The presence of acetate exceeding 5 g/L is a major concern during E. coli fermentation due to its inhibitory effect on cell growth, thereby limiting high-density cell culture and recombinant protein production. Hence, engineered E. coli strains with enhanced acetate tolerance would be valuable for these bioprocesses. In this work, the acetate tolerance of E. coli was much improved by rewiring its global regulator cAMP receptor protein (CRP), which is reported to regulate 444 genes. Error-prone PCR method was employed to modify crp and the mutagenesis libraries (~3×106) were subjected to M9 minimal medium supplemented with 5–10 g/L sodium acetate for selection. Mutant A2 (D138Y) was isolated and its growth rate in 15 g/L sodium acetate was f...
Excess acetate has long been an issue for the production of recombinant proteins in E. coli cells. R...
The limited isobutanol tolerance of Escherichia coli is a major drawback during fermentative isobuta...
Global protein acetylation is a newly discovered phenomenon in bacteria. Of the more than 250 acetyl...
The presence of acetate exceeding 5 g/L is a major concern during E. coli fermentation due to its in...
<div><p>The presence of acetate exceeding 5 g/L is a major concern during <i>E. coli</i> fermentatio...
Microorganisms are widely used in industries for various industrial applications, such as the produc...
Strain engineering tools are usually adopted to improve microorganism tolerance towards stressful en...
A major challenge in bioethanol fermentation is the low tolerance of the microbial host towards the ...
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>A major challenge in bioethanol fermentation is the low tolerance of the microbial host towa...
The naturally existing microbial hosts can rarely satisfy industrial requirements, thus there has al...
Excess acetate has long been an issue for the production of recombinant proteins in E. coli cells. R...
<div><p>Oxidative damage to microbial hosts often occurs under stressful conditions during bioproces...
Oxidative damage to microbial hosts often occurs under stressful conditions during bioprocessing. Cl...
Excess acetate has long been an issue for the production of recombinant proteins in E. coli cells. R...
The limited isobutanol tolerance of Escherichia coli is a major drawback during fermentative isobuta...
Global protein acetylation is a newly discovered phenomenon in bacteria. Of the more than 250 acetyl...
The presence of acetate exceeding 5 g/L is a major concern during E. coli fermentation due to its in...
<div><p>The presence of acetate exceeding 5 g/L is a major concern during <i>E. coli</i> fermentatio...
Microorganisms are widely used in industries for various industrial applications, such as the produc...
Strain engineering tools are usually adopted to improve microorganism tolerance towards stressful en...
A major challenge in bioethanol fermentation is the low tolerance of the microbial host towards the ...
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>A major challenge in bioethanol fermentation is the low tolerance of the microbial host towa...
The naturally existing microbial hosts can rarely satisfy industrial requirements, thus there has al...
Excess acetate has long been an issue for the production of recombinant proteins in E. coli cells. R...
<div><p>Oxidative damage to microbial hosts often occurs under stressful conditions during bioproces...
Oxidative damage to microbial hosts often occurs under stressful conditions during bioprocessing. Cl...
Excess acetate has long been an issue for the production of recombinant proteins in E. coli cells. R...
The limited isobutanol tolerance of Escherichia coli is a major drawback during fermentative isobuta...
Global protein acetylation is a newly discovered phenomenon in bacteria. Of the more than 250 acetyl...