Noncanonical redox cofactors are attractive low-cost alternatives to nicotinamide adenine dinucleotide (phosphate) (NAD(P)+) in biotransformation. However, engineering enzymes to utilize them is challenging. Here, we present a high-throughput directed evolution platform which couples cell growth to the in vivo cycling of a noncanonical cofactor, nicotinamide mononucleotide (NMN+). We achieve this by engineering the life-essential glutathione reductase in Escherichia coli to exclusively rely on the reduced NMN+ (NMNH). Using this system, we develop a phosphite dehydrogenase (PTDH) to cycle NMN+ with ~147-fold improved catalytic efficiency, which translates to an industrially viable total turnover number of ~45,000 in cell-free biotransformat...
Creation of Bioorthogonal Redox Systems Depending on Nicotinamide Flucytosine DinucleotideMany enzym...
215 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2005.NAD(P)H regeneration is an in...
Biological redox chemistry is catalyzed by numerous enzymes depending largely on a few cofactors. Ni...
Noncanonical redox cofactors are attractive low-cost alternatives to nicotinamide adenine dinucleoti...
Noncanonical redox cofactors, or cofactor mimics, which operate in an orthogonal manner to the natur...
Biological production of chemicals often requires the use of cellular cofactors, such as nicotinamid...
Biological production of chemicals often requires the use of cellular cofactors, such as nicotinamid...
BackgroundNoncanonical redox cofactors are emerging as important tools in cell-free biosynthesis to ...
Implementation of a non-natural cofactor alternative to the ubiquitous redox cofactor nicotinamide a...
A key challenge in metabolic engineering is the intracellular control of reductive and free energy. ...
Implementation of a non-natural cofactor alternative to the ubiquitous redox cofactor nicotinamide a...
Redox enzymes are very useful tools for establishing greener routes in organic synthesis, mostly due...
Nicotinamide cofactors enable oxidoreductases to catalyze a myriad of important reactions in biomanu...
Noncanonical cofactors such as nicotinamide mononucleotide (NMN+) supplant the electron-transfer fun...
Nicotinamide adenine dinucleotide (NAD(P)+)-dependent oxidoreductases have been widely employed as b...
Creation of Bioorthogonal Redox Systems Depending on Nicotinamide Flucytosine DinucleotideMany enzym...
215 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2005.NAD(P)H regeneration is an in...
Biological redox chemistry is catalyzed by numerous enzymes depending largely on a few cofactors. Ni...
Noncanonical redox cofactors are attractive low-cost alternatives to nicotinamide adenine dinucleoti...
Noncanonical redox cofactors, or cofactor mimics, which operate in an orthogonal manner to the natur...
Biological production of chemicals often requires the use of cellular cofactors, such as nicotinamid...
Biological production of chemicals often requires the use of cellular cofactors, such as nicotinamid...
BackgroundNoncanonical redox cofactors are emerging as important tools in cell-free biosynthesis to ...
Implementation of a non-natural cofactor alternative to the ubiquitous redox cofactor nicotinamide a...
A key challenge in metabolic engineering is the intracellular control of reductive and free energy. ...
Implementation of a non-natural cofactor alternative to the ubiquitous redox cofactor nicotinamide a...
Redox enzymes are very useful tools for establishing greener routes in organic synthesis, mostly due...
Nicotinamide cofactors enable oxidoreductases to catalyze a myriad of important reactions in biomanu...
Noncanonical cofactors such as nicotinamide mononucleotide (NMN+) supplant the electron-transfer fun...
Nicotinamide adenine dinucleotide (NAD(P)+)-dependent oxidoreductases have been widely employed as b...
Creation of Bioorthogonal Redox Systems Depending on Nicotinamide Flucytosine DinucleotideMany enzym...
215 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2005.NAD(P)H regeneration is an in...
Biological redox chemistry is catalyzed by numerous enzymes depending largely on a few cofactors. Ni...