The soil bacterium and metabolic engineering platform Pseudomonas putida tolerates high levels of endogenous and exogenous oxidative stress, yet the ultimate reason of such property remains unknown. To shed light on this question, NADPH generation routes—the metabolic currency that fuels redox stress responses—were assessed when P. putida KT2440 was challenged with H2O2 as proxy of oxidative conditions. 13C-tracer experiments, metabolomics and flux analysis, together with inspection of physiological parameters and measurement of enzymatic activities, revealed a substantial flux reconfiguration under oxidative stress. In particular, periplasmic glucose processing was rerouted to cytoplasmic oxidation, and cyclic operation of the pentose phos...
Pseudomonas putida KT2440, a microbial cell factory of reference for industrial whole-cell biocataly...
ABSTRACT During evolution of biodegradation pathways for xenobiotic compounds involving Rieske nonhe...
All organisms evolved defense mechanisms to counteract oxidative stress and buildup of reactive oxyg...
As a frequent inhabitant of sites polluted with toxic chemicals, the soil bacterium and plant-root c...
The understanding of how carbon fluxes are distributed through a metabolic network offers an overvie...
Adenosine phosphate and NAD cofactors play a vital role in the operation of cell metabolism, and the...
Summary Pseudomonas putida is recognized as a very promising strain for industrial application due t...
Pseudomonas putida efficiently utilizes many different carbon sources without the formation of by pr...
The obligate aerobic nature of Pseudomonas putida, one of the most prominent whole-cell biocatalysts...
Pseudomonas putida is a remarkable soil microorganism and emerges as biotechnological platform host,...
Supporting informationThe metabolic versatility of the soil bacterium Pseudomonas putida is reflecte...
Glucose catabolism of Pseudomonas putida is carried out exclusively through the Entner–Doudoroff (ED...
<p>By the time the complete genome sequence of the soil bacterium Pseudomonas putida KT2440 was publ...
BACKGROUND: Pseudomonas putida is a metabolically versatile, genetically accessible, and stress-robu...
The soil bacterium Pseudomonas putida is endowed with a central carbon metabolic network capable of ...
Pseudomonas putida KT2440, a microbial cell factory of reference for industrial whole-cell biocataly...
ABSTRACT During evolution of biodegradation pathways for xenobiotic compounds involving Rieske nonhe...
All organisms evolved defense mechanisms to counteract oxidative stress and buildup of reactive oxyg...
As a frequent inhabitant of sites polluted with toxic chemicals, the soil bacterium and plant-root c...
The understanding of how carbon fluxes are distributed through a metabolic network offers an overvie...
Adenosine phosphate and NAD cofactors play a vital role in the operation of cell metabolism, and the...
Summary Pseudomonas putida is recognized as a very promising strain for industrial application due t...
Pseudomonas putida efficiently utilizes many different carbon sources without the formation of by pr...
The obligate aerobic nature of Pseudomonas putida, one of the most prominent whole-cell biocatalysts...
Pseudomonas putida is a remarkable soil microorganism and emerges as biotechnological platform host,...
Supporting informationThe metabolic versatility of the soil bacterium Pseudomonas putida is reflecte...
Glucose catabolism of Pseudomonas putida is carried out exclusively through the Entner–Doudoroff (ED...
<p>By the time the complete genome sequence of the soil bacterium Pseudomonas putida KT2440 was publ...
BACKGROUND: Pseudomonas putida is a metabolically versatile, genetically accessible, and stress-robu...
The soil bacterium Pseudomonas putida is endowed with a central carbon metabolic network capable of ...
Pseudomonas putida KT2440, a microbial cell factory of reference for industrial whole-cell biocataly...
ABSTRACT During evolution of biodegradation pathways for xenobiotic compounds involving Rieske nonhe...
All organisms evolved defense mechanisms to counteract oxidative stress and buildup of reactive oxyg...