The nicotinamide cofactor specificity of enzymes plays a key role in regulating metabolic processes and attaining cellular homeostasis. Multiple studies have used enzyme engineering tools or a directed evolution approach to switch the cofactor preference of specific oxidoreductases. However, whole-cell adaptation towards the emergence of novel cofactor regeneration routes was not previously explored. To address this challenge, we used an Escherichia coli NADPH-auxotroph strain. We continuously cultivated this strain under selective conditions. After 500-1100 generations of adaptive evolution using different carbon sources, we isolated several strains capable of growing without an external NADPH source. Most isolated strains were found to ha...
Bacteria undergoing anaerobic fermentation must maintain redox balance. In vivo metabolic evolution ...
Bacteria undergoing anaerobic fermentation must maintain redox balance. In vivo metabolic evolution ...
Versatile selective evolutionary pressure using synthetic defect in universal metabolis
ABSTRACT The nicotinamide cofactor specificity of enzymes plays a key role in regulating metabolic p...
International audienceBacterial metabolism is characterized by a remarkable capacity to rapidly adap...
Metabolic engineering studies have generally focused on manipulating enzyme levels. However, cofacto...
A key challenge in metabolic engineering is the intracellular control of reductive and free energy. ...
A key challenge in metabolic engineering is the intracellular control of reductive and free energy. ...
Metabolic networks revolve around few metabolites recognized by diverse enzymes and involved in myri...
The non-natural needs of industrial applications often require new or improved enzymes. The structur...
The non-natural needs of industrial applications often require new or improved enzymes. The structur...
<div><p>Metabolic networks revolve around few metabolites recognized by diverse enzymes and involved...
Harnessing the adaptive nature of cell metabolism presents an opportunity to understand the function...
Harnessing the adaptive nature of cell metabolism presents an opportunity to understand the function...
Bacteria undergoing anaerobic fermentation must maintain redox balance. In vivo metabolic evolution ...
Bacteria undergoing anaerobic fermentation must maintain redox balance. In vivo metabolic evolution ...
Bacteria undergoing anaerobic fermentation must maintain redox balance. In vivo metabolic evolution ...
Versatile selective evolutionary pressure using synthetic defect in universal metabolis
ABSTRACT The nicotinamide cofactor specificity of enzymes plays a key role in regulating metabolic p...
International audienceBacterial metabolism is characterized by a remarkable capacity to rapidly adap...
Metabolic engineering studies have generally focused on manipulating enzyme levels. However, cofacto...
A key challenge in metabolic engineering is the intracellular control of reductive and free energy. ...
A key challenge in metabolic engineering is the intracellular control of reductive and free energy. ...
Metabolic networks revolve around few metabolites recognized by diverse enzymes and involved in myri...
The non-natural needs of industrial applications often require new or improved enzymes. The structur...
The non-natural needs of industrial applications often require new or improved enzymes. The structur...
<div><p>Metabolic networks revolve around few metabolites recognized by diverse enzymes and involved...
Harnessing the adaptive nature of cell metabolism presents an opportunity to understand the function...
Harnessing the adaptive nature of cell metabolism presents an opportunity to understand the function...
Bacteria undergoing anaerobic fermentation must maintain redox balance. In vivo metabolic evolution ...
Bacteria undergoing anaerobic fermentation must maintain redox balance. In vivo metabolic evolution ...
Bacteria undergoing anaerobic fermentation must maintain redox balance. In vivo metabolic evolution ...
Versatile selective evolutionary pressure using synthetic defect in universal metabolis