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1.
J R van Der Ploeg R Iwanicka-Nowicka T Bykowski M M Hryniewicz T Leisinger 《The Journal of biological chemistry》1999,274(41):29358-29365
2.
Summary M1 is a virulent bacteriophage of Methanobacterium thermoautotrophicum strain Marburg. Restriction enzyme analysis of the linear, 30.4 kb phage DNA led to a circular map of the 27.1 kb M1 genome. M1 is thus circularly permuted and exhibits terminal redundancy of approximately 3 kb. Packaging of M1 DNA from a concatemeric precursor initiates at the pac site which was identified at coordinate 4.6 kb on the circular genome map. It proceeds clockwise for at least five packaging rounds. Headful packaging was also shown for M2, a phage variant with a 0.7 kb deletion at coordinate 23.25 on the map. 相似文献
3.
Initial steps in the degradation of benzene sulfonic acid, 4-toluene sulfonic acids,and orthanilic acid in Alcaligenes sp. strain O-1 总被引:2,自引:0,他引:2
Thomas Thurnheer Daniel Zürrer Otmar Höglinger Thomas Leisinger Alasdair M. Cook 《Biodegradation》1990,1(1):55-64
Alcaligenes sp. strain O-1 grew with benzene sulfonate (BS) as sole carbon source for growth with either NH4
+ or NH4
+ plus orthanilate (2-aminobenzene sulfonate, OS) as the source(s) of nitrogen. The intracellular desulfonative enzyme did not degrade 3- or 4-aminobenzene sulfonates in the medium, although the enzyme in cell extracts degraded these compounds. We deduce the presence of a selective permeability barrier to sulfonates and conclude that the first step in sulfonate metabolism is transport into the cell. Cell-free desulfonation of BS in standard reaction mixtures required 2 mol of O2 per mol. One mol of O2 was required for a catechol 2,3-dioxygenase. When meta ring cleavage was inhibited with 3-chlorocatechol in desalted extracts, about 1 mol each of O2 and of NAD(P)H per mol of BS were required for the reaction, and SO3
2- and catechol were recovered in high yield. Catechol was shown to be formed by dioxygenation in an experiment involving 18O2. 4-Toluene sulfonate was subject to NAD(P)H-dependent dioxygenation to yield SO3
2- and 4-methylcatechol, which was subject to meta cleavage. OS also required 2 mol of O2 per mol and NAD(P)H for degradation, and SO3
2- and NH4
+ were recovered quantitatively. Inhibition of ring cleavage with 3-chrorocatechol reduced the oxygen requirement to 1 mol per mol of OS SO3
2- (1 mol) and an unidentified organic intermediate, but no NH4
+, were observed. 相似文献
4.
Corinne Vander Wauven Alfred Jann Dieter Haas Thomas Leisinger Victor Stalon 《Archives of microbiology》1988,150(4):400-404
Most Pseudomonas aeruginosa PAO mutants which were unable to utilize l-arginine as the sole carbon and nitrogen source (aru mutants) under aerobic conditions were also affected in l-ornithine utilization. These aru mutants were impaired in one or several enzymes involved in the conversion of N2-succinylornithine to glutamate and succinate, indicating that the latter steps of the arginine succinyltransferase pathway can be used for ornithine catabolism. Addition of aminooxyacetate, an inhibitor of the N2-succinylornithine 5-aminotransferase, to resting cells of P. aeruginosa in ornithine medium led to the accumulation of N2-succinylornithine. In crude extracts of P. aeruginosa an ornithine succinyltransferase (l-ornithine:succinyl-CoA N2-succinyltransferase) activity could be detected. An aru mutant having reduced arginine succinyltransferase activity also had correspondingly low levels of ornithine succinyltransferase. Thus, in P. aeruginosa, these two activities might be due to the same enzyme, which initiates aerobic arginine and ornithine catabolism.Abbreviations OAT
ornithine 5-aminotransferase
- SOAT
N2-succinylornithine 5-aminotransferase
- Oru
ornithine utilization
- Aru
arginine utilization 相似文献
5.
Summary The use of reticulated polyurethane foam as a support material for the immobilization of methanogenic associations and its application to the anaerobic treatment of fine particulate solid wastes was investigated. The colonization of polyurethane support particles in a continuous upflow reactor fed on a mixture of acetate, propionate and butyrate, was both rapid and dense. The combination of rumen microorganisms and colonized support particles in a two-phase digester resulted in an efficient anaerobic decomposition of papermill sludge. 相似文献
6.
