Protein chemical modifications are important tools for elucidating chemical and biological functions of proteins. Several strategies have been developed to implement these modifications, including enzymatic tailoring reactions, unnatural amino acid incorporation using the expanded genetic codes, and recognition-driven transformations. These technologies have been applied in metalloenzyme studies, specifically in dissecting their mechanisms, improving their enzymatic activities, and creating artificial enzymes with non-natural activities. Herein, we summarize some of the recent efforts in these areas with an emphasis on a few metalloenzyme case studies.Published versio
Protein engineering has shown widespread use in improving the industrial application of enzymes and ...
Proteins are diverse biopolymers constructed from 20 canonical amino acids, affording innumerable am...
Chemical modification of proteins is an important tool for probing natural systems, creating therape...
Chemical protein modification has emerged as an invaluable tool for the development of modified prot...
Artificial metalloenzymes have received increasing attention over the last decade as a possible solu...
In Nature there are twenty proteogenic amino acid ‘building blocks’, from which proteins and enzymes...
Proteins are capable of an astounding array of functions using only the 20 canonical amino acids; ho...
The chemical modification of proteins has been a longstanding interest in the scientific community. ...
Post-translational modifications (PTMs) of proteins play key roles in functional pro- teomic by regu...
The selective oxidation of organic molecules is fundamentally important to life and immensely usefu...
Chemical modification of proteins has proved to be an essential tool in engineering proteins for bas...
Enzymes are powerful tools that are capable of catalyzing reactions with high specificity and effici...
Initial applications of biocatalysis involved the used of naturally occurring enzyme. With new chal...
Chemical modification of proteins is a rapidly expanding area in chemical biology. Selective install...
Post-translational modification (PTM) modulates and supplements protein functionality. In nature thi...
Protein engineering has shown widespread use in improving the industrial application of enzymes and ...
Proteins are diverse biopolymers constructed from 20 canonical amino acids, affording innumerable am...
Chemical modification of proteins is an important tool for probing natural systems, creating therape...
Chemical protein modification has emerged as an invaluable tool for the development of modified prot...
Artificial metalloenzymes have received increasing attention over the last decade as a possible solu...
In Nature there are twenty proteogenic amino acid ‘building blocks’, from which proteins and enzymes...
Proteins are capable of an astounding array of functions using only the 20 canonical amino acids; ho...
The chemical modification of proteins has been a longstanding interest in the scientific community. ...
Post-translational modifications (PTMs) of proteins play key roles in functional pro- teomic by regu...
The selective oxidation of organic molecules is fundamentally important to life and immensely usefu...
Chemical modification of proteins has proved to be an essential tool in engineering proteins for bas...
Enzymes are powerful tools that are capable of catalyzing reactions with high specificity and effici...
Initial applications of biocatalysis involved the used of naturally occurring enzyme. With new chal...
Chemical modification of proteins is a rapidly expanding area in chemical biology. Selective install...
Post-translational modification (PTM) modulates and supplements protein functionality. In nature thi...
Protein engineering has shown widespread use in improving the industrial application of enzymes and ...
Proteins are diverse biopolymers constructed from 20 canonical amino acids, affording innumerable am...
Chemical modification of proteins is an important tool for probing natural systems, creating therape...