Some protein design tasks cannot be modeled by the traditional single state design strategy of finding a sequence that is optimal for a single fixed backbone. Such cases require multistate design, where a single sequence is threaded onto multiple backbones (states) and evaluated for its strengths and weaknesses on each backbone. For example, to design a protein that can switch between two specific conformations, it is necessary to to find a sequence that is compatible with both backbone conformations. We present in this paper a generic implementation of multistate design that is suited for a wide range of protein design tasks and demonstrate in silico its capabilities at two design tasks: one of redesigning an obligate homodimer into an obl...
We propose and discuss a novel strategy for protein design. The method is based on recent theoretica...
In this work, a series of computational tools to predict protein sequences compatible with a given t...
Computational protein design of an ensemble of conformations for one protein-i.e., multi-state desig...
Some protein design tasks cannot be modeled by the traditional single state design strategy of findi...
Traditional computational protein design (CPD) calculations model sequence perturbations and evaluat...
Most of the methods that have been developed for computational protein design involve the selection ...
Most successes to date in computational protein design have relied on optimizing sequences to fit we...
International audienceMOTIVATION:Structure-based Computational Protein design (CPD) plays a critical...
The stability, activity, and solubility of a protein sequence are determined by a delicate balance o...
Computer-based methods are excellent tools to modify existing proteins. The software suite Rosetta o...
<div><p>Computational protein design has found great success in engineering proteins for thermodynam...
Interactions in protein networks may place constraints on protein interface sequences to maintain co...
Computational protein design has found great success in engineering proteins for thermo-dynamic stab...
Computational protein design aims to predict protein sequences that will fold into a given three-dim...
Protein design is a procedure for computing natural-like sequences that will fold into a specifiedst...
We propose and discuss a novel strategy for protein design. The method is based on recent theoretica...
In this work, a series of computational tools to predict protein sequences compatible with a given t...
Computational protein design of an ensemble of conformations for one protein-i.e., multi-state desig...
Some protein design tasks cannot be modeled by the traditional single state design strategy of findi...
Traditional computational protein design (CPD) calculations model sequence perturbations and evaluat...
Most of the methods that have been developed for computational protein design involve the selection ...
Most successes to date in computational protein design have relied on optimizing sequences to fit we...
International audienceMOTIVATION:Structure-based Computational Protein design (CPD) plays a critical...
The stability, activity, and solubility of a protein sequence are determined by a delicate balance o...
Computer-based methods are excellent tools to modify existing proteins. The software suite Rosetta o...
<div><p>Computational protein design has found great success in engineering proteins for thermodynam...
Interactions in protein networks may place constraints on protein interface sequences to maintain co...
Computational protein design has found great success in engineering proteins for thermo-dynamic stab...
Computational protein design aims to predict protein sequences that will fold into a given three-dim...
Protein design is a procedure for computing natural-like sequences that will fold into a specifiedst...
We propose and discuss a novel strategy for protein design. The method is based on recent theoretica...
In this work, a series of computational tools to predict protein sequences compatible with a given t...
Computational protein design of an ensemble of conformations for one protein-i.e., multi-state desig...