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The Journal of Biological Chemistry
|
September 10, 2015
Pseudomonas putida KT2440 Strain Metabolizes Glucose through a Cycle Formed by Enzymes of the Entner-Doudoroff, Embden-Meyerhof-Parnas, and Pentose Phosphate Pathways
Pablo I Nikel, Max Chavarría, Tobias Fuhrer, et al.
Nature Communications
|
June 22, 2016
A dynamic pathway analysis approach reveals a limiting futile cycle in N-acetylglucosamine overproducing Bacillus subtilis
Yanfeng Liu, Hannes Link, Long Liu, et al.
Cell Systems
|
May 14, 2018
Reserve Flux Capacity in the Pentose Phosphate Pathway Enables Escherichia coli's Rapid Response to Oxidative Stress
Dimitris Christodoulou, Hannes Link, Tobias Fuhrer, et al.
Microbiology (Reading, England)
|
August 5, 2016
Distinct transcriptional regulation of the two Escherichia coli transhydrogenases PntAB and UdhA
Bart R B Haverkorn van Rijsewijk, Karl Kochanowski, Matthias Heinemann, et al.
Nature Protocols
|
April 28, 2026
Profiling large-scale protein occupancy on bacterial genomes using IPOD-HR
Rebecca L Hurto, Jeremy W Schroeder, Julian Trouillon, et al.
Iscience
|
September 20, 2019
Reserve Flux Capacity in the Pentose Phosphate Pathway by NADPH Binding Is Conserved across Kingdoms
Dimitris Christodoulou, Andreas Kuehne, Alexandra Estermann, et al.
Nature Communications
|
June 17, 2021
A distinct growth physiology enhances bacterial growth under rapid nutrient fluctuations
Jen Nguyen, Vicente Fernandez, Sammy Pontrelli, et al.
Biotechnology for Biofuels
|
May 17, 2012
Dynamic metabolomics differentiates between carbon and energy starvation in recombinant Saccharomyces cerevisiae fermenting xylose
Basti Bergdahl, Dominik Heer, Uwe Sauer, et al.
Environmental Microbiology
|
April 19, 2012
The IHF regulon of exponentially growing Pseudomonas putida cells
Rafael Silva-Rocha, Max Chavarría, Roelco J Kleijn, et al.
Eukaryotic Cell
|
February 13, 2003
Metabolic-flux profiling of the yeasts Saccharomyces cerevisiae and Pichia stipitis
Jocelyne Fiaux, Z Petek Cakar, Marco Sonderegger, et al.
Page
of 27
Search research articles
Search
Showing results (121-130 of 262) with videos related to
Sort By:
Page
of 27
The Journal of Biological Chemistry
|
September 10, 2015
Pseudomonas putida KT2440 Strain Metabolizes Glucose through a Cycle Formed by Enzymes of the Entner-Doudoroff, Embden-Meyerhof-Parnas, and Pentose Phosphate Pathways
Pablo I Nikel, Max Chavarría, Tobias Fuhrer, et al.
Nature Communications
|
June 22, 2016
A dynamic pathway analysis approach reveals a limiting futile cycle in N-acetylglucosamine overproducing Bacillus subtilis
Yanfeng Liu, Hannes Link, Long Liu, et al.
Cell Systems
|
May 14, 2018
Reserve Flux Capacity in the Pentose Phosphate Pathway Enables Escherichia coli's Rapid Response to Oxidative Stress
Dimitris Christodoulou, Hannes Link, Tobias Fuhrer, et al.
Microbiology (Reading, England)
|
August 5, 2016
Distinct transcriptional regulation of the two Escherichia coli transhydrogenases PntAB and UdhA
Bart R B Haverkorn van Rijsewijk, Karl Kochanowski, Matthias Heinemann, et al.
Nature Protocols
|
April 28, 2026
Profiling large-scale protein occupancy on bacterial genomes using IPOD-HR
Rebecca L Hurto, Jeremy W Schroeder, Julian Trouillon, et al.
Iscience
|
September 20, 2019
Reserve Flux Capacity in the Pentose Phosphate Pathway by NADPH Binding Is Conserved across Kingdoms
Dimitris Christodoulou, Andreas Kuehne, Alexandra Estermann, et al.
Nature Communications
|
June 17, 2021
A distinct growth physiology enhances bacterial growth under rapid nutrient fluctuations
Jen Nguyen, Vicente Fernandez, Sammy Pontrelli, et al.
Biotechnology for Biofuels
|
May 17, 2012
Dynamic metabolomics differentiates between carbon and energy starvation in recombinant Saccharomyces cerevisiae fermenting xylose
Basti Bergdahl, Dominik Heer, Uwe Sauer, et al.
Environmental Microbiology
|
April 19, 2012
The IHF regulon of exponentially growing Pseudomonas putida cells
Rafael Silva-Rocha, Max Chavarría, Roelco J Kleijn, et al.
Eukaryotic Cell
|
February 13, 2003
Metabolic-flux profiling of the yeasts Saccharomyces cerevisiae and Pichia stipitis
Jocelyne Fiaux, Z Petek Cakar, Marco Sonderegger, et al.
Page
of 27