Engineering Pseudomonas putida S12 for Efficient Utilization of d-Xylose and l-Arabinose

JP Meijnen, JH de Winde… - Applied and …, 2008 - Am Soc Microbiol
The solvent-tolerant bacterium Pseudomonas putida S12 was engineered to utilize xylose
as a substrate by expressing xylose isomerase (XylA) and xylulokinase (XylB) from …

Regulation of carbohydrate degradation pathways in Pseudomonas involves a versatile set of transcriptional regulators

Z Udaondo, JL Ramos, A Segura, T Krell… - Microbial …, 2018 - Wiley Online Library
Bacteria of the genus Pseudomonas are widespread in nature. In the last decades,
members of this genus, especially Pseudomonas aeruginosa and Pseudomonas putida …

Transport of succinate by Pseudomonas putida

RE Dubler, WA Toscano Jr, RA Hartline - Archives of Biochemistry and …, 1974 - Elsevier
Induced succinate uptake and transport (defined as transport of a compound followed by its
metabolism and transport in the absence of subsequent metabolism) by Pseudomonas …

Effect of temperature on the activity and synthesis of glucose-catabolizing enzymes in Pseudomonas fluorescens

WH Lynch, J MacLeod… - Canadian Journal of …, 1975 - cdnsciencepub.com
The activity of the enzymes of the oxidative non-phosphorylated pathway, glucose and
gluconate dehydrogenases, were not significantly affected by changes in the assay …

Simultaneous Catabolite Repression between Glucose and Toluene Metabolism in Pseudomonas putida Is Channeled through Different Signaling Pathways

T Del Castillo, JL Ramos - Journal of bacteriology, 2007 - Am Soc Microbiol
ABSTRACT Pseudomonas putida KT2440 (pWW0) can use toluene via the TOL plasmid-
encoded catabolic pathways and can use glucose via a series of three peripheral …

Control of glycolytic flux in Zymomonas mobilis by glucose 6‐phosphate dehydrogenase activity

JL Snoep, N Arfman, LP Yomano… - Biotechnology and …, 1996 - Wiley Online Library
Glycolytic genes in Zymomonas mobilis are highly expressed and constitute half of the
cytoplasmic protein. The first four genes (glf, zwf, edd, glk) in this pathway form an operon …

The physiological function of periplasmic glucose oxidation in phosphate-limited chemostat cultures of Klebsiella pneumoniae NCTC 418

ET Buurman, GJ ten Voorde… - …, 1994 - microbiologyresearch.org
Periplasmic oxidation of glucose into gluconate and 2-ketogluconate in Klebsiella
pneumoniae occurs via glucose dehydrogenase (GDH) and gluconate dehydrogenase …

A Gluconobacter oxydans mutant converting glucose almost quantitatively to 5-keto-d-gluconic acid

M Elfari, SW Ha, C Bremus, M Merfort… - Applied microbiology …, 2005 - Springer
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 …

Intracellular 2-keto-3-deoxy-6-phosphogluconate is the signal for carbon catabolite repression of phenylacetic acid metabolism in Pseudomonas putida KT2440

J Kim, J Yeom, CO Jeon, W Park - Microbiology, 2009 - microbiologyresearch.org
The growth pattern of Pseudomonas putida KT2440 in the presence of glucose and
phenylacetic acid (PAA), where the sugar is used in preference to the aromatic compound …

Engineering sucrose metabolism in Pseudomonas putida highlights the importance of porins

H Löwe, P Sinner, A Kremling… - Microbial …, 2020 - Wiley Online Library
Using agricultural wastes as a substrate for biotechnological processes is of great interest in
industrial biotechnology. A prerequisite for using these wastes is the ability of the industrially …