Recent progress in synthetic biology allows the construction of dynamic control circuits for metabolic engineering. This technology promises to overcome many challenges encountered in traditional pathway engineering, thanks to its ability to self-regulate gene expression in response to bioreactor perturbations. The central components in these control circuits are metabolite biosensors that read out pathway signals and actuate enzyme expression. However, the construction of metabolite biosensors is a major bottleneck for strain design, and a key challenge is to understand the relation between biosensor dose-response curves and pathway performance. Here we employ multiobjective optimization to quantify performance trade-offs that arise in the...
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...
SummaryWe present a synthetic gene circuit for decoupling cell growth from metabolite production thr...
Metabolite biosensors are central to current efforts toward precision engineering of metabolism. Alt...
Metabolic engineering of microorganisms to produce desirable products on an industrial scale can res...
Microbial production of value-added chemicals from biomass is a sustainable alternative to chemical ...
Metabolite biosensors are central to current efforts toward precision engineering of metabolism. Alt...
Cells are filled with biosensors, molecular systems that measure the state of the cell and respond b...
In a sustainable bioeconomy, many commodities and high value chemicals, including pharmaceuticals, w...
Controlling gene expression during a bioprocess enables real-time metabolic control, coordinated cel...
The development of synthetic biology and metabolic engineering has painted a great future for the bi...
Characterization and standardization of inducible transcriptional regulators has transformed how sci...
Production of value-added chemicals in microorganisms is regarded as a viable alternative to chemica...
Metabolic engineering reprograms microbes to produce value-added chemicals. Microbial production has...
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...
SummaryWe present a synthetic gene circuit for decoupling cell growth from metabolite production thr...
Metabolite biosensors are central to current efforts toward precision engineering of metabolism. Alt...
Metabolic engineering of microorganisms to produce desirable products on an industrial scale can res...
Microbial production of value-added chemicals from biomass is a sustainable alternative to chemical ...
Metabolite biosensors are central to current efforts toward precision engineering of metabolism. Alt...
Cells are filled with biosensors, molecular systems that measure the state of the cell and respond b...
In a sustainable bioeconomy, many commodities and high value chemicals, including pharmaceuticals, w...
Controlling gene expression during a bioprocess enables real-time metabolic control, coordinated cel...
The development of synthetic biology and metabolic engineering has painted a great future for the bi...
Characterization and standardization of inducible transcriptional regulators has transformed how sci...
Production of value-added chemicals in microorganisms is regarded as a viable alternative to chemica...
Metabolic engineering reprograms microbes to produce value-added chemicals. Microbial production has...
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...
SummaryWe present a synthetic gene circuit for decoupling cell growth from metabolite production thr...