Background: Acetyl-CoA-derived chemicals are suitable for multiple applications in many industries. The bio-production of these chemicals has become imperative owing to the economic and environmental problems. However, acetate overflow is the major drawback for acetyl-CoA-derived chemicals production. Approaches for overcoming acetate overflow may be beneficial for the production of acetyl-CoA-derived chemicals. Results: In this study, a transcriptional regulator iclR was knocked out in E.coli BL21(DE3) to overcome acetate overflow and improve the chemicals production. Two important acetyl-CoA-derived chemicals, phloroglucinol (PG) and 3-hydroxypropionate (3HP) were used to evaluate it. It is revealed that knockout of iclR significantly inc...
Abstract Acetol, a C3 keto alcohol, is an important interme-diate used to produce polyols and acrole...
Abstract Background Citramalate, a chemical precursor to the industrially important methacrylic acid...
The presence of acetate exceeding 5 g/L is a major concern during E. coli fermentation due to its in...
Abstract Background Acetyl-CoA...
Background: Gene expression is regulated through a complex interplay of different transcription fact...
Background: Gene expression is regulated through a complex interplay of different transcription fact...
ABSTRACT: BACKGROUND: Gene expression is regulated through a complex interplay of different transcri...
ABSTRACT: BACKGROUND: Gene expression is regulated through a complex interplay of different transcri...
ABSTRACT: BACKGROUND: Gene expression is regulated through a complex interplay of different transcri...
Traditional metabolic engineering focused on pathway manipulation strategies like amplification addi...
Two independent pathways in Escherichia coli convert acetate to acetyl CoA: reversal of acetate prod...
Two independent pathways in Escherichia coli convert acetate to acetyl CoA: reversal of acetate prod...
In Escherichia coli, repression of the aceBAK operon is mediated by the IclR protein. We used an in ...
Deletion of both iclR and arcA in E. coli profoundly alters the central metabolic fluxes and decreas...
Deletion of both iclR and arcA in E. coli profoundly alters the central metabolic fluxes and decreas...
Abstract Acetol, a C3 keto alcohol, is an important interme-diate used to produce polyols and acrole...
Abstract Background Citramalate, a chemical precursor to the industrially important methacrylic acid...
The presence of acetate exceeding 5 g/L is a major concern during E. coli fermentation due to its in...
Abstract Background Acetyl-CoA...
Background: Gene expression is regulated through a complex interplay of different transcription fact...
Background: Gene expression is regulated through a complex interplay of different transcription fact...
ABSTRACT: BACKGROUND: Gene expression is regulated through a complex interplay of different transcri...
ABSTRACT: BACKGROUND: Gene expression is regulated through a complex interplay of different transcri...
ABSTRACT: BACKGROUND: Gene expression is regulated through a complex interplay of different transcri...
Traditional metabolic engineering focused on pathway manipulation strategies like amplification addi...
Two independent pathways in Escherichia coli convert acetate to acetyl CoA: reversal of acetate prod...
Two independent pathways in Escherichia coli convert acetate to acetyl CoA: reversal of acetate prod...
In Escherichia coli, repression of the aceBAK operon is mediated by the IclR protein. We used an in ...
Deletion of both iclR and arcA in E. coli profoundly alters the central metabolic fluxes and decreas...
Deletion of both iclR and arcA in E. coli profoundly alters the central metabolic fluxes and decreas...
Abstract Acetol, a C3 keto alcohol, is an important interme-diate used to produce polyols and acrole...
Abstract Background Citramalate, a chemical precursor to the industrially important methacrylic acid...
The presence of acetate exceeding 5 g/L is a major concern during E. coli fermentation due to its in...