Gluconobacter oxydans 621H is used as an industrial production organism due to its exceptional ability to incompletely oxidize a great variety of carbohydrates in the periplasm. With glucose as the carbon source, up to 90% of the initial concentration is oxidized periplasmatically to gluconate and ketogluconates. Growth on glucose is biphasic and intracellular sugar catabolism proceeds via the Entner–Doudoroff pathway (EDP) and the pentose phosphate pathway (PPP). Here we studied the in vivo contributions of the two pathways to glucose catabolism on a microtiter scale. In our approach we applied specifically 13C labeled glucose, whereby a labeling pattern in alanine was generated intracellularly. This method revealed a dynamic growth phase-...
Gluconobacter oxydans converts glucose to gluconic acid and subsequently to 2-keto-D-gluconic acid (...
Background Cyanobacteria receive huge interest as green catalysts. While exploiting energy from sun...
Gluconobacter oxydans is known for its direct oxidations with membrane-bound dehydrogenases, but the...
Gluconobacter oxydans 621H is used as an industrial production organism due to its exceptional abili...
Gluconobacter spp. possess the enzymic potential for two pathways of direct glucose oxidation. It ha...
Even though $\textit{Gluconobacter oxydans}$ has been used since a long time in industrial processes...
The present work uses Substrates with isotope enrichment to answer fundamental questions of the meta...
Gluconobacter oxydans N44-1, an obligatory aerobic acetic acid bacterium, oxidizes glucose primarily...
The obligatory aerobic acetic acid bacterium Gluconobacter oxydans 621H oxidizes sugars and sugar al...
Abstract. Gluconobacter spp. possess the enzymic potential for two pathways of direct glucose oxidat...
In this study, we show that glucose catabolism in Pseudomonas putida occurs through the simultaneous...
<div><p>Panel <b>A</b> shows the atom-resolved fate of 50% [1,2- <sup>13</sup>C<sub>2</sub>]-glucose...
The study was initiated with a detailed analysis of the growth of G. oxydans in batch culture, in gl...
Bacillus megaterium is a bacterium of great importance as a plant-beneficial bacterium in agricultur...
Glycogen-accumulating organisms (GAOs) are found in enhanced biological phosphorus removal systems w...
Gluconobacter oxydans converts glucose to gluconic acid and subsequently to 2-keto-D-gluconic acid (...
Background Cyanobacteria receive huge interest as green catalysts. While exploiting energy from sun...
Gluconobacter oxydans is known for its direct oxidations with membrane-bound dehydrogenases, but the...
Gluconobacter oxydans 621H is used as an industrial production organism due to its exceptional abili...
Gluconobacter spp. possess the enzymic potential for two pathways of direct glucose oxidation. It ha...
Even though $\textit{Gluconobacter oxydans}$ has been used since a long time in industrial processes...
The present work uses Substrates with isotope enrichment to answer fundamental questions of the meta...
Gluconobacter oxydans N44-1, an obligatory aerobic acetic acid bacterium, oxidizes glucose primarily...
The obligatory aerobic acetic acid bacterium Gluconobacter oxydans 621H oxidizes sugars and sugar al...
Abstract. Gluconobacter spp. possess the enzymic potential for two pathways of direct glucose oxidat...
In this study, we show that glucose catabolism in Pseudomonas putida occurs through the simultaneous...
<div><p>Panel <b>A</b> shows the atom-resolved fate of 50% [1,2- <sup>13</sup>C<sub>2</sub>]-glucose...
The study was initiated with a detailed analysis of the growth of G. oxydans in batch culture, in gl...
Bacillus megaterium is a bacterium of great importance as a plant-beneficial bacterium in agricultur...
Glycogen-accumulating organisms (GAOs) are found in enhanced biological phosphorus removal systems w...
Gluconobacter oxydans converts glucose to gluconic acid and subsequently to 2-keto-D-gluconic acid (...
Background Cyanobacteria receive huge interest as green catalysts. While exploiting energy from sun...
Gluconobacter oxydans is known for its direct oxidations with membrane-bound dehydrogenases, but the...