The identification of suitable protein structures that can serve as scaffolds for the introduction of catalytic residues is crucial for the design of new enzymes. Here we describe how the automated and rapid scaffold search program ScaffoldSelection can be used to find the best starting points, namely protein structures that are most likely to tolerate the introduction and promote the proper formation of a specific catalytic motif
International audienceWe have developed an automated method to design active sites into protein scaf...
<div><p>Computational design of protein function involves a search for amino acids with the lowest e...
Abstract: Computational protein design relies on several approximations, including the use of fixed ...
A major goal of computational protein design is the construction of novel functions on existing prot...
Active site preorganization helps native enzymes electrostatically stabilize the transition state be...
Rational design of enzymes is a stringent test of our understanding of protein structure and functio...
Proteins perform their functions mainly via active sites, whereas other parts of the proteins compri...
<div><p>Active site preorganization helps native enzymes electrostatically stabilize the transition ...
We present an enzyme protein function identification algorithm, Catalytic Site Identification (CatSI...
Enzymes play a crucial role in modern biotechnology, industry, food processing and medical applicati...
Enzymes are tremendously proficient catalysts, which can be used as extracellular catalysts for a wh...
The first part of this review article lists examples of complete, empirical de novo design that made...
Computational design of protein function involves a search for amino acids with the lowest energy su...
The engineering of catalytic function or substrate specificity in enzymes has been an interesting fi...
Increasing the success in obtaining structures and maximizing the value of the structures determined...
International audienceWe have developed an automated method to design active sites into protein scaf...
<div><p>Computational design of protein function involves a search for amino acids with the lowest e...
Abstract: Computational protein design relies on several approximations, including the use of fixed ...
A major goal of computational protein design is the construction of novel functions on existing prot...
Active site preorganization helps native enzymes electrostatically stabilize the transition state be...
Rational design of enzymes is a stringent test of our understanding of protein structure and functio...
Proteins perform their functions mainly via active sites, whereas other parts of the proteins compri...
<div><p>Active site preorganization helps native enzymes electrostatically stabilize the transition ...
We present an enzyme protein function identification algorithm, Catalytic Site Identification (CatSI...
Enzymes play a crucial role in modern biotechnology, industry, food processing and medical applicati...
Enzymes are tremendously proficient catalysts, which can be used as extracellular catalysts for a wh...
The first part of this review article lists examples of complete, empirical de novo design that made...
Computational design of protein function involves a search for amino acids with the lowest energy su...
The engineering of catalytic function or substrate specificity in enzymes has been an interesting fi...
Increasing the success in obtaining structures and maximizing the value of the structures determined...
International audienceWe have developed an automated method to design active sites into protein scaf...
<div><p>Computational design of protein function involves a search for amino acids with the lowest e...
Abstract: Computational protein design relies on several approximations, including the use of fixed ...