Abstract The biosynthetic pathways of most alcohols are linked to intracellular redox homeostasis, which is crucial for life. This crucial balance is primarily controlled by the generation of reducing equivalents, as well as the (reduction)-oxidation metabolic cycle and the thiol redox homeostasis system. As a main oxidation pathway of reducing equivalents, the biosynthesis of most alcohols includes redox reactions, which are dependent on cofactors such as NADH or NADPH. Thus, when engineering alcohol-producing strains, the availability of cofactors and redox homeostasis must be considered. In this review, recent advances on the engineering of cellular redox homeostasis systems to accelerate alcohol biosynthesis are summarized. Recent appro...
Cofactors provide redox carriers for biosynthetic reactions, catabolic reactions and act as importan...
Biological production of chemicals often requires the use of cellular cofactors, such as nicotinamid...
Biocatalysis is increasing in popularity compared to chemical approaches to produce the most diverse...
The two most widespread pentose sugars in our biosphere are D-xylose and L-arabinose. The pentose ca...
Klatte S, Wendisch VF. Redox self-sufficient whole cell biotransformation for amination of alcohols....
<div><p>Maintaining redox balance is critical for the production of heterologous secondary metabolit...
Maintaining redox balance is critical for the production of heterologous secondary metabolites, wher...
Whole-cell biocatalysis utilizes native or recombinant enzymes produced by cellular metabolism to pe...
The development of artificial systems mimicking the essential properties of living cells is one of t...
Redox homeostasis is a fundamental requirement to the sustainment of metabolism, energy generation a...
Many biosynthetic processes, either in vivo or in vitro, involve redox reactions catalyzed by oxidor...
Redox cofactors play a pivotal role in coupling catabolism with anabolism and energy generation duri...
Metabolic engineering studies have generally focused on manipulating enzyme levels. However, cofacto...
Klatte S, Wendisch VF. Role of L-alanine for redox self-sufficient amination of alcohols. Microbial ...
Background: In white biotechnology biocatalysis represents a key technology for chemical functionali...
Cofactors provide redox carriers for biosynthetic reactions, catabolic reactions and act as importan...
Biological production of chemicals often requires the use of cellular cofactors, such as nicotinamid...
Biocatalysis is increasing in popularity compared to chemical approaches to produce the most diverse...
The two most widespread pentose sugars in our biosphere are D-xylose and L-arabinose. The pentose ca...
Klatte S, Wendisch VF. Redox self-sufficient whole cell biotransformation for amination of alcohols....
<div><p>Maintaining redox balance is critical for the production of heterologous secondary metabolit...
Maintaining redox balance is critical for the production of heterologous secondary metabolites, wher...
Whole-cell biocatalysis utilizes native or recombinant enzymes produced by cellular metabolism to pe...
The development of artificial systems mimicking the essential properties of living cells is one of t...
Redox homeostasis is a fundamental requirement to the sustainment of metabolism, energy generation a...
Many biosynthetic processes, either in vivo or in vitro, involve redox reactions catalyzed by oxidor...
Redox cofactors play a pivotal role in coupling catabolism with anabolism and energy generation duri...
Metabolic engineering studies have generally focused on manipulating enzyme levels. However, cofacto...
Klatte S, Wendisch VF. Role of L-alanine for redox self-sufficient amination of alcohols. Microbial ...
Background: In white biotechnology biocatalysis represents a key technology for chemical functionali...
Cofactors provide redox carriers for biosynthetic reactions, catabolic reactions and act as importan...
Biological production of chemicals often requires the use of cellular cofactors, such as nicotinamid...
Biocatalysis is increasing in popularity compared to chemical approaches to produce the most diverse...