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Identification of ejaculate derived propylamine found in collagen sponge contraceptives.

Propylamine is identified as one of the compounds present in odoriferous intravaginal contraceptive sponges from sexually active women. This compound also appears in samples of human ejaculate incubated at 37 degrees C for seven days. We have identified propylamine by gas liquid chromatography, mass spectroscopy and as N-propylbenzoylamide. Evidently the compound forms enzymatically from spermine and spermidine. We believe that this is the first time that propylamine has been identified as forming from human tissue.

Collagen

Mechanism of alkylation by N-nitroso compounds: detection of rearranged alcohol in the microsomal metabolism of N-nitrosodi-n-propylamine and base-catalyzed decomposition of N-n-propyl-N-nitrosourea.

Metabolism of N-nitrosodi-n-propylamine by an isolated rat liver microsomal fraction yielded 17% isopropanol and 83% n-propanol (expressed as a percentage of total propanol formed). Base-catalyzed decomposition of N-n-propyl-N-nitrosourea yielded 39% isopropanol and 61% n-propanol. The values provide evidence for involvement of carbocations in both of these reactions.

Alcohols

Metabolism of n-propylamine, isopropylamine, and 1,3-propane diamine by Mycobacterium convolutum.

Mycobacterium convolutum strain NPA-1 can utilize n-propylamine (NPA), isopropylamine (IPA), and 1,3-propane diamine (PD) as sole source of carbon, nitrogen, and energy. Enzyme assays, fatty acid profiles, and 14CO2 incorporation experiments indicate that NPA is deaminated to propionate and further metabolized via the methylmalonyl succinate pathway, and IPA and PD were metabolized (after deamination) through a C2 + C1 cleavage. An inducible amine dehydrogenase was present in cell extracts after growth on the three amines. Polyacrylamide gel electrophoresis of cell extracts from NPA- and IPA-grown cells yielded one major band of amine dehydrogenase activity. When extracts of NPA-grown cells were assayed with NPA, IPA, or PD as substrate, the relative position of the major band on gel electrophoresis was equivalent. Similar results were obtained with extracts prepared from IPA-grown cells. Sephadex G-100 chromatography also indicated one major peak of activity. This suggests that one enzyme of broad specificity is involved in deamination of IPA, NPA, and PD. IPA-grown cells utilized NPA readily, whereas NPA-grown cells could not utilize IPA without lag. Since amine dehydrogenase activity was present in extracts of cells after growth on either substrate, this lag was probably due to the inability to transport IPA without an induction period. The molecular weight of the amine dehydrogenase was approximately 38,500 as determined by gel filtration.

1-Propanol

Microsomal metabolism of N-nitrosodi-n-propylamine: formation of products resulting from alpha- and beta-oxidation.

We have identified propionaldehyde, n-propranolo, isopropanol and N-nitroso-2-hydroxy-propylpropylamine following incubation of N-nitrosodi-n-propylamine with a microsomal fraction from rat liver. Based on the yields of the various products, we have shown that beta-oxidation occurs at about 15% of the level of alpha-oxidation, beta- as well as alpha-oxidation was shown to be carried out by the microsomal mixed function oxidase system. N-nitroso-2-hydroxy-propylpropylamine is further oxidized by the microsomal preparation to yield N-nitroso-2-oxopropylpropylamine.

Animals

Effect of temperature on the propylamine transferase from Sulfolobus solfataricus, an extreme thermophilic archaebacterium. 1. Conformational behavior of the oligomeric enzyme in solution.

The effect of temperature on the molecular structure of propylamine transferase from Sulfolobus solfataricus has been investigated. Sulfolobus solfataricus is an extreme thermophilic archaebacterium with an optimum living condition at 90 degrees C. The enzyme is an oligomeric (trimer) protein of molecular mass 112 kDa. The frictional ratio for the native protein suggests an irregularly shaped compact globular structure. The protein matrix is well organized as suggested by far ultraviolet circular dichroism at 25 degrees C (18% alpha helix, 43% beta structure, 19% beta bends and 20% unordered: root mean square = 7). Structural effects of temperature were investigated over 25-85 degrees C. The protein retains its quaternary structure in this temperature range. A highly reversible subtle conformational transition was detected by numerous structure-dependent techniques over 40-50 degrees C, with a midpoint centered at 45 degrees C. Functional data also support this view. In fact, two enzyme forms, characterized by different catalytic properties, are present in solution. The Arrhenius plot suggests the occurrence of two different activation-energy-dependent processes, one at a temperature higher and one at a temperature lower than 45 degrees C. The transition has been considered as a molecular switch between two protein populations at equilibrium with different functional and structural properties, temperature modulated. A physiological role for the molecular switch has also been postulated. The protein also shows some subtle and reversible spectroscopic changes around 75 degrees C. The molecular basis of the thermophilic nature of this enzyme seems to reside in its capability to dynamically couple catalytic and structural events to the thermal properties of the ambient medium.

Amino Acids

Effect of temperature on the propylamine transferase from Sulfolobus solfataricus, an extreme thermophilic archaebacterium. 2. Denaturation and structural stability.

