Production of value-added chemicals in microorganisms is regarded as a viable alternative to chemical synthesis. In the past decade, several engineered pathways producing such chemicals, including plant secondary metabolites in microorganisms have been reported; upscaling their production yields, however, was often challenging. Here, we analyze a modular device designed for sensing malonyl-CoA, a common precursor for both fatty acid and flavonoid biosynthesis. The sensor can be used either for high-throughput pathway screening in synthetic biology applications or for introducing a feedback circuit to regulate production of the desired chemical. Here, we used the sensor to compare the performance of several predicted malonyl-CoA-producing pa...
SummaryMalonyl-CoA is the rate-determining metabolite for long chain de novo fatty acid synthesis an...
Acetyl-CoA is not only an important intermediate metabolite for cells but also a significant precurs...
Recent progress in synthetic biology allows the construction of dynamic control circuits for metabol...
Production of value-added chemicals in microorganisms is regarded as a viable alternative to chemica...
Production of value-added chemicals in microorganisms is regarded as a viable alternative to chemica...
Production of value-added chemicals in microorganisms is regarded as a viable alternative to chemica...
Production of value-added chemicals in microorganisms is regarded as a viable alternative to chemica...
Production of value-added chemicals in microorganisms is regarded as a viable alternative to chemica...
Malonyl-CoA is the basic building block for synthesizing a range of important compounds including fa...
ABSTRACT: Malonyl-CoA is the rate-limiting precursor involved in the chain elongation reaction of a ...
Malonyl-CoA is the rate-limiting precursor involved in the chain elongation reaction of a range of v...
9 *S Supporting Information 10 ABSTRACT: Malonyl-CoA is the rate-limiting precursor involved in the ...
The establishment of a heterologous pathway in a microbial host for the production of industrially r...
Abstract Background Malonyl-coenzyme A (CoA) is an important biosynthetic precursor in vivo. Althoug...
The establishment of a heterologous pathway in a microbial host for the production of industrially r...
SummaryMalonyl-CoA is the rate-determining metabolite for long chain de novo fatty acid synthesis an...
Acetyl-CoA is not only an important intermediate metabolite for cells but also a significant precurs...
Recent progress in synthetic biology allows the construction of dynamic control circuits for metabol...
Production of value-added chemicals in microorganisms is regarded as a viable alternative to chemica...
Production of value-added chemicals in microorganisms is regarded as a viable alternative to chemica...
Production of value-added chemicals in microorganisms is regarded as a viable alternative to chemica...
Production of value-added chemicals in microorganisms is regarded as a viable alternative to chemica...
Production of value-added chemicals in microorganisms is regarded as a viable alternative to chemica...
Malonyl-CoA is the basic building block for synthesizing a range of important compounds including fa...
ABSTRACT: Malonyl-CoA is the rate-limiting precursor involved in the chain elongation reaction of a ...
Malonyl-CoA is the rate-limiting precursor involved in the chain elongation reaction of a range of v...
9 *S Supporting Information 10 ABSTRACT: Malonyl-CoA is the rate-limiting precursor involved in the ...
The establishment of a heterologous pathway in a microbial host for the production of industrially r...
Abstract Background Malonyl-coenzyme A (CoA) is an important biosynthetic precursor in vivo. Althoug...
The establishment of a heterologous pathway in a microbial host for the production of industrially r...
SummaryMalonyl-CoA is the rate-determining metabolite for long chain de novo fatty acid synthesis an...
Acetyl-CoA is not only an important intermediate metabolite for cells but also a significant precurs...
Recent progress in synthetic biology allows the construction of dynamic control circuits for metabol...