International audienceWe investigated the scalability of a previously developed growth switch based on external control of RNA polymerase expression. Our results indicate that, in liter-scale bioreactors operating in fed-batch mode, growth-arrested Escherichia coli cells are able to convert glucose to glycerol at an increased yield. A multiomics quantification of the physiology of the cells shows that, apart from acetate production, few metabolic side effects occur. However, a number of specific responses to growth slow-down and growth arrest are launched at the transcriptional level. These notably include the downregulation of genes involved in growth-associated processes, such as amino acid and nucleotide metabolism and translation. Inter...
Heterotrophic bacteria grow and divide rapidly when resources are abundant. Yet resources are finite...
Heterotrophic bacteria grow and divide rapidly when resources are abundant. Yet resources are finite...
Heterotrophic bacteria grow and divide rapidly when resources are abundant. Yet resources are finite...
International audienceWe investigated the scalability of a previously developed growth switch based ...
International audienceWe investigated the scalability of a previously developed growth switch based ...
International audienceWe investigated the scalability of a previously developed growth switch based ...
International audienceWe investigated the scalability of a previously developed growth switch based ...
International audienceWe investigated the scalability of a previously developed growth switch based ...
International audienceWe investigated the scalability of a previously developed growth switch based ...
International audienceWe investigated the scalability of a previously developed growth switch based ...
International audienceThe ability to control growth is essential for fundamental studies of bacteria...
International audienceThe ability to control growth is essential for fundamental studies of bacteria...
The ability to control growth is essential for fundamental studies of bacterial physiology and biote...
Abstract Background A cellular stress response is triggered upon induction of recombinant protein ex...
Escherichia coli is the most used microorganism for biotechnological production processes due to its...
Heterotrophic bacteria grow and divide rapidly when resources are abundant. Yet resources are finite...
Heterotrophic bacteria grow and divide rapidly when resources are abundant. Yet resources are finite...
Heterotrophic bacteria grow and divide rapidly when resources are abundant. Yet resources are finite...
International audienceWe investigated the scalability of a previously developed growth switch based ...
International audienceWe investigated the scalability of a previously developed growth switch based ...
International audienceWe investigated the scalability of a previously developed growth switch based ...
International audienceWe investigated the scalability of a previously developed growth switch based ...
International audienceWe investigated the scalability of a previously developed growth switch based ...
International audienceWe investigated the scalability of a previously developed growth switch based ...
International audienceWe investigated the scalability of a previously developed growth switch based ...
International audienceThe ability to control growth is essential for fundamental studies of bacteria...
International audienceThe ability to control growth is essential for fundamental studies of bacteria...
The ability to control growth is essential for fundamental studies of bacterial physiology and biote...
Abstract Background A cellular stress response is triggered upon induction of recombinant protein ex...
Escherichia coli is the most used microorganism for biotechnological production processes due to its...
Heterotrophic bacteria grow and divide rapidly when resources are abundant. Yet resources are finite...
Heterotrophic bacteria grow and divide rapidly when resources are abundant. Yet resources are finite...
Heterotrophic bacteria grow and divide rapidly when resources are abundant. Yet resources are finite...