydrochloride, were studied in dogs, guinea-pigs and frogs. In blocking the positive chrontropic response to isoproterenol, the levo-isomer of bucumolol was about 40 times more potent in dogs, and 270 times in guinea-pigs than its dextro-isomer and twice as effective in both species as the racemic mixture. In frog sciatic nerves bucumolol was 1/10-1/15 as potent in local anesthetic action as propranolol on a weight basis. Dextro- and levo-isomers and racemic bucumolol neither elevated electrical threshold for propagated impulses nor prolonged the effective refractory period of the dog right atrium. The levo-isomer and racemic bucumolol were capable of suppressing aconitine-induced atrial arrhythmia, while the dextro-isomer was less effective. Both isomers and racemic bucumolol were capable of reversing ventricular arrhythmia caused by ouabain, but the effective dose of the levo-isomer was significantly less than that of the dextro-isomer. The results suggest that both specific beta-blocking activity and non-specific membrane action of bucumolol suppressed experimental arrhythmias in dogs produced by aconitine and ouabain.

Aconitine

Metabolic deacetylation: in vitro and in vivo studies in man, rat, dog and rhesus monkey with isomeric tetrahydroisoquinolyl derivatives of 3,4-dimethylbenzyl acetate.

The pharmacological activities of a racemic mixture of tetrahydroisoquinolyl derivatives of 3,4-dimethylbenzyl acetate, (+/-) Ro 03-4661 and the corresponding resolved isomers (+) Ro 03-4661 and (--) Ro 03-4661 have been studied in rat and rhesus monkey. The racemate and the (--) isomer showed narcotic analgesic activity by the oral route in both species. Drug metabolism studies indicated that the activity was probably due to metabolic Deacetylation to the corresponding carbinol Ro 03-4632. deacetylation did not occur in the dog, but was observed in the rat and rhesus monkey. In both these species the hydrolysis was more extensive after oral than parenteral administration. In vitro studies also showed considerable species variation in the ability of blood and tissue esterases to hydrolyse the different stereochemical isomers.

Acetylation

Kinetics, salivary excretion of amphetamine isomers, and effect of urinary pH.

Amphetamine was administered to healthy subjects as the racemic mixture and as (+)- and (-)-isomers under conditions of urine acidification and alkalinization. Plasma and saliva concentration of each isomer was measured and the kinetics of the individual isomers were determined. (+)-amphetamine was eliminated more rapidly than the (-)-isomer. The difference in half-life between isomers was maximal under basic urinary pH conditions. Saliva amphetamine levels were higher than plasma levels and in the postabsorptive phase were predictably proportional to plasma drug levels.

Adult

[Cadaverine is an intermediate in the biosynthesis of arthrobactin and ferrioxamine E (author's transl)].

Cadaverin was more readily incorporated than lysine into arthrobactin from Arthrobacter pascens and into ferrioxamin E from Streptomyces glaucescens. From a racemic mixture only the L-isomer of lysine is incorporated. The L-lysine decarboxylase activity was measured in vivo and in vitro. The enzyme from Arthrobacter pascens is not inducable by lysine and completely repressed by 5.10(-6) M Fe3+. In Klebsiella pneumoniae, the producer of aerobactin, only a very low activity of L-lysine decarboxylase was detected.

Arthrobacter

Beta-structures of polypeptides with L-and D-residues. Part II. Statistical analysis and enrichment in enantiomer.

The possible formation of beta-structures from polypeptide chains with L-and D-Residues randomly distributed was statistically analyzed within the frame of two hypotheses. Firstly, only those segments containing residues of identical chirality can associate to form antiparallel beta-structures, and secondly these segments must have a minimum length. The influence of different factors was examined: initial ratio of the L-and D-monomer, minimum length required for the segments to be incorporated into beta-sheets, average length of the peptide molecules, and stereoselectivity in the course of the polymerization process. The results show that in all cases nuclei of beta-sheets surrounded by random coil segments are formed, the optical activity of which very increases to purity when the initial ratio of monomers deviates from the racemic mixture. This suggests experiments to enrich the system in one enantiomer. Comparison is made with the corresponding behavior and properties of the alpha-helical structure.

Isomerism

End product specificity of triacylglycerol lipases from intestine, fat body, muscle and haemolymph of the American cockroach, Periplaneta americana L.

The triacylglycerol-hydrolyzing capacity of tissue homogenates has been investigate for midgut, fat body, thoracic musculature and haemolymph of the American cockroach, Periplaneta americana. The greatest lipolytic activity was demonstrated in midgut homogenates with decreasing levels of activity present in fat body, muscle and haemolymph. Comparison of the lipolytic products resulting from triacylglycerol hydrolysis indicates that midgut homogenates effect the production of sn-2-monoacylglycerols and free fatty acids, whereas the other tissues that were examined favor the accumulation of diacylglycerols. Stereospecific analysis of the diacylglycerol products of triacylglycerol hydrolysis demonstrated that the lipolytic activities of midgut and muscle homogenates result in the production of a racemic mixture of the sn-1,2- and sn-2,3-enantiomers, but the fat body and haemolymph show a preference for the accumulation of the sn-1,2-isomer.

