Abstract Efficient growth of E. coli, especially for production of recombinant proteins, has been a challenge for the biotechnological industry since the early 1970s. By employing multiple approaches, such as different media composition, various growth strategies and specific genetic manipulations, it is now possible to grow bacteria to concentrations exceeding 100 g/L and to achieve high concentrations of recombinant proteins. Although the growth conditions are carefully monitored and maintained, it is likely that during the growth process cells are exposed to periodic stress conditions, created by fluctuations in pH, dissolved oxygen, temperature, glucose, and salt concentration. These stress circumstances which can occur especially in la...
Escherichia coli is the most used microorganism for biotechnological production processes due to its...
Many biopharmaceutical projects require the production of recombinant protein in a bacterial host. C...
Escherichia coli is the most used microorganism for biotechnological production processes due to its...
revolutionized the strategies for protein production. Due to the well-characterized genome and a var...
The purpose of this study was to assess the importance of small regulatory RNAs (sRNAs) to thermo-re...
Transfer RNA (tRNA) is one of the most extensively modified RNA molecules. The role of tRNA modifica...
Glucose-phosphate stress, a metabolic condition that affects bacteria such as Escherichia coli, occu...
Fed-batch culture strategy is often used for increasing production of heterologous recombinant prote...
Escherichia coli and Saccharomyces cerevisiae are widely used to produce different kinds of compound...
The ability to control growth is essential for fundamental studies of bacterial physiology and biote...
For commercialization, strain and bioprocess developments need to be successfully transferred from t...
International audienceThe ability to control growth is essential for fundamental studies of bacteria...
Studies of steady-state metabolic fluxes in Escherichia coli grown in nutrient-limited chemostat cul...
Strain engineering tools are usually adopted to improve microorganism tolerance towards stressful en...
abstract: Renewable bioproduction through fermentation of microbial species such as E. coli shows mu...
Escherichia coli is the most used microorganism for biotechnological production processes due to its...
Many biopharmaceutical projects require the production of recombinant protein in a bacterial host. C...
Escherichia coli is the most used microorganism for biotechnological production processes due to its...
revolutionized the strategies for protein production. Due to the well-characterized genome and a var...
The purpose of this study was to assess the importance of small regulatory RNAs (sRNAs) to thermo-re...
Transfer RNA (tRNA) is one of the most extensively modified RNA molecules. The role of tRNA modifica...
Glucose-phosphate stress, a metabolic condition that affects bacteria such as Escherichia coli, occu...
Fed-batch culture strategy is often used for increasing production of heterologous recombinant prote...
Escherichia coli and Saccharomyces cerevisiae are widely used to produce different kinds of compound...
The ability to control growth is essential for fundamental studies of bacterial physiology and biote...
For commercialization, strain and bioprocess developments need to be successfully transferred from t...
International audienceThe ability to control growth is essential for fundamental studies of bacteria...
Studies of steady-state metabolic fluxes in Escherichia coli grown in nutrient-limited chemostat cul...
Strain engineering tools are usually adopted to improve microorganism tolerance towards stressful en...
abstract: Renewable bioproduction through fermentation of microbial species such as E. coli shows mu...
Escherichia coli is the most used microorganism for biotechnological production processes due to its...
Many biopharmaceutical projects require the production of recombinant protein in a bacterial host. C...
Escherichia coli is the most used microorganism for biotechnological production processes due to its...