985 resultados para O-acyl-D-ribono-1,5-lactones


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A practical method for the structural assignment of 3,4-O-benzylidene-D-ribono-1,5-lactones and analogues using conventional NMR techniques and NOESY measurements in solution is described. 2-O-Acyl-3,4-O-benzylidene-D-ribono-1,5-lactones were prepared in good yields by acylation of Zinner’s lactone with acyl chlorides under mildly basic conditions. Structural determination of 2-O-(4-nitrobenzoyl)-3,4-O-benzylidene-D-ribono-1,5-lactone was achieved by single crystal x-ray diffraction, which supports the results based on spectroscopic data.

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Oxidation of d-ribulose-1,5-bisphosphate (ribulose-P2) during synthesis and/or storage produces d-glycero-2,3-pentodiulose-1,5-bisphosphate (pentodiulose-P2), a potent slow, tight-binding inhibitor of spinach (Spinacia oleracea L.) ribulose-P2 carboxylase/oxygenase (Rubisco). Differing degrees of contamination with pentodiulose-P2 caused the decline in Rubisco activity seen during Rubisco assay time courses to vary between different preparations of ribulose-P2. With some ribulose-P2 preparations, this compound can be the dominant cause of the decline, far exceeding the significance of the catalytic by-product, d-xylulose-1,5-bisphosphate. Unlike xylulose-1,5-bisphosphate, pentodiulose-P2 did not appear to be a significant by-product of catalysis by wild-type Rubisco at saturating CO2 concentration. It was produced slowly during frozen storage of ribulose-P2, even at low pH, more rapidly in Rubisco assay buffers at room temperature, and particularly rapidly on deliberate oxidation of ribulose-P2 with Cu2+. Its formation was prevented by the exclusion of transition metals and O2. Pentodiulose-P2 was unstable and decayed to a variety of other less-inhibitory compounds, particularly in the presence of some buffers. However, it formed a tight, stable complex with carbamylated spinach Rubisco, which could be isolated by gel filtration, presumably because its structure mimics that of the enediol intermediate of Rubisco catalysis. Rubisco catalyzes the cleavage of pentodiulose-P2 by H2O2, producing P-glycolate.

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Dissertação apresentada para obtenção do Grau de Mestre em Engenharia Electrotécnica e de Computadores, pela Universidade Nova de Lisboa, Faculdade de Ciências e Tecnologia

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Cette présente recherche vise à défendre le point de vue selon lequel le don de l’Esprit dans le récit de la Pentecôte (Ac 2, 1-13) s’interprète principalement comme l’investissement d’une puissance habilitant au témoignage. À cette fin, nous posons l’hypothèse que le contenu d’Ac 2, 17-21 est un axe fondamental de la théologie pneumatique de l’œuvre lucanienne, lequel interprète la manifestation pentecostale dans une perspective prophétique. La démonstration se fait par le biais d’une analyse rédactionnelle d’Ac 2, 17-21, une citation de Jl 3,1-5 insérée dans un discours explicatif de Pierre du phénomène pentecostal. Nous examinons d’abord le lieu d’inscription de ce passage dans l’œuvre lucanienne afin d’évaluer la valeur stratégique de son emplacement (chapitre 1). Nous étudions ensuite l’interprétation que fait Luc de cette prophétie pour en venir à la conclusion qu’il envisage l’intervention de l’Esprit essentiellement dans une perspective d’habilitation à la prophétie (chapitre 2). Nous vérifions cette première conclusion dans l’Évangile de Luc (chapitre 3); puis ensuite dans les Actes des Apôtres (chapitre 4). Nous en arrivons ainsi à établir un parallélisme entre les étapes initiatiques du ministère de Jésus dans le troisième évangile et celui des disciples dans les Actes, pour y découvrir que, dans les deux cas, l’effusion de l’Esprit habilite à l’activité prophétique. Le ministère des disciples s’inscrit de la sorte dans le prolongement de celui du Maître. Nous soutenons, en fait, que tout le discours pneumatique de l’Évangile de Luc converge vers l’effusion initiale de l’Esprit sur les disciples dans le récit pentecostal, d’une part, et que cette effusion jette un éclairage sur l’ensemble de l’œuvre missionnaire des Actes, d’autre part. Bref, le passage explicatif du phénomène pentecostal, en l’occurrence Ac 2, 17-21, met en lumière un axe central des perspectives de Luc sur l’Esprit : Il s’agit de l’Esprit de prophétie. Dans cette optique, l’effusion de l’Esprit à la Pentecôte s’interpréterait essentiellement comme l’investissement du croyant d’une puissance en vue du témoignage.

