The first part of this review article lists examples of complete, empirical de novo design that made important contributions to the development of the field and initiated challenging projects. The second part of this article deals with computational design of novel enzymes in native protein scaffolds; active designs were refined through random and site-directed mutagenesis producing artificial enzymes with nearly native enzyme- like activities against a number of non-natural substrates. Combining aspects of de novo design and biological evolution of nature's enzymes has started and will accelerate the development of novel enzyme activities
Computational protein design is becoming a powerful tool for tailoring enzymes for specific biotechn...
Computational protein design is becoming a powerful tool for tailoring enzymes for specific biotechn...
We report the development and initial experimental validation of a computational design procedure ai...
The first part of this review article lists examples of complete, empirical de novo design that made...
We review the standard model for de novo computational design of enzymes, which primarily focuses on...
We review the standard model for de novo computational design of enzymes, which primarily focuses on...
We review the standard model for de novo computational design of enzymes, which primarily focuses on...
The creation of enzymes capable of catalyzing any desired chemical reaction is a grand challenge for...
Computational enzyme design has emerged as a promising tool for generating made-to-order biocatalyst...
The creation of enzymes capable of catalyzing any desired chemical reaction is a grand challenge for...
The creation of enzymes capable of catalyzing any desired chemical reaction is a grand challenge for...
The challenging field of de novo enzyme design is beginning to produce exciting results. The applica...
The challenging field of de novo enzyme design is beginning to produce exciting results. The applica...
Protein design is a challenging problem. We do not fully understand the rules of protein folding, an...
Computational protein design is becoming a powerful tool for tailoring enzymes for specific biotechn...
Computational protein design is becoming a powerful tool for tailoring enzymes for specific biotechn...
Computational protein design is becoming a powerful tool for tailoring enzymes for specific biotechn...
We report the development and initial experimental validation of a computational design procedure ai...
The first part of this review article lists examples of complete, empirical de novo design that made...
We review the standard model for de novo computational design of enzymes, which primarily focuses on...
We review the standard model for de novo computational design of enzymes, which primarily focuses on...
We review the standard model for de novo computational design of enzymes, which primarily focuses on...
The creation of enzymes capable of catalyzing any desired chemical reaction is a grand challenge for...
Computational enzyme design has emerged as a promising tool for generating made-to-order biocatalyst...
The creation of enzymes capable of catalyzing any desired chemical reaction is a grand challenge for...
The creation of enzymes capable of catalyzing any desired chemical reaction is a grand challenge for...
The challenging field of de novo enzyme design is beginning to produce exciting results. The applica...
The challenging field of de novo enzyme design is beginning to produce exciting results. The applica...
Protein design is a challenging problem. We do not fully understand the rules of protein folding, an...
Computational protein design is becoming a powerful tool for tailoring enzymes for specific biotechn...
Computational protein design is becoming a powerful tool for tailoring enzymes for specific biotechn...
Computational protein design is becoming a powerful tool for tailoring enzymes for specific biotechn...
We report the development and initial experimental validation of a computational design procedure ai...