Proteins are the most multifaceted macromolecules in living systems and have various important functions, including structural, catalytic, sensory, and regulatory functions. Rational design of enzymes is a great challenge to our understanding of protein structure and physical chemistry and has numerous potential applications. Protein design algorithms have been applied to design or engineer proteins that fold, fold faster, catalyze, catalyze faster, signal, and adopt preferred conformational states. The field of de novo protein design, although only a few decades old, is beginning to produce exciting results. Developments in this field are already having a significant impact on biotechnology and chemical biology. The application of powerful...
Natural evolution has produced an astounding array of proteins that perform the physical and chemica...
Natural evolution has produced an astounding array of proteins that perform the physical and chemica...
The current methodology in computational de novo protein design involves two general steps: (1) The ...
AbstractProteins are the most multifaceted macromolecules in living systems and have various importa...
AbstractProteins are the most multifaceted macromolecules in living systems and have various importa...
Computational design of proteins is a relatively new field, where scientists search the enormous seq...
Our ability to design completely de novo proteins is improving rapidly. This is true of all three ma...
Our ability to design completely de novo proteins is improving rapidly. This is true of all three ma...
Our ability to design completely de novo proteins is improving rapidly. This is true of all three ma...
The rational design of novel biomolecules with desired functional properties is one of the most fas...
Protein design critically tests our understanding of principles that specify the protein folded stat...
Protein design critically tests our understanding of principles that specify the protein folded stat...
Computational and theoretical methods are advancing protein design as a means to create and investig...
AbstractRecent years have seen the first applications of computational protein design to generate no...
Thesis (Ph.D.)--University of Washington, 2012Computational protein design is a relatively new techn...
Natural evolution has produced an astounding array of proteins that perform the physical and chemica...
Natural evolution has produced an astounding array of proteins that perform the physical and chemica...
The current methodology in computational de novo protein design involves two general steps: (1) The ...
AbstractProteins are the most multifaceted macromolecules in living systems and have various importa...
AbstractProteins are the most multifaceted macromolecules in living systems and have various importa...
Computational design of proteins is a relatively new field, where scientists search the enormous seq...
Our ability to design completely de novo proteins is improving rapidly. This is true of all three ma...
Our ability to design completely de novo proteins is improving rapidly. This is true of all three ma...
Our ability to design completely de novo proteins is improving rapidly. This is true of all three ma...
The rational design of novel biomolecules with desired functional properties is one of the most fas...
Protein design critically tests our understanding of principles that specify the protein folded stat...
Protein design critically tests our understanding of principles that specify the protein folded stat...
Computational and theoretical methods are advancing protein design as a means to create and investig...
AbstractRecent years have seen the first applications of computational protein design to generate no...
Thesis (Ph.D.)--University of Washington, 2012Computational protein design is a relatively new techn...
Natural evolution has produced an astounding array of proteins that perform the physical and chemica...
Natural evolution has produced an astounding array of proteins that perform the physical and chemica...
The current methodology in computational de novo protein design involves two general steps: (1) The ...