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L C Vining

Publications and source records attributed to L C Vining.

At least 91 records · Page 5Linked to original sources

Intracellular cyclic adenosine 3',5'-monophosphate levels and streptomycin production in cultures of Streptomyces griseus.

Changes in the amount of cyclic 3',5'-adenosine monophosphate within the mycelium of Streptomyces griseus were measured as cultures progressed through trophophase and idiophase in a complex medium supporting growth and streptomycin synthesis. Concentrations were highest before the cultures entered stationary phase and had declined 90% by 5 h before the antibiotic was produced. This low conentration was maintained while the antibiotic accumulated during the idiophase. The results indicate that the onset of streptomycin synthesis is not directly mediated by an increase in intracellular cyclic 3',5'-adenosine monophosphate concentration, and thus that antibiotic production in S. griseus is not controlled by catabolite repression.

Culture Media↗

Use of 13C in biosynthetic studies. The labelling pattern in tenellin enriched from isotope-labelled acetate, methionine, and phenylalanine.

The biogenetic origin of the carbon atoms in tenellin has been established by adding 13C-enriched compounds to cultures of Beauveria bassiana, and determining the isotopic distribution in the metabolite by 13C nuclear magnetic resonance spectrometry. Tenellin is formed by condensation of an acetate-derived polyketide chain with a phenylpropanoid unit that may be phenylalanine. Alternate carbon atoms of the polyketide chain were labelled with sodium [1(-13C)]- and [2-(13C]-acetate; sodium [1,2-(13C)]acetate was incorporated as intact two-carbon units, the presence of which in tenellin was apparent from coupling between adjacent 13C-enriched carbons. Substituent methyl groups of the polyketide-derived alkenyl chain were labelled with L-[Me-13C]methionine. The labelling patterns from DL-[carboxy-13C]phenylalanine and DL-[alpha-13C]phenylalanine indicated a rearrangement of the propanoid component at some stage in the synthesis. The mass spectrum of tenellin from cultures administered L-[15N]phenylalanine showed isotopic enrichment similar to that obtained with 13C- or 14C-labelled phenylalanine. During incorporation of L-[carboxy-14C, beta-3H]phenylalanine 96% of the tritium label was lost, discounting the possibility of a 1,2-hydride shift during biosynthesis of the metabolite.

Acetates↗

Biosynthesis of gibberellins in Gibberella fujikuroi. Gibberellin A47.

Two minor radioactive products in cultures of G. fujikuroi strain ACC917 supplemented with labeled gibberellin A4 have been identified as the 2alpha-hydroxy derivative, gibberellin A47, and the hydrate, gibberellin A2. In addition, evidence was obtained by combined gas chromatography--mass spectrometry for the formation of 3-O-acetylgibberellin A1,3-O-acetylgibberellin A3, and gibberellin A20 by the culture. The time course of gibberellin synthesis in defined and complex media, as well as changes in the relative amounts of radioactive gibberellins formed when [4C]gibberellin A4 was added to cultures at different ages, suggest that the composition of the gibberellin mixture produced is determined by the balance between synthesis and decay of key enzymes in the branching pathway.

Gibberella↗

Biosynthesis of chloramphenicol in Streptomyces sp. 3022a. Identification of p-amino-L-phenylalanine as a product from the action of arylamine synthetase on chorismic acid.

Products obtained from the action of arylamine synthetase on [G-14C]chorismic acid were fractionated by gel filtration and ion exchange column chromatography to yield a partially purified radioactive component with an arylamine function. From its ultraviolet absorption spectrum and thin-layer chromatographic behaviour the product was considered to be p-aminophenylalanine and the identification was confirmed by co-crystallization with an authentic specimen. Specific deamination of the product with L-amino-acid oxidase indicated that it was the L-epimer. These results strengthen previous evidence that arylamine synthetase is at a branch point in the shikimic acid pathway, specifically diverting intermediates to the synthesis of chloramphenicol.

Amino Acid Oxidoreductases↗

Biosynthesis of bikaverin in Fusarium oxysporum. Use of 13C nuclear magnetic resonance with homonuclear 13C decoupling to locate adjacent 13C labels.

