Directed Molecular Evolution of Proteins or How to Improve Enzymes for Biocatalysis
Susanne Brakmann, Kai Johnsson
Abstract
Susanne Brakmann, Kai Johnsson
Abstract
List of Contributors. Introduction Evolutionary Biotechnology --From Ideas and Concepts to Experiments and Computer Simulations Using Evolutionary Strategies to Investigate the Structure and Function of Chorismate Mutases Construction of Environmental Libraries for Functional Screening of Enzyme Activity Investigation of Phage Display for the Directed Evolution of Enzymes Directed Evolution of Binding Proteins by Cell Surface Display: Analysis of the Screening Process Advanced Screening Strategies for Biocatalyst Discovery Engineering Protein Evolution Exploring the Diversity of Heme Enzymes through Directed Evolution Directed Evolution as a Means to Create Enantioselective Enzymes for Use in Organic Chemistry Applied Molecular Evolution of Enzymes Involved in Synthesis and Repair of DNA Evolutionary Generation versus Rational Design of Restriction Endonucleases with Novel Specificity Evolutionary Generation of Enzymes with Novel Substrate Specificities. Index.
OpenAlex reports 38 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
List of Contributors. Introduction Evolutionary Biotechnology --From Ideas and Concepts to Experiments and Computer Simulations Using Evolutionary Strategies to Investigate the Structure and Function of Chorismate Mutases Construction of Environmental Libraries for Functional Screening of Enzyme Activity Investigation of Phage Display for the Directed Evolution of Enzymes Directed Evolution of Binding Proteins by Cell Surface Display: Analysis of the Screening Process Advanced Screening Strategies for Biocatalyst Discovery Engineering Protein Evolution Exploring the Diversity of Heme Enzymes through Directed Evolution Directed Evolution as a Means to Create Enantioselective Enzymes for Use in Organic Chemistry Applied Molecular Evolution of Enzymes Involved in Synthesis and Repair of DNA Evolutionary Generation versus Rational Design of Restriction Endonucleases with Novel Specificity Evolutionary Generation of Enzymes with Novel Substrate Specificities. Index.
Key concepts: Directed evolution, Directed Molecular Evolution, DNA shuffling, Protein engineering, Biocatalysis, Enzyme, Computational biology, Molecular evolution