International audienceInsufficient rate of NADPH regeneration often limits the activity of biosynthetic pathways. Expression of NADPH-regenerating enzymes is commonly used to address this problem and increase cofactor availability. Here, we construct an Escherichia coli NADPH-auxotroph strain, which is deleted in all reactions that produce NADPH with the exception of 6-phosphogluconate dehydrogenase. This strain grows on a minimal medium only if gluconate is added as NADPH source. When gluconate is omitted, the strain serves as a "biosensor" for the capability of enzymes to regenerate NADPH in vivo. We show that the NADPH-auxotroph strain can be used to quantitatively assess different NADPH-regenerating enzymes and provide essential informa...
Analyses of intracellular NADPH concentrations are prerequisites for the design of microbial product...
The economically efficient utilization of NAD(P)H-dependent enzymes requires the regeneration of con...
The nicotinamide cofactor specificity of enzymes plays a key role in regulating metabolic processes ...
International audienceInsufficient rate of NADPH regeneration often limits the activity of biosynthe...
International audienceInsufficient rate of NADPH regeneration often limits the activity of biosynthe...
International audienceInsufficient rate of NADPH regeneration often limits the activity of biosynthe...
International audienceInsufficient rate of NADPH regeneration often limits the activity of biosynthe...
Insufficient rate of NADPH regeneration often limits the activity of biosynthetic pathways. Expressi...
Abstract An efficient in vivo regeneration of the primary cellular resources NADH and ATP is vital f...
Reduced nicotinamide adenine dinucleotide phosphate (NADPH) is an essential electron donor in all or...
Reduced nicotinamide adenine dinucleotide phosphate (NADPH) is an essential electron donor in all or...
Reduced nicotinamide adenine dinucleotide phosphate (NADPH) is an essential electron donor in all or...
The economically efficient utilization of NADPH or NADH-dependent enzymes requires the regeneration ...
A basic requirement for the efficiency of reductive whole-cell biotransformations is the reducing ca...
NAD+ and its reduced form NADH are essential cofactors in biological systems. They function as cofac...
Analyses of intracellular NADPH concentrations are prerequisites for the design of microbial product...
The economically efficient utilization of NAD(P)H-dependent enzymes requires the regeneration of con...
The nicotinamide cofactor specificity of enzymes plays a key role in regulating metabolic processes ...
International audienceInsufficient rate of NADPH regeneration often limits the activity of biosynthe...
International audienceInsufficient rate of NADPH regeneration often limits the activity of biosynthe...
International audienceInsufficient rate of NADPH regeneration often limits the activity of biosynthe...
International audienceInsufficient rate of NADPH regeneration often limits the activity of biosynthe...
Insufficient rate of NADPH regeneration often limits the activity of biosynthetic pathways. Expressi...
Abstract An efficient in vivo regeneration of the primary cellular resources NADH and ATP is vital f...
Reduced nicotinamide adenine dinucleotide phosphate (NADPH) is an essential electron donor in all or...
Reduced nicotinamide adenine dinucleotide phosphate (NADPH) is an essential electron donor in all or...
Reduced nicotinamide adenine dinucleotide phosphate (NADPH) is an essential electron donor in all or...
The economically efficient utilization of NADPH or NADH-dependent enzymes requires the regeneration ...
A basic requirement for the efficiency of reductive whole-cell biotransformations is the reducing ca...
NAD+ and its reduced form NADH are essential cofactors in biological systems. They function as cofac...
Analyses of intracellular NADPH concentrations are prerequisites for the design of microbial product...
The economically efficient utilization of NAD(P)H-dependent enzymes requires the regeneration of con...
The nicotinamide cofactor specificity of enzymes plays a key role in regulating metabolic processes ...