Animals

Stereospecific ring opening of conduritol-B-epoxide by an active site asparatate residue of sucrase-isomaltase.

Conduritol-B-epoxide inactivates sucrase-isomaltase (sucrose alpha-glucohydrolase, EC 3.2.1.48-dextrin 6-alpha-glucohydrolase, EC 3.2.1.10) irreversibly with incorporation of 1 mol inhibitor/mol subunit, the affinity label being bound in both subunits to a beta-carboxyl group of an aspartic acid (Quaroni, A. and Semnza; G. (1976) J. Biol. Chem. 251, 3250-3253). Conduritol-B-epoxide is a racemic mixture of 1-L-1,2-anhydro-myo-inositol and 1-D-1,2-anhydro-myo-inositol, but only the latter one is the reactive component, since 1-L-1,2-anhydro-myo-inositol alone did not inactivate the enzyme. After inactivation by 1-D-1,2-anhydro-myo-inositol the label was released by hydroxylamine and identified as scyllo-inositol. One can decide now which C atom of the epoxide ring has been attacked by the enzyme's aspartate residue. This explains why only the D-enantiomer is the reactive species and provides further information about the role of the carboxylate residue during enzymic hydrolysis.

Animals

Proconvulsant, convulsant and other actions of the D- and L-stereoisomers of allylglycine in the photosensitive baboon, Papio papio.

The effects of the intravenous or intracerebroventricular injection of the stereoisomers, and the racemic mixture, of allylglycine (2-amino-pent-4-enoic acid) have been studied in baboons, Papio papio, with photosensitive epilepsy. Enhancement of the natural syndrome of photosensitivy epilepsy is seen 1-12 h (maximally at 3-8 h) after L-allyglycine, 100 mg/kg, intravenously, or D,L-allyglycine, 200 mg/kg, intravenously. Such enhancement is seen with a slower onset, and to a lesser, and more variable, extent after D-allyglycine, 500-750 mg/kg, intravenously. Brief focal or generalised seizures occurred (in the absence of intermittent photic stimulation) after L-allyglycine, 150-200 mg/kg, intravenously. This effect is similar to that previously observed after D,L-allyglycine, 300-400 mg/kg. D-Allyglycine, 780 mg/kg, intravenously produced episodes of vertical nystagmus with increased extensor motor tone, but no 'spontaneous' seizures. Intracerebroventricular injection of L-allylglycine, D-allyglycine or D,L-allyglycine, 100 mg in 1 ml saline, did not modify the natural syndrome of photosensitive epilepsy. D-Allylglycine, or D,L-allyglycine, 100 mg intracerebroventricularly, after 1-2 h gave rise to a syndrome with vomiting, sustained vertical nystagmus, and intermittent extensor spasms. The results are interpreted in terms of regional differences in the metabolism of the two isomers to active compounds that can inhibit glutamic acid decarboxylase. D-Allylglycine is active only at the brain stem and cerebellum because D-amino acid oxidase is largely confined to these brain areas.

Allylglycine

A bacteriophage system for screening and study of biologically active polycyclic aromatic hydrocarbons and related compounds.

The usefulness of bacterial viruses for detecting substances that are potentially carcinogenic is reexamined as a model system for screening biologically active polycyclic aromatic hydrocarbons. A modification of the original assay procedure allows one to distinguish between aromatics that can modify the biological activity of infectious nucleic acids directly and those polycyclic aromatic hydrocarbons that require metabolic activation by Escherichia coli enzymes. The effect of chemical modification of several different polycyclic aromatic hydrocarbons, with respect to their biological activity in the phage assay system, is described. Among the 31 different compounds examined, (+/-)-anti-benzo[a]pyrene-7,8-diol-9,10-epoxide was the most potent inhibitor of infectious phage nucleic acid. The (+) and (-) isomers of the above racemic mixture did not differ significantly in their capacity to inhibit phage replication.

Benz(a)Anthracenes

Purification and properties of cis-toluene dihydrodiol dehydrogenase from Pseudomonas putida.

The purification of (+)-cis-1(S),2(R)-dihydroxy-3-methylcyclohexa-3,5-diene dehydrogenase from cells of Pseudomonas putida grown with toluene as the sole source of carbon and energy is reported. The molecular weight of the enzyme is 104,000 at pH 9.7. The enzyme is composed of four apparently identical subunits with molecular weights of 27,000. The enzyme is specific for nicotinamide adenine dinucleotide and oxidizes a number of cis-dihydrodiols. Both enantiomers of a racemic mixture of cis-1,2-dihydroxyl-1,2-dihydronaphthalene dihydrodiol are oxidized by the enzyme. No enzymatic activity is observed with trans-1,2-dihydroxyl-1,2-dihydronaphthalene dihydrodiol.

Amino Acids

Specificity of gamma-glutamyl cyclotransferase.

