Gluconobacter oxydans converts glucose to gluconic acid and subsequently to 2-keto-D-gluconic acid (2-KGA) and 5-keto-D-gluconic acid (5-KGA) by membrane-bound periplasmic pyrroloquinoline quinone-dependent and flavin-dependent dehydrogenases. The product pattern obtained with several strains differed significantly. To increase the production of 5-KGA, which can be converted to industrially important L-(+)-tartaric acid, growth parameters were optimized. Whereas resting cells of G. oxydans ATCC 621H converted about 11% of the available glucose to 2-KGA and 6% to 5-KGA, with growing cells and improved growth under defined conditions (pH 5, 10% pO2, 0.05% pCO2) a conversion yield of about 45% 5-KGA from the available glucose was achieved. As ...
Abstract Background Whole cells of Gluconobacter oxydans are widely used in various biocatalytic pro...
2-Keto-L-gulonic acid (2-KLG), the direct precursor of vitamin C, is produced by a two-step fermenta...
Gluconobacter spp. possess the enzymic potential for two pathways of direct glucose oxidation. It ha...
Gluconobacter oxydans DSM 2343 (ATCC 621H)catalyzes the oxidation of glucose to gluconic acid and su...
Gluconobacter oxydans N44-1, an obligatory aerobic acetic acid bacterium, oxidizes glucose primarily...
Gluconobacter oxydans is known for its direct oxidations with membrane-bound dehydrogenases, but the...
Gluconobacter oxydans is known for its direct oxidations with membrane-bound dehydrogenases, but the...
For the conversion of glucose to 5-keto-D-gluconate (5-KGA), a precursor of the industrially importa...
Even though $\textit{Gluconobacter oxydans}$ has been used since a long time in industrial processes...
The acetic acid bacterium $\textit{Gluconobacter oxydans}$ possesses outstanding metabolic character...
Gluconobacter spp. possess the enzymic potential for two pathways of direct glucose oxidation. It ha...
Abstract. Gluconobacter spp. possess the enzymic potential for two pathways of direct glucose oxidat...
The acetic acid bacterium Gluconobacter oxydans incompletely oxidizes carbon sources as a natural pa...
The obligatory aerobic acetic acid bacterium Gluconobacter oxydans 621H oxidizes sugars and sugar al...
Gluconobacter oxydans is famous for its rapid and incomplete oxidation of a wide range of sugars and...
Abstract Background Whole cells of Gluconobacter oxydans are widely used in various biocatalytic pro...
2-Keto-L-gulonic acid (2-KLG), the direct precursor of vitamin C, is produced by a two-step fermenta...
Gluconobacter spp. possess the enzymic potential for two pathways of direct glucose oxidation. It ha...
Gluconobacter oxydans DSM 2343 (ATCC 621H)catalyzes the oxidation of glucose to gluconic acid and su...
Gluconobacter oxydans N44-1, an obligatory aerobic acetic acid bacterium, oxidizes glucose primarily...
Gluconobacter oxydans is known for its direct oxidations with membrane-bound dehydrogenases, but the...
Gluconobacter oxydans is known for its direct oxidations with membrane-bound dehydrogenases, but the...
For the conversion of glucose to 5-keto-D-gluconate (5-KGA), a precursor of the industrially importa...
Even though $\textit{Gluconobacter oxydans}$ has been used since a long time in industrial processes...
The acetic acid bacterium $\textit{Gluconobacter oxydans}$ possesses outstanding metabolic character...
Gluconobacter spp. possess the enzymic potential for two pathways of direct glucose oxidation. It ha...
Abstract. Gluconobacter spp. possess the enzymic potential for two pathways of direct glucose oxidat...
The acetic acid bacterium Gluconobacter oxydans incompletely oxidizes carbon sources as a natural pa...
The obligatory aerobic acetic acid bacterium Gluconobacter oxydans 621H oxidizes sugars and sugar al...
Gluconobacter oxydans is famous for its rapid and incomplete oxidation of a wide range of sugars and...
Abstract Background Whole cells of Gluconobacter oxydans are widely used in various biocatalytic pro...
2-Keto-L-gulonic acid (2-KLG), the direct precursor of vitamin C, is produced by a two-step fermenta...
Gluconobacter spp. possess the enzymic potential for two pathways of direct glucose oxidation. It ha...