A review. In recent years, significant progress has been made in the computational design of functional artificial enzymes. When combined with directed evolution protocols, their efficiencies are comparable to those obtained with catalytic antibodies. In comparison, the in silico creation of artificial metalloenzymes remains challenging. This could be due to the difficulty in computing both the transition states for metal-catalyzed reactions and the corresponding entatic state for a metalloenzyme. In a recent study, structurally characterized a functional bacterial nitric oxide reductase within a myoglobin scaffold has been rationally designed. This ground-breaking study by Lu and coworkers has opened the way towards the rational design of ...
Artificial metalloenzymes have emerged as a promising new approach to asymmetric catalysis. In our g...
Multielectron redox reactions often require enzymes with active sites that contain one or more metal...
Adapting enzymes for chemical synthesis is a longstanding and contemporary challenge; however, enzym...
Nitric oxide reductase (NOR) is a membrane-bound metalloenzyme in the denitrification pathway of man...
Protein design provides a rigorous test of our knowledge about proteins and allows the creation of n...
Metalloenzymes catalyze reactions that are among the “holy grails” of modern chemical research and d...
Artificial metalloenzymes have received increasing attention over the last decade as a possible solu...
Proteins are involved in nearly every process that occurs in living systems, either as a main partic...
In this issue, Leading Edge highlights synthetic biology, a field that is deepening our understandin...
The catalytic efficiency and high selectivities achieved by natural metalloenzymes are a source of i...
In recent years, substantial advances have been made in the development of artificial metalloenzymes...
De novo design of proteins has enabled the exploration of vast regions of sequence space previously ...
Artificial metalloenzymes result from the insertion of a catalytically active metal complex into a b...
Many efforts are being made in the design and engineering of metalloenzymes with catalytic propertie...
Metalloenzymes catalyze a wide variety of reactions in nature by taking advantage of the versatility...
Artificial metalloenzymes have emerged as a promising new approach to asymmetric catalysis. In our g...
Multielectron redox reactions often require enzymes with active sites that contain one or more metal...
Adapting enzymes for chemical synthesis is a longstanding and contemporary challenge; however, enzym...
Nitric oxide reductase (NOR) is a membrane-bound metalloenzyme in the denitrification pathway of man...
Protein design provides a rigorous test of our knowledge about proteins and allows the creation of n...
Metalloenzymes catalyze reactions that are among the “holy grails” of modern chemical research and d...
Artificial metalloenzymes have received increasing attention over the last decade as a possible solu...
Proteins are involved in nearly every process that occurs in living systems, either as a main partic...
In this issue, Leading Edge highlights synthetic biology, a field that is deepening our understandin...
The catalytic efficiency and high selectivities achieved by natural metalloenzymes are a source of i...
In recent years, substantial advances have been made in the development of artificial metalloenzymes...
De novo design of proteins has enabled the exploration of vast regions of sequence space previously ...
Artificial metalloenzymes result from the insertion of a catalytically active metal complex into a b...
Many efforts are being made in the design and engineering of metalloenzymes with catalytic propertie...
Metalloenzymes catalyze a wide variety of reactions in nature by taking advantage of the versatility...
Artificial metalloenzymes have emerged as a promising new approach to asymmetric catalysis. In our g...
Multielectron redox reactions often require enzymes with active sites that contain one or more metal...
Adapting enzymes for chemical synthesis is a longstanding and contemporary challenge; however, enzym...