The de novo design of proteins is a rigorous test of our understanding of the key determinants of protein structure. The helix bundle is an interesting de novo design model system due to the diverse topologies that can be generated from a few simple α-helices. Previously, non-computational studies demonstrated that connecting amphipathic helices together with short loops can sometimes generate helix bundle proteins, regardless of the bundle's exact sequence. However using such methods, the precise positions of helices and side-chains cannot be predetermined. Since protein function depends on exact positioning of residues, we examined if sequence design tools in the program Rosetta could be used to design a four-helix bundle with a predeterm...
Background: De novo designed helix–loop–helix motifs can fold into well-defined tertiary structures ...
Abstract Background The design of protein structures from scratch requires special attention to the ...
The association of amphipathic α helices in water leads to α-helical-bundle protein structures. Howe...
De novo protein design has proven to be a powerful tool for understanding protein folding, structure...
Binary patterning of polar and nonpolar amino acids has been used as the key design feature for cons...
Our goal is an objective, quantitative design algorithm based on the physical chemical forces which...
De novo protein design is advancing rapidly. However, most designs are for single states. Here we re...
This work focused on using computer simulation techniques to determine the structure of a biological...
AbstractIn the context of reduced protein models, Monte Carlo simulations of three de novo designed ...
We have designed, synthesized, and characterized a 216 amino acid residue sequence encoding a putat...
Proteins are natures\u27 work-horses. Proteins are involved in every form of cell signaling and also...
Despite having irregular structure, protein loops often adopt specific conformations that are critic...
The design of proteins with predetermined structural properties i a necessary first step in the de n...
A modular approach to synthetic protein design is being developed using conformationally constrained...
Proteins are composed of a unique sequence of amino acids, whose order guides a protein to adopt its...
Background: De novo designed helix–loop–helix motifs can fold into well-defined tertiary structures ...
Abstract Background The design of protein structures from scratch requires special attention to the ...
The association of amphipathic α helices in water leads to α-helical-bundle protein structures. Howe...
De novo protein design has proven to be a powerful tool for understanding protein folding, structure...
Binary patterning of polar and nonpolar amino acids has been used as the key design feature for cons...
Our goal is an objective, quantitative design algorithm based on the physical chemical forces which...
De novo protein design is advancing rapidly. However, most designs are for single states. Here we re...
This work focused on using computer simulation techniques to determine the structure of a biological...
AbstractIn the context of reduced protein models, Monte Carlo simulations of three de novo designed ...
We have designed, synthesized, and characterized a 216 amino acid residue sequence encoding a putat...
Proteins are natures\u27 work-horses. Proteins are involved in every form of cell signaling and also...
Despite having irregular structure, protein loops often adopt specific conformations that are critic...
The design of proteins with predetermined structural properties i a necessary first step in the de n...
A modular approach to synthetic protein design is being developed using conformationally constrained...
Proteins are composed of a unique sequence of amino acids, whose order guides a protein to adopt its...
Background: De novo designed helix–loop–helix motifs can fold into well-defined tertiary structures ...
Abstract Background The design of protein structures from scratch requires special attention to the ...
The association of amphipathic α helices in water leads to α-helical-bundle protein structures. Howe...