The thermal stability of propylamine transferase from Sulfolobus solfataricus, an extreme thermophilic archaebacterium, has been characterized thermodynamically by a Van't Hoff analysis. Conformational transitions induced by guanidine hydrochloride, as well as by temperature, have been linked together in a scheme involving six equilibria, which arise from both dissociation and unfolding. The mechanism by which the protein achieves thermal stabilization is quite unusual. It is driven by a conformational equilibrium between two forms of different stability. The stability of each form towards denaturation is characterized by a specific temperature dependence. The low-temperature form, indicated as 'form A', is stable over 12-89 degrees C. Its stability maximum is 36.8 kJ/mol at 50 degrees C. 'Form B', which is populated at higher temperature, spans the interval 28-146 degrees C. Its stability maximum is 71.6 kJ/mol at 87 degrees C. A possible explanation for the mechanism underlying this behaviour is discussed assuming that two major terms contribute to stability, i.e. hydrophobic interactions arising from burying of the accessible surface residues as well as conformational entropy. The thermal stabilization of the enzyme seems to depend on effects related to both an overall increase of flexibility and a concomitant decrease of the area buried upon folding. In this regard proteins from extreme thermophilic organisms appear to be a useful model to shed new light on the general problem of protein stability.

Enzyme Stability

Evaluation and control of a respiratory exposure to 3-(dimethylamino) propylamine.

In 1974 a study was undertaken to assess the symptoms and pulmonary function of a group of 25 workers who were exposed to an epoxy resin system in the mold room of a ski manufacturing plant. The amine 3-dimethylamino propylamine (3-DMAPA) was the only volatilized substance. Assemblers, the sub-group with the highest breathing zone exposure to 3-DMAPA (0.9 ppm), had the highest prevalence of symptoms and a significant decrease in lung function over the workshift. Extensive improvements in local ventilation reduced the average breathing zone exposure to nearly one-seventh of the 1974 concentration. A 1977 cross-sectional study showed that at this level there was a marked reduction in symptoms and the expiratory function of assemblers no longer decreased over the workshift. Longitudianl comparison of the lung function of workers exposed more than two years showed evidence of a decrease from 1975 to 1977, but none from 1977 to 1978.

Cross-Sectional Studies

Antiextensor effects of 3,3-diphenyl-n-propylamine in the mouse.

Diphenylpropylamine has antiextensor activity in the MES test and worsens clonic seizures produced by pentylenetetrazol. The drug also prevents tonic hindlimb extension produced by large doses of pentylenetetrazol. Diphenylpropylamine appears, therefore, to be a phenytoin-like compound. However, unlike most antiextensor agents, diphenylpropylamine has neuroexcitatory effects and antagonizes barbital-induced loss of the righting reflex.

Animals

[Quantitative determination of volatile nitrosamines in cigarette smoke (author's transl)].

Volatile nitrosamines from the smoke of different cigarettes were enriched by manifold clean-up procedures. Amines obtained after acid catalyzed denitrosation were transformed to fluorescent derivates of 7-chloro-4-nitrobenzofuranzane (NBD-Cl). These NBD-amines separated on polyamid sheets were fluorimetrically determined with a chromatogram-spectrophotometer. Recovery rates of 60--80% were found for the different nitrosamines in cigarette smoke condensate. The following nitrosamines were quantitatively determined: N-nitrosodimethylamine, N-nitrosodiethylamine, N-nitrosopiperidine, N-nitrosopyrrolidine, N-nitrosoethylmethylamine, N-nitroso-ethyln-propylamine and N-nitroso-methyl-n-propylamine, N-nitroso-ethyl-n-propylamine and N-nitroso-methyl-n-propylamine. The last mentioned nitrosamine was proved for the first time in cigarette smoke. At the same time correlations between the nitrosamine content of the corresponding tobacco or condensate and the content of nitrate, total nitrogen, nicotine, volatile bases and ammonia were investigated. The nitrate content as well as the content of volatile bases showed an influence on the nitrosamine yield. The content of the different nitrosamines varied cosiderably depending on tobacco origin, so that a NNO-determination is recommended as index.

Methods

The biosynthetic pathway of new polyamines in Caldariella acidophila.

1. Spermidine and sym-nor-spermine (1,11-diamino-4,8-diazaundecane) were identified as the major components of the polyamine pool in Caldariella acidophila, an extreme thermoacidophilic bacterium. A minor component, a new polyamine, sym-nor-spermidine (1,7-diamino-4-azaheptane) was isolated and characterized. 2. To elucidate the biosynthetic pathway, labelled methionine, putrescine, spermidine and spermine were fed to Caldariella acidophila. Incubation of the bacterium in the presence of putrescine or spermidine labelled in the tetramethylene moiety gave unlabelled sym-nor-spermidine and sym-nor-spermine, whereas the radioactivity of propylamine-labelled methionine or spermidine was incorporated into these molecules. No radioactivity was recovered in the polyamines pool when spermine was fed to Caldariella acidophila. 3. S-Adenosylmethionine and S-(5'-adenosyl)-3-methylthiopropylamine were identified as intermediates of the biosynthetic pathway; the cellular contents of the two sulphonium compounds, measured with a new isotope-dilution technique, are 60 and 15nmol/g wet wt. of cells respectively. 4. The above results are indicative of a new pathway characterized by three propylamine-transfer reactions, decarboxylated S-adenosylmethionine being the common donor of the propylamine moiety. The reactions yielding sym-nor-spermidine and sym-nor-spermine are reported for the first time. 5. The probable intermediates related to the catabolism of the tetramethylene moiety of spermidine, gamma-aminobutyraldehyde, gamma-aminobutyric acid or Delta(1)-pyrroline were not detectable. Experiments with [3-aminopropyl-3(n)-(3)H]spermidine trihydrochloride plus [tetramethylene-1,4-(14)C]spermidine trihydrochloride gave rise to an amount of labelled CO(2) equivalent to the spermidine catabolized.