Using the phthaloyl method, 18 gamma-L-glutamyl peptides labelled with 14-C in the N-terminal position have been synthesized. The products were isolated by simple procedures using a Dowex-1 column or high voltage electrophoresis. The synthetic peptides contain minor impurities of the corresponding D-glutamyl isomers. The proportion of D-isomer was determined by the use of glutamic decarboxylase, or by a new method using digestion with purified gamma-glutamyl cyclotransferase and determination of the resulting 2-pyrrolidone-5-carboxylic acid (5-oxoproline). Evidence was obtained that gamma-glutamyl cyclotransferase acts only on the L-form of gamma-glutamyl substrates; the enzyme could, therefore, be used for preparation of gamma-D-glutamyl peptides from their racemic mixtures. The specificity of gamma-glutamyl cyclotransferase has been examined using pure enzyme prepared from pig liver, and extracts from tissues of rat and man. The basic structural requirement in substrates may be represented as gamma-L-glutamyl-NH--CHR--COOH. The amino acid linked to the gamma-glutamyl group must be in the L configuration.

Acyltransferases

Stereoselective inhibition of aromatase by enantiomers of aminoglutethimide.

The dextrorotatory enantiomer of aminoglutethimide is 38 times more potent than the levoenantiomer in inhibiting aromatization of testosterone by human placental microsomes. The spectral affinity constant for microsomal cytochrome P-450 is 36 times greater for the d-enantiomer. Enzymatic inhibition and affinity are highly correlated for each of the isomers as well as for the racemic mixture. Spectral analysis of the interactions of the inhibitors with the substrate supports the evidence for participation of cytochrome P-450 in aromatization.

Aminoglutethimide

Biochemical synthesis of stereospecifically hydrogen labeled compounds on a preparative scale, VI1-3 Synthesis of further substrates of NAD(P)-linked dehydrogenases of high specific tritium content.

The preparation of (R) and (S) [2(-3)H]lactate as well as (S) [2(-3)H] glutamate via the coupled exchange reaction catalyzed by NAD linked dehydrogenases and NADH: lipoamide oxidoreductase (diaphorase) is described. The specific radioactivity of the hydrogen ions of the 3HOH/H2O can be obtained in the substrates (100% exchange) if equilibrium isotope effects are disregarded. By the exchange procedure substrates with higher specific radioactivity are obtained from positionally [3H]labeled racemic mixtures prepared by chemical reductions with [3H]labeled hydrides. The tritium content of one of the enantiomeres is "washed out" into water. As examples are presented the preparation of (R) [2-3H] (S) [2-H]malate as well as the corresponding carnitine, glutamate and (R) and (S) lactate.

Alcohol Oxidoreductases

Timolol maleate, a new beta-adrenergic receptor blocking agent.

Some pharmacodynamic properties of an oxypropanolamine substituted novel heterocyclic compound are described. Initial studies involve comparison of the racemic mixture, dl-timolol maleate, with the beta-adrenergic receptor blocking agent propranolol in the rat, dog and cat. dl-Timolol maleate is shown to be a potent inhibitor of cardiovascular beta-adrenergic receptors activated by isoproterenol or adrenergic nerve stimulation. Blockade of alpha-adrenergic receptors is not observed even after extremely high doses. The compound is approximately 3 times more potent than propranolol in suppressing isoproterenol-induced cardioacceleration by the i.v. route of administration. dl-Timolol maleate is also extremely well absorbed when given orally, being then about 10 times more active than propranolol. Unlike propranolol, neither dl-timolol maleate nor its optical isomers possess demonstrable local anesthetic activity. Similar to propranolol and other beta-adrenergic receptor blocking agents, activity of the compound resides predominantly in the l-isomer (timolol maleate.

Adrenergic beta-Antagonists

Stereoselective inversion of (R)-(-)-benoxaprofen to the (S)-(+)-enantiomer in humans.

The enantiomeric composition of benoxaprofen [(RS)-2-(P-chlorophenyl)-alpha-methyl-5-benzoxazoleacetic acid] in plasma and urine was determined after oral administration of both the racemic mixture and the (R)-(-)-enantiomer to normal human volunteers. Resolution of the diastereomeric amides, formed by the reaction of the enantiomers with (S)-(-)-apha-methylbenzylamine, was accomplished by gas chromatography. The (R)-(-1)-enantiomer of the parent drug was stereoselectively inverted to its (S)-(+) isomer in humans.

Adult

[Sublicons containing amino acids and nucleotides].

Sublicons have been obtained. Sublicons are threadlike structures appearing during sublimation of frozen solutions of small concentrations, containing racemate mixture of amino acids and nucleotides. It is suggested that close location of chains and their zonal distribution by the section of helix spire forming sublicon wall, should provide the formation of stereohomogenous and complementary successions of biomonomers of different clases.

Amino Acids

[Biosublicons].

Biosublicon is an ice cylindrical thread on the surface of which a continuous helix of chain biopolymers is packed. Such structures are spontaneously formed during sublimation of frozen aqueous solutions of biopolymers with simultaneous illumination (lambda greater than 220 nm). Biosublicons are produced from diluted solutions containing a racemate mixture of amino acids and nucleotides. Their peculiar formation is discussed.

Amino Acids