In pyridine nucleotide-dependent, reductive whole cell biotransformation with resting cells of Escherichia coli, the availability of intracellular NAD(P)(H) is a pivotal point for an efficient and highly productive substrate conversion. The question whether an increase of the intracellular NAD(P)(H) concentration could increase the productivity was discussed controversially in the past. This is the first report on an E. coli strain with an increased NAD(P)(H) pool which was tested in a reductive biotransformation system for an increased productivity. Biotransformation was performed with a strain overexpressing a gene encoding an (R)-specific alcohol dehydrogenase for the stereospecific, NADPH-dependent reduction of methyl acetoacetate (MAA)...
BACKGROUND: The high costs of pyridine nucleotide cofactors have limited the applications of NAD(P)-...
The fermentative alcohol dehydrogenase of Escherichia coli is encoded by the adhE gene, which is ind...
NAD and its reduced form NADH function as essential redox cofactors and have major roles in determin...
A basic requirement for the efficiency of reductive whole-cell biotransformations is the reducing ca...
In the first part of this work, the pentose phosphate pathway (PPP) was investigated as a source of ...
Metabolic engineering studies have generally focused on manipulating enzyme levels. However, cofacto...
NAD+ and its reduced form NADH are essential cofactors in biological systems. They function as cofac...
Nicotinamide adenine dinucleotide (NAD) and its reduced form NADH are essential cofactors for many r...
Optimization of yields and productivities in reductive whole-cell biotransformations is an important...
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. ...
NAD (NAD(+)) and its reduced form (NADH) are omnipresent cofactors in biological systems. However, i...
AbstractBackgroundWhole-cell redox biocatalysis has been intensively explored for the production of ...
Abstract An efficient in vivo regeneration of the primary cellular resources NADH and ATP is vital f...
An Escherichia coli ΔpfkA mutant lacking the major phosphofructokinase possesses a partially cyclize...
BACKGROUND: The high costs of pyridine nucleotide cofactors have limited the applications of NAD(P)-...
The fermentative alcohol dehydrogenase of Escherichia coli is encoded by the adhE gene, which is ind...
NAD and its reduced form NADH function as essential redox cofactors and have major roles in determin...
A basic requirement for the efficiency of reductive whole-cell biotransformations is the reducing ca...
In the first part of this work, the pentose phosphate pathway (PPP) was investigated as a source of ...
Metabolic engineering studies have generally focused on manipulating enzyme levels. However, cofacto...
NAD+ and its reduced form NADH are essential cofactors in biological systems. They function as cofac...
Nicotinamide adenine dinucleotide (NAD) and its reduced form NADH are essential cofactors for many r...
Optimization of yields and productivities in reductive whole-cell biotransformations is an important...
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. ...
NAD (NAD(+)) and its reduced form (NADH) are omnipresent cofactors in biological systems. However, i...
AbstractBackgroundWhole-cell redox biocatalysis has been intensively explored for the production of ...
Abstract An efficient in vivo regeneration of the primary cellular resources NADH and ATP is vital f...
An Escherichia coli ΔpfkA mutant lacking the major phosphofructokinase possesses a partially cyclize...
BACKGROUND: The high costs of pyridine nucleotide cofactors have limited the applications of NAD(P)-...
The fermentative alcohol dehydrogenase of Escherichia coli is encoded by the adhE gene, which is ind...
NAD and its reduced form NADH function as essential redox cofactors and have major roles in determin...