Bacteria

Diverse actions of 5-hydroxytryptamine on frog spinal dorsal horn neurons in vitro.

The effects of 5-hydroxytryptamine on the membrane potential and input resistance of 86 dorsal horn neurons were studied using intracellular recordings in isolated, hemisected spinal cords of adult frogs (Rana pipiens). Bath application of serotonin (5-100 microM) caused membrane depolarizations in 58 (67%) neurons, hyperpolarizations in 12 (14%) cells, biphasic responses in nine (11%) neurons, and no detectable change in seven (8%) cells. In some neurons depolarized by serotonin, the amine's responses could be mimicked by the selective 5-HT2 agonist (+/-)-1(2,5-dimethoxy-4-iodophenyl)-2-aminopropane hydrochloride and the 5-HT1C/2 agonist alpha-methyl-5-hydroxytryptamine, and blocked by the 5-HT1C/2 antagonists ketanserin and mianserin. In other neurons depolarized by serotonin, the 5-HT3 agonist 2-methyl-5-hydroxytryptamine mimicked, and the 5-HT3 antagonist, 3-tropanyl-3,5-dichlorobenzoate, blocked the serotonin-induced responses. Depolarizing responses due to activation of 5-HT1C/2 receptors were generally accompanied by increases in the membrane input resistance, whereas depolarizations mediated by 5-HT3 receptors were associated with a decreased membrane input resistance. Superfusion with tetrodotoxin or low-Ca2+/high-Mg(2+)-containing media abolished about half of the depolarizing responses. Hyperpolarizations caused by serotonin were associated with a decrease in membrane input resistance, and might have been due to activation of a potassium conductance. These responses persisted in bathing solutions containing tetrodotoxin or low-Ca2+/high-Mg2+. The 5-HT1A agonist 8-hydroxy-2-(di-N-propylamine)tetralin hydrobromide mimicked, whereas the 5-HT1A antagonist spiroxatrine blocked, these hyperpolarizing responses. Other antagonists selective for 5-HT1C/2 or 5-HT3 receptors were without effect. Serotonin-produced biphasic responses consisted of either an initial depolarization followed by a hyperpolarization or the reverse. The selective 5-HT2 agonist (+/-)-1(2,5-dimethyoxy-4-iodophenyl)-2-aminopropane hydrochloride could only mimic the depolarizations, whereas the 5-HT1A agonist 8-hydroxy-2-(di-N-propylamine)tetralin hydrobromide produced only the hyperpolarizations. Spiroxatrine, a 5-HT1A antagonist, blocked only the hyperpolarizations without affecting the depolarizations, and methysergide, a non-specific 5-HT receptor antagonist, depressed both the depolarizations and hyperpolarizations. Serotonin also appeared to affect spinal dorsal horn neurons indirectly because it produced excitatory postsynaptic potentials, inhibitory postsynaptic potentials, and a mixture of both.(ABSTRACT TRUNCATED AT 400 WORDS)

8-Hydroxy-2-(di-n-propylamino)tetralin

Polyamine synthesis in mammalian tissues. Isolation and characterization of spermine synthase from bovine brain.

Spermine synthase, a propylamine transferase, which catalyses the biosynthesis of spermine from S-methyladenosylhomocystemine and spermidine has been purified to an apparent homogeneity (about 6000-fold) from bovine brain using spermine-Sepharose affinity chromatography. The enzyme preparation was free from S-adenosylmethionine decarboxylase and spermidine synthase activities. The molecular Stokes radius of the enzyme was calculated to be 4.16 nm. The enzyme has an apparent molecular weight of approximately 88 000, composing of two subunits of equal size. The enzyme showed a broad pH optimum between 7.0 and 8.0 and an acidic isoelectric point at pH 5.10. The apparent Km values for S-methyladenosylhomocysteamine was 0.6 microM and about 60 microM for spermidine. The enzyme showed strict specificity to spermidine as the propylamine acceptor. Both the reaction products, spermine and 5'-methylthioadenosine inhibited the enzyme activity, methylthioadenosine being a powerful competitive inhibitor with respect to S-methyladenosylhomocysteamine (Ki value of about 0.3 microM). Putrescine also inhibited competitively with respect to spermidine (Ki value of about 1.7 mM). Spermine synthase had no requirements for metal or other cofactors.

Animals