7.
Dichloromethane dehalogenase, a highly inducible glutathione-dependent enzyme catalyzing the conversion of dichloromethane into formaldehyde and inorganic chloride, was purified fivefold with 60% yield from Hyphomicrobium sp. strain DM2. The electrophoretically homogeneous purified enzyme exhibited a specific activity of 17.3 mkat/kg of protein. Its pH optimum was 8.5. The enzyme was stable at -20 degrees C for at least 6 months. A subunit molecular weight of 33,000 was determined by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Gel filtration of native dichloromethane dehalogenase yielded a molecular weight of 195,000. Subunit cross-linking with dimethyl suberimidate confirmed the hexameric tertiary structure of the enzyme. Dichloromethane dehalogenase was highly specific for dihalomethanes. Its apparent Km values were 30 microM for CH2Cl2, 15 microM for CH2BrCl, 13 microM for CH2Br2, 5 microM for CH2I2, and 320 microM for glutathione. Several chlorinated aliphatic compounds inhibited the dichloromethane dehalogenase activity of the pure enzyme. The Ki values of the competitive inhibitors 1,2-dichloroethane and 1-chloropropane were 3 and 56 microM, respectively. 相似文献
8.
The kinetics of the NADP+- and phosphate-dependent oxidation of glutamic acid 5-semialdehyde are consistent with a rapid-equilibrium random order mechanism. The Km for DL-pyrroline-5-carboxylic acid is 2.5 mM, for NADP+ is 0.05 mM and for phosphate is 0.35 mM. The Vmax is approx. 8.0 units per mg protein. The reaction is highly specific for the DL-pyrroline-5-carboxylic acid and NADP+, but a number of divalent anions can substitute for phosphate. NADPH is competitive with respect to all three substrates and an analog of gamma-glutamyl phosphate, 3-(phosphonoacetylamido)-L-alanine, is competitive with respect to DL-pyrroline-5-carboxylic acid and non-competitive with respect to NADP+ and phosphate, suggesting dead-end complex formation. 相似文献
9.
Zusammenfassung Mit einer modifizierten Penicillintechnik konnten aus Acetobacter-Populationen, die von einem prototrophen Klon stammten, spontane auxotrophe Mutanten isoliert werden. Bei sechs von acht untersuchten Stämmen wurden auxotrophe Mutanten gefunden. Die Häufigkeit dieser Mutanten betrug 10-6.Die Auxotrophie, welche je nach Stamm auf Äthanol- oder Glucose-Medium auftrat, äußerte sich als Bedarf für Hefeextrakt. Hefeextrakt konnte durch Alanin, Prolin oder Glutaminsäure nicht ersetzt werden. Die Mutation von prototroph auf Äthanol-Medium zu auxotroph auf Äthanol-Medium hatte keine Änderung der spezifischen Aktivitäten der Schlüsselenzyme des Glyoxylsäurecyclus zur Folge.Es wurden auch spontane Mutanten gefunden, welche die partikelgebundene Äthanoldehydrogenase verloren hatten und dadurch unfähig waren, Äthanol zu oxydieren oder als C-Quelle zu verwerten.Bei den spontanen, auf Äthanol-Medium auxotrophen Mutanten handelt es sich um Mutationen von einer Art des Frateurschen Systems in eine andere. Mutanten, welche die partikelgebundene Äthanoldehydrogenase verloren haben, gehören definitionsgemäß nicht mehr in die Gattung Acetobacter. Die Bedeutung solcher interspezifischer und intergenerischer Mutationen für die Arteinteilung innerhalb der Essigsäurebakterien wird diskutiert.
Spontaneous mutations in acetic acid bacteria
Summary 8 prototrophic Acetobacter-strains were examined for spontaneous auxotrophic mutants. Using a modification of the Penicillin technique, there were detected auxotrophic mutants in 6 strains. The mutant frequency was 10-6.Auxotrophy manifested itself as a requirement for yeast extract. Alanine, proline and glutamic acid could not replace yeastextract. In addition to the auxotrophic mutants there were found spontaneous mutants, which had lost the particulate ethanol-dehydrogenase and therefore had become unable to oxidise ethanol.The mutation from prototrophic on minerals-ethanol medium to auxotropic on minerals-ethanol medium represents a mutation from one species of Frateur's system into an other species. Mutants which have lost the particulate ethanol-dehydrogenase belong no more to the genus Acetobacter. The importance of such interspecific and intergeneric mutations for the taxonomy of acetic acid bacteria is discussed.相似文献
10.