For redox reactions catalyzed by microbial cells the analysis of involved cofactors is of special interest since the availability of cofactors such as NADH or NADPH is often limiting and crucial for the biotransformation efficiency. The measurement of these cofactors has usually been carried out using spectrophotometric cycling assays. Today LC-MS/MS methods have become a valuable tool for the identification and quantification of intracellular metabolites. This technology has been adapted to measure all four nicotinamide cofactors (NAD, NADP, NADH, and NADPH) during a whole cell biotransformation process catalyzed by recombinant Escherichia coli cells. The cells overexpressing an alcohol dehydrogenase from Lactobacillus brevis were used for...
Whole-cell redox biocatalysis relies on redox cofactor regeneration by the microbial host. Here, we ...
Animal cell culture processes are needed for the production of monoclonal antibodies, recombinant pr...
Metabolites are the products of enzyme-catalyzed reactions that occur naturally within living cells....
Whole-cell biocatalysis utilizes native or recombinant enzymes produced by cellular metabolism to pe...
The rational improvement of microbial strains for the production of primary and secondary metabolite...
Due to the low environmental concentrations and substance-specific behavior of trace organic chemica...
Redox cofactors play a pivotal role in coupling catabolism with anabolism and energy generation duri...
Redox metabolism plays an essential role in the central metabolic network of all living cells, conne...
Abstract Background Clostridium thermocellum and Thermoanaerobacterium saccharolyticum are prominent...
Enzymatic reaction systems performed under mild reaction conditions represent an interesting alterna...
Metabolomics is essential to understand the metabolism and identify engineering targets to improve t...
In recent years, metabolomics developed to an accepted and valuable tool in life sciences. Substanti...
Redox enzymes are very useful tools for establishing greener routes in organic synthesis, mostly due...
Biological production of chemicals often requires the use of cellular cofactors, such as nicotinamid...
Klatte S, Wendisch VF. Redox self-sufficient whole cell biotransformation for amination of alcohols....
Whole-cell redox biocatalysis relies on redox cofactor regeneration by the microbial host. Here, we ...
Animal cell culture processes are needed for the production of monoclonal antibodies, recombinant pr...
Metabolites are the products of enzyme-catalyzed reactions that occur naturally within living cells....
Whole-cell biocatalysis utilizes native or recombinant enzymes produced by cellular metabolism to pe...
The rational improvement of microbial strains for the production of primary and secondary metabolite...
Due to the low environmental concentrations and substance-specific behavior of trace organic chemica...
Redox cofactors play a pivotal role in coupling catabolism with anabolism and energy generation duri...
Redox metabolism plays an essential role in the central metabolic network of all living cells, conne...
Abstract Background Clostridium thermocellum and Thermoanaerobacterium saccharolyticum are prominent...
Enzymatic reaction systems performed under mild reaction conditions represent an interesting alterna...
Metabolomics is essential to understand the metabolism and identify engineering targets to improve t...
In recent years, metabolomics developed to an accepted and valuable tool in life sciences. Substanti...
Redox enzymes are very useful tools for establishing greener routes in organic synthesis, mostly due...
Biological production of chemicals often requires the use of cellular cofactors, such as nicotinamid...
Klatte S, Wendisch VF. Redox self-sufficient whole cell biotransformation for amination of alcohols....
Whole-cell redox biocatalysis relies on redox cofactor regeneration by the microbial host. Here, we ...
Animal cell culture processes are needed for the production of monoclonal antibodies, recombinant pr...
Metabolites are the products of enzyme-catalyzed reactions that occur naturally within living cells....