Bikaverin obtained by supplementing cultures of Fusarium oxysporum with singly and doubly 13C labeled acetate was enriched by approximately 0.5 atom percent with the 13C isotope. At this low enrichment 13C NMR spectra of samples labeled from (1-13C)- and (2-13C) acetate did not show, unequivocally, the pattern of isotopic incorporation. Small sample size, poor solubility and difficulties in the assignment of resonances also restricted the amount of information thacetate. The difficulty was overcome by using 13C homonuclear single-frequency decoupling in conjunction with 1H heteronuclear decoupling to locate bonded 13C-13C pairs. The carbon skeleton of bikaverin was shown to be biosynthesized entirely by condensation of acetate units and the pattern of assembly was established.

Acetates↗

Formation of 3-methylthioacrylic acid from methionine by Streptomyces lincolnensis. Isolation of a peroxidase.

Cultures of Streptomyces lincolnensis accumulated 3-methylthioacrylic acid in amounts directly related to the concentration of methionine in the medium. The metabolite was labeled by L-(methyl-14C) but not by DL-(carboxyl-14C) methionine, indicating biosynthesis from the amino acid with loss of the carboxyl group. S. lincolnensis mycelium contained sufficient peroxidase activity to catalyse oxidative decarboxylation of L-methionine to 3-methylthiopropionamide as the initial step of a biosynthetic sequence. The enzyme, partially purified by ammonium sulfate precipitation, chromatography on a DEAE-cellulose column ang gel filtration, had a molecular weight of approximately 350,000, a pH optimum of 6.0, with o-dianisidine as electron donor and a Km value of 7.5 x 10(-4) M with respect to hydrogen peroxide. Cultures of S. lincolnensis supplemented with 3-(methyl-14C) methylthiopropionic acid gave labeled 3-methylthioacrylic acid. However, 3-(methyl-14C) methylthiopropionamide did not label the metabolite, suggesting that the first intermediate in the pathway may be the keto acid, which is then oxidatively decarboxylated to 3-methylthiopropionic acid.

Acrylates↗

Rsistance to streptomycin in a producing strain of Streptomyces griseus.

Streptomyces griseus S 104 was sensitive to streptomycin during exponential growth in a medium which, in the subsequent stationary phase, supported production of the antibiotic in yields above 200 mug/ml. When antibiotic production began cultures developed a tolerance toward their lethal metabolite. This was not due to an increase in pH associated with antibiotic production, since pH effects on streptomycin sensitivity in S. griseus were in the reverse direction. However, the degree of tolerance was directly related to the amount of cell material present. Streptomycin production caused no change in the proportion of resistant variants in the population, nor did it cause the severe inhibition of protein synthesis observed in non-producing cultures exposed to the antibiotic. The lack of an effect on protein synthesis is attributed to the absence of streptomycin with in the cytoplasm since soluble extracts from mycelium harvested in the production phase were inactive when bioassayed immediately after cell disruption. However, they developed antibacterial activity rapidly when heated, and more slowly when incubated at 25 degrees C. The addition of phosphatase inhibitors during incubation prevented the appearance of antibiotic activity, and it was concluded that a small amount of streptomycin phosphate is present in the mycelium during antibiotic production. Differences in (14C) streptomycin uptake suggested that the mycelium was appreciably less permeable to the antibiotic in the production phase than during exponential growth. However, a small amount was taken up and much of it was in the soluble fraction of disrupted cells. Bioassays showed that this 14C-labeled antibiotic within the cells had been partially inactivated, suggesting that conversion of streptomycin to an inactive derivative is involved in the mechanism which protects the organism from its metabolite.

Alkaline Phosphatase↗

Streptomycin resistance in chloramphenicol-producing strains of Streptomyces species 3022a.

Resistance to low (5 mug/ml) concentrations of streptomycin in agar media was not inherited by all of the surviving population. Outgrowth of cultures in liquid media supplemented with the antibiotic depended upon inoculum size. Antibiotic titers in the supplemented cultures decreased during incubation, and an inactive radioactive product was detected when [14C] streptomycin was used. This low-level resistance is, therefore, attributed to enzymic inactivation of the antibiotic. Growth 10 mug/ml or higher concentrations of streptomycin on agar media was due to selection of resistant variants present in the parent strain. A range of such variants existed, decreasing in frequency as their degree of resistance increased. Examination of one that was resistant to moderate concentrations of streptomycin, (25 mug/ml) and a second that was resistant to high (100 mug/ml) concentrations of streptomycin suggested that both possed ribosomes which had lower affinity for the antibiotic than those of the parent strain, and that tolerance to high levels of streptomycin was due to a resistant ribosomal system for protein biosynthesis.

Acriflavine↗