Enzymes are versatile and efficient biological catalysts that drive numerous cellular processes, motivating the development of enzyme design approaches to tailor catalysts for diverse applications. In this perspective, we investigate the unique properties of natural, evolved, and designed enzymes, recognizing their strengths and shortcomings. We highlight the challenges and limitations of current enzyme design protocols, with a particular focus on their limited consideration of long-range electrostatic and dynamic effects. We then delve deeper into the impact of the protein environment on enzyme catalysis and explore the roles of preorganized electric fields, second coordination sphere interactions, and protein dynamics for enzyme function....
Enzymes are today well recognized in various industrial applications, being an important component i...
Enzymes are tremendously proficient catalysts, which can be used as extracellular catalysts for a wh...
The state-of-the art in the biocatalytic generation of renewable polymers, fine chemicals and medici...
Computational design is becoming an integral component in developing novel enzymatic activities. Cat...
We review the standard model for de novo computational design of enzymes, which primarily focuses on...
Utilizing electric fields to catalyze chemical reactions is not a new idea, but in enzymology it und...
Protein design is a challenging problem. We do not fully understand the rules of protein folding, an...
Currently, there are two main approaches for improving the performance of enzymes. One approach uses...
While there has been emerging interest in designing new enzymes to solve practical challenges, compu...
Developments in computational chemistry, bioinformatics, and laboratory evolution have facilitated t...
AbstractUnderstanding and Improving Designed Enzymes by Computer SimulationsBy Asmit BhowmickDoctor ...
As biocatalysts, enzymes are characterized by their high catalytic efficiency and strong specificity...
Cognition of life from the perspective of synthetic biology centers on the design, construction, and...
AbstractEnzymes are an attractive alternative in the asymmetric syntheses of chiral building blocks....
The combination of computational enzyme design and laboratory evolution provides an attractive platf...
Enzymes are today well recognized in various industrial applications, being an important component i...
Enzymes are tremendously proficient catalysts, which can be used as extracellular catalysts for a wh...
The state-of-the art in the biocatalytic generation of renewable polymers, fine chemicals and medici...
Computational design is becoming an integral component in developing novel enzymatic activities. Cat...
We review the standard model for de novo computational design of enzymes, which primarily focuses on...
Utilizing electric fields to catalyze chemical reactions is not a new idea, but in enzymology it und...
Protein design is a challenging problem. We do not fully understand the rules of protein folding, an...
Currently, there are two main approaches for improving the performance of enzymes. One approach uses...
While there has been emerging interest in designing new enzymes to solve practical challenges, compu...
Developments in computational chemistry, bioinformatics, and laboratory evolution have facilitated t...
AbstractUnderstanding and Improving Designed Enzymes by Computer SimulationsBy Asmit BhowmickDoctor ...
As biocatalysts, enzymes are characterized by their high catalytic efficiency and strong specificity...
Cognition of life from the perspective of synthetic biology centers on the design, construction, and...
AbstractEnzymes are an attractive alternative in the asymmetric syntheses of chiral building blocks....
The combination of computational enzyme design and laboratory evolution provides an attractive platf...
Enzymes are today well recognized in various industrial applications, being an important component i...
Enzymes are tremendously proficient catalysts, which can be used as extracellular catalysts for a wh...
The state-of-the art in the biocatalytic generation of renewable polymers, fine chemicals and medici...