Oxidative damage to microbial hosts often occurs under stressful conditions during bioprocessing. Classical strain engineering approaches are usually both time-consuming and labor intensive. Here, we aim to improve E. coli performance under oxidative stress via engineering its global regulator cAMP receptor protein (CRP), which can directly or indirectly regulate redox-sensing regulators SoxR and OxyR, and other ~400 genes in E. coli. Error-prone PCR technique was employed to introduce modifications to CRP, and three mutants (OM1~OM3) were identified with improved tolerance via H2O2 enrichment selection. The best mutant OM3 could grow in 12 mM H2O2 with the growth rate of 0.6 h−1, whereas the growth of wild type was completely inhibited at ...
The tolerance of cells toward different stresses is very important for industrial strains of microbe...
The limited isobutanol tolerance of Escherichia coli is a major drawback during fermentative isobuta...
Depletion of natural energy resources and global climate change has renewed much interest in biofuel...
Oxidative damage to microbial hosts often occurs under stressful conditions during bioprocessing. Cl...
Oxidative damage to microbial hosts often occurs under stressful conditions during bioprocessing. Cl...
<div><p>Oxidative damage to microbial hosts often occurs under stressful conditions during bioproces...
Strain engineering tools are usually adopted to improve microorganism tolerance towards stressful en...
Microorganisms are widely used in industries for various industrial applications, such as the produc...
A major challenge in bioethanol fermentation is the low tolerance of the microbial host towards the ...
The presence of acetate exceeding 5 g/L is a major concern during E. coli fermentation due to its in...
The presence of acetate exceeding 5 g/L is a major concern during E. coli fermentation due to its in...
The naturally existing microbial hosts can rarely satisfy industrial requirements, thus there has al...
<div><p>A major challenge in bioethanol fermentation is the low tolerance of the microbial host towa...
<div><p>The presence of acetate exceeding 5 g/L is a major concern during <i>E. coli</i> fermentatio...
Escherichia coli and Saccharomyces cerevisiae are widely used to produce different kinds of compound...
The tolerance of cells toward different stresses is very important for industrial strains of microbe...
The limited isobutanol tolerance of Escherichia coli is a major drawback during fermentative isobuta...
Depletion of natural energy resources and global climate change has renewed much interest in biofuel...
Oxidative damage to microbial hosts often occurs under stressful conditions during bioprocessing. Cl...
Oxidative damage to microbial hosts often occurs under stressful conditions during bioprocessing. Cl...
<div><p>Oxidative damage to microbial hosts often occurs under stressful conditions during bioproces...
Strain engineering tools are usually adopted to improve microorganism tolerance towards stressful en...
Microorganisms are widely used in industries for various industrial applications, such as the produc...
A major challenge in bioethanol fermentation is the low tolerance of the microbial host towards the ...
The presence of acetate exceeding 5 g/L is a major concern during E. coli fermentation due to its in...
The presence of acetate exceeding 5 g/L is a major concern during E. coli fermentation due to its in...
The naturally existing microbial hosts can rarely satisfy industrial requirements, thus there has al...
<div><p>A major challenge in bioethanol fermentation is the low tolerance of the microbial host towa...
<div><p>The presence of acetate exceeding 5 g/L is a major concern during <i>E. coli</i> fermentatio...
Escherichia coli and Saccharomyces cerevisiae are widely used to produce different kinds of compound...
The tolerance of cells toward different stresses is very important for industrial strains of microbe...
The limited isobutanol tolerance of Escherichia coli is a major drawback during fermentative isobuta...
Depletion of natural energy resources and global climate change has renewed much interest in biofuel...