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Mémoire numérisé par la Division de la gestion de documents et des archives de l'Université de Montréal

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The uptake, metabolism, and metabolic effects of the antitumor tricyclic nucleoside (TCN, NSC-154020) were studied in vitro. Uptake of TCN by human erythrocytes was concentrative, resulting mainly from the rapid intracellular phosphorylation of TCN. At high TCN doses, however, unchanged TCN was also concentrated within the erythrocytes. The initial linear rate of TCN uptake was saturable and obeyed Michaelis-Menten kinetics. TCN was metabolized chiefly to its 5'-monophosphate not only by human erythrocytes but also by wild-type Chinese hamster ovary (CHO) cells. In addition, three other metabolites were detected by means of high-performance liquid chromatography. The structures of these metabolites were elucidated by ultraviolet spectroscopy, infrared spectroscopy, mass spectrometry, and further confirmed by incubations with catabolic enzymes and intact wild-type or variant CHO cells. All were novel types of oxidative degradation products of TCN. Two are proposed to be (alpha) and (beta) anomers of a D-ribofuranosyl nucleoside with a pyrimido{4,5-c}pyridazine-4-one base structure. The third metabolite is most likely the 5'-monophosphate of the (beta) anomer. A CHO cell line deficient in adenosine kinase activity failed to phosphorylate either TCN or the (beta) anomer. No further phosphorylation of the 5'-monophosphates by normal cells occurred. Although the pathways leading to the formation of these TCN metabolites have not been proven, a mechanism is proposed to account for the above observations. The same adenosine kinase-deficient CHO cells were resistant to 500 (mu)M TCN, while wild-type cells could not clone in the presence of 20 (mu)M TCN. Simultaneous addition of purines, pyrimidines, and purine precursors failed to reverse this toxicity. TCN-treatment strongly inhibited formate or glycine incorporation into ATP and GTP of wild-type CHO cells. Hypoxanthine incorporation inhibited to a lesser degree, with the inhibition of incorporation into GTP being more pronounced. Although precursor incorporation into GTP was inhibited, GTP concentrations were elevated rather than reduced after 4-hr incubations with 20 (mu)M or 50 (mu)M TCN. These results suggested an impairment of GTP utilization. TCN (50 (mu)M) inhibited leucine and thymidine incorporation into HClO(,4)-insoluble material to 30-35% of control throughout 5-hr incubations. Incorporation of five other amino acids was inhibited to the same extent as leucine. Pulse-labeling assays (45 min) with uridine, leucine, and thymidine failed to reveal selective inhibition of DNA or protein synthesis by 0.05-50 (mu)M TCN; however, the patterns of inhibition were similar to those of known protein synthesis inhibitors. TCN 5'-monophosphate inhibited leucine incorporation by rabbit reticulocyte lysates; the inhibition was 2000 times less potent than that of cycloheximide. The 5'-monophosphate failed to inhibit a crude nuclear DNA-synthesizing system. Although TCN 5'-monophosphate apparently inhibits purine synthesis de novo, its cytotoxicity is not reversed by exogenous purines. Consequently, another mechanism such as direct inhibition of protein synthesis is probably a primary mechanism of toxicity. ^