Computational protein design (CPD) is a burgeoning field that uses a physical-chemical or knowledge-based scoring function to create protein variants with new or improved properties. This exciting approach has recently been used to generate proteins with entirely new functions, ones that are not observed in naturally occurring proteins. For example, several enzymes were designed to catalyze reactions that are not in the repertoire of any known natural enzyme. In these designs, novel catalytic activity was built de novo (from scratch) into a previously inert protein scaffold. In addition to de novo enzyme design, the computational design of protein-protein interactions can also be used to create novel functionality, such as neutralization of...
Over the last two decades, newly emerging nanomaterials have demonstrated a great potential to overc...
One of the major research aims in Materials Science and Engineering for the past two decades has per...
Biomolecular self-assemblies are of great interest to nanotechnologists because of their functional ...
Computation protein design (CPD) has been successfully used to create various functional proteins, i...
Computation protein design (CPD) has been successfully used to create various functional proteins, i...
[[sponsorship]]物理研究所[[note]]已出版;[SCI];有審查制度;具代表性[[note]]http://gateway.isiknowledge.com/gateway/Gate...
Thesis (Ph.D.)--University of Washington, 2015-12Molecular self- and co-assembly of proteins into hi...
Protein based nanotechnology is an emerging field, which could someday provide novel protein materia...
DNA-based self-assembly has been developed as an ideal means to create precisely controllable and hi...
abstract: Nature is a master at organizing biomolecules in all intracellular processes, and research...
The sheer size of the protein sequence space is massive: a protein of 100 residues can have 20^100 p...
Computational protein design determines the amino acid sequence(s) that will adopt a desired fold. ...
Computational protein design facilitates the continued development of methods for the design of biom...
Advances in nanotechnology have the potential to utilize biological and polymeric systems to address...
Over the last two decades, newly emerging nanomaterials have demonstrated a great potential to overc...
Over the last two decades, newly emerging nanomaterials have demonstrated a great potential to overc...
One of the major research aims in Materials Science and Engineering for the past two decades has per...
Biomolecular self-assemblies are of great interest to nanotechnologists because of their functional ...
Computation protein design (CPD) has been successfully used to create various functional proteins, i...
Computation protein design (CPD) has been successfully used to create various functional proteins, i...
[[sponsorship]]物理研究所[[note]]已出版;[SCI];有審查制度;具代表性[[note]]http://gateway.isiknowledge.com/gateway/Gate...
Thesis (Ph.D.)--University of Washington, 2015-12Molecular self- and co-assembly of proteins into hi...
Protein based nanotechnology is an emerging field, which could someday provide novel protein materia...
DNA-based self-assembly has been developed as an ideal means to create precisely controllable and hi...
abstract: Nature is a master at organizing biomolecules in all intracellular processes, and research...
The sheer size of the protein sequence space is massive: a protein of 100 residues can have 20^100 p...
Computational protein design determines the amino acid sequence(s) that will adopt a desired fold. ...
Computational protein design facilitates the continued development of methods for the design of biom...
Advances in nanotechnology have the potential to utilize biological and polymeric systems to address...
Over the last two decades, newly emerging nanomaterials have demonstrated a great potential to overc...
Over the last two decades, newly emerging nanomaterials have demonstrated a great potential to overc...
One of the major research aims in Materials Science and Engineering for the past two decades has per...
Biomolecular self-assemblies are of great interest to nanotechnologists because of their functional ...