The computer-based design of protein-protein interactions is a rigorous test of our understanding of molecular recognition and an attractive approach for creating novel tools for cell and molecular research. Considerable attention has been placed on redesigning the affinity and specificity of naturally occurring interactions. Several studies have shown that reducing the desolvation costs for binding while preserving shape complimentarity and hydrogen bonding is an effective strategy for improving binding affinities. In favorable cases specificity has been designed by focusing only on interactions with the target protein, while in cases with closely related off-target proteins, it has been necessary to explicitly disfavor unwanted binding pa...
The ability to manipulate protein binding affinities is important for the development of proteins as...
The importance of a protein-protein interaction to a signaling pathway can be established by showing...
Computational design of novel protein–protein interfaces is a test of our understanding of protein i...
The computer-based design of protein-protein interactions is a rigorous test of our understanding of...
The computer-based design of protein-protein interactions is a rigorous test of our understanding of...
The de novo design of protein-protein interfaces is a stringent test of our understanding of the pri...
There has been significant recent progress in the computational design of protein interactions inclu...
The computer-based design of protein-protein interactions is a challenging problem because large des...
The de novo design of protein-protein interfaces is a stringent test of our understanding of the pri...
Protein-protein interactions are key to many biological processes. Engineering these interactions ai...
The design of new protein-protein interfaces is a test of our understanding of protein interaction b...
Computational design of protein-protein interaction specificity is a powerful tool to examine and ex...
We developed a 'computational second-site suppressor' strategy to redesign specificity at a protein-...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, 2012.Cataloged from PDF ve...
Includes bibliographical references (p. 52)Protein-protein interactions play a role in practically e...
The ability to manipulate protein binding affinities is important for the development of proteins as...
The importance of a protein-protein interaction to a signaling pathway can be established by showing...
Computational design of novel protein–protein interfaces is a test of our understanding of protein i...
The computer-based design of protein-protein interactions is a rigorous test of our understanding of...
The computer-based design of protein-protein interactions is a rigorous test of our understanding of...
The de novo design of protein-protein interfaces is a stringent test of our understanding of the pri...
There has been significant recent progress in the computational design of protein interactions inclu...
The computer-based design of protein-protein interactions is a challenging problem because large des...
The de novo design of protein-protein interfaces is a stringent test of our understanding of the pri...
Protein-protein interactions are key to many biological processes. Engineering these interactions ai...
The design of new protein-protein interfaces is a test of our understanding of protein interaction b...
Computational design of protein-protein interaction specificity is a powerful tool to examine and ex...
We developed a 'computational second-site suppressor' strategy to redesign specificity at a protein-...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, 2012.Cataloged from PDF ve...
Includes bibliographical references (p. 52)Protein-protein interactions play a role in practically e...
The ability to manipulate protein binding affinities is important for the development of proteins as...
The importance of a protein-protein interaction to a signaling pathway can be established by showing...
Computational design of novel protein–protein interfaces is a test of our understanding of protein i...