Engineered proteins will continue to expand the molecular toolkit for applications in medicine, biotechnology, and basic research. While protein engineering efforts often use a parts list limited to the twenty amino acids, metal ions expand the parts list and are critical for the folding and function of 30-40% of known proteins. In particular, zinc ions are common as structural metal sites and catalytic metal sites. Thus, the work described here uses and develops computational methods to engineer structural zinc sites at protein interfaces and catalytic zinc sites at potential active sites. The first chapter discusses the design of a de novo zinc-mediated heterodimeric interaction that targets wild-type ubiquitin. Although zinc binding was ...
International audienceHydrolytic zinc enzymes are common targets for protein design. The versatility...
International audienceHydrolytic zinc enzymes are common targets for protein design. The versatility...
Functional proteins designed de novo have potential application in chemical engineering, agriculture...
Approximately one third of proteins are thought to bind metal ions. These ions often improve the pro...
Structure-based protein design tests our understanding of the minimal determinants of protein struct...
Here we show that a recent computationally designed zinc-mediated protein interface is serendipitous...
Here we show that a recent computationally designed zinc-mediated protein interface is serendipitous...
The structures and reactions of metal ions in proteins are of tremendous interest in bioinorganic ch...
Computationally designing protein-protein interactions with high affinity and desired orientation is...
The structures and reactions of metal ions in proteins are of tremendous interest in bioinorganic ch...
Computationally designing protein-protein interactions with high affinity and desired orientation is...
Zinc is one of the most important biologically active metals. Ten per cent of the human genome is th...
Zinc is indispensable to all forms of life as it is an essential component of many different protein...
International audienceHydrolytic zinc enzymes are common targets for protein design. The versatility...
International audienceHydrolytic zinc enzymes are common targets for protein design. The versatility...
International audienceHydrolytic zinc enzymes are common targets for protein design. The versatility...
International audienceHydrolytic zinc enzymes are common targets for protein design. The versatility...
Functional proteins designed de novo have potential application in chemical engineering, agriculture...
Approximately one third of proteins are thought to bind metal ions. These ions often improve the pro...
Structure-based protein design tests our understanding of the minimal determinants of protein struct...
Here we show that a recent computationally designed zinc-mediated protein interface is serendipitous...
Here we show that a recent computationally designed zinc-mediated protein interface is serendipitous...
The structures and reactions of metal ions in proteins are of tremendous interest in bioinorganic ch...
Computationally designing protein-protein interactions with high affinity and desired orientation is...
The structures and reactions of metal ions in proteins are of tremendous interest in bioinorganic ch...
Computationally designing protein-protein interactions with high affinity and desired orientation is...
Zinc is one of the most important biologically active metals. Ten per cent of the human genome is th...
Zinc is indispensable to all forms of life as it is an essential component of many different protein...
International audienceHydrolytic zinc enzymes are common targets for protein design. The versatility...
International audienceHydrolytic zinc enzymes are common targets for protein design. The versatility...
International audienceHydrolytic zinc enzymes are common targets for protein design. The versatility...
International audienceHydrolytic zinc enzymes are common targets for protein design. The versatility...
Functional proteins designed de novo have potential application in chemical engineering